{
"METABOLOMICS WORKBENCH":{"STUDY_ID":"ST002349","ANALYSIS_ID":"AN004095","VERSION":"1","CREATED_ON":"February 28, 2023, 12:37 pm"},

"PROJECT":{"PROJECT_TITLE":"Biomolecular condensates create phospholipid-enriched microenvironments","PROJECT_TYPE":"Metabolomics of in vitro condensates","PROJECT_SUMMARY":"Proteins and RNA are able to phase separate from the aqueous cellular environment to form sub-cellular compartments called condensates. This process results in a protein-RNA mixture that is chemically distinct from the surrounding aqueous phase. Here we use mass spectrometry to characterize the metabolomes of condensates. To test this, we prepared mixtures of phase-separated proteins and cellular metabolites and identified metabolites enriched in the condensate phase. These proteins included SARS-CoV-2 nucleocapsid, as well as low complexity domains of MED1 and HNRNPA1.","INSTITUTE":"Cornell University","DEPARTMENT":"Department of Pharmacology","LABORATORY":"Dr. Samie Jaffrey","LAST_NAME":"Dumelie","FIRST_NAME":"Jason","ADDRESS":"1300 York Ave, LC-524, New York City, NY","EMAIL":"jdumes98@gmail.com","PHONE":"6465690174","FUNDING_SOURCE":"This work was supported by the National Institutes of Health grants R35NS111631 and R01CA186702 (S.R.J.); R01AR076029, R21ES032347 and R21NS118633 (Q.C.); and NIH P01 HD067244 and support from the Starr Cancer Consortium I13-0037 (S.S.G.).","PUBLICATIONS":"Under revision","CONTRIBUTORS":"Jason G. Dumelie, Qiuying Chen, Dawson Miller, Nabeel Attarwala, Steven S. Gross and Samie R. Jaffrey1"},

"STUDY":{"STUDY_TITLE":"Biomolecular condensates create phospholipid-enriched microenvironments (Part 1)","STUDY_SUMMARY":"Proteins and RNA are able to phase separate from the aqueous cellular environment to form sub-cellular compartments called condensates. This process results in a protein-RNA mixture that is chemically distinct from the surrounding aqueous phase. Here we use mass spectrometry to characterize the metabolomes of condensates. To test this, we prepared mixtures of phase-separated proteins and cellular metabolites and identified metabolites enriched in the condensate phase. These proteins included SARS-CoV-2 nucleocapsid, as well as low complexity domains of MED1 and HNRNPA1.","INSTITUTE":"Cornell University","DEPARTMENT":"Department of Pharmacology","LABORATORY":"Dr. Samie Jaffrey","LAST_NAME":"Dumelie","FIRST_NAME":"Jason","ADDRESS":"1300 York Ave, LC-524, New York City, NY","EMAIL":"jdumes98@gmail.com","STUDY_TYPE":"Metabolomes of in vitro synthesized condensates","PHONE":"6465690174"},

"SUBJECT":{"SUBJECT_TYPE":"Mammal","SUBJECT_SPECIES":"Mus musculus","TAXONOMY_ID":"10090"},
"SUBJECT_SAMPLE_FACTORS":[
{
"Subject ID":"-",
"Sample ID":"MED1 Aqueous Sample 1",
"Factors":{"Protein":"MED1","RNA":"150 nM","Fraction":"aqueous"},
"Additional sample data":{"Source":"Mouse liver metabolites","RAW_FILE_NAME":"med1 top21.mzdata.xml;p_med1 top21.mzdata.xml;med1 top21_1.mzdata.xml;p_med1 top21_1.mzdata.xml;"}
},
{
"Subject ID":"-",
"Sample ID":"MED1 Condensate Sample 1",
"Factors":{"Protein":"MED1","RNA":"150 nM","Fraction":"condensate"},
"Additional sample data":{"Source":"Mouse liver metabolites","RAW_FILE_NAME":"med1 bottom21.mzdata.xml;p_med1 bottom21.mzdata.xml;med1 bottom21_1.mzdata.xml;p_med1 bottom21_1.mzdata.xml;"}
},
{
"Subject ID":"-",
"Sample ID":"MED1 Input Sample 1",
"Factors":{"Protein":"MED1","RNA":"150 nM","Fraction":"input"},
"Additional sample data":{"Source":"Mouse liver metabolites","RAW_FILE_NAME":"med1 input 21.mzdata.xml;p_med1 input 21.mzdata.xml;med1 input 21_1.mzdata.xml;p_med1 input 21_1.mzdata.xml;"}
},
{
"Subject ID":"-",
"Sample ID":"MED1 Aqueous Sample 2",
"Factors":{"Protein":"MED1","RNA":"150 nM","Fraction":"aqueous"},
"Additional sample data":{"Source":"Mouse liver metabolites","RAW_FILE_NAME":"med1 top22.mzdata.xml;p_med1 top22.mzdata.xml;med1 top22_1.mzdata.xml;p_med1 top22_1.mzdata.xml;"}
},
{
"Subject ID":"-",
"Sample ID":"MED1 Condensate Sample 2",
"Factors":{"Protein":"MED1","RNA":"150 nM","Fraction":"condensate"},
"Additional sample data":{"Source":"Mouse liver metabolites","RAW_FILE_NAME":"med1 bottom22.mzdata.xml;p_med1 bottom22.mzdata.xml;med1 bottom22_1.mzdata.xml;p_med1 bottom22_1.mzdata.xml;"}
},
{
"Subject ID":"-",
"Sample ID":"MED1 Input Sample 2",
"Factors":{"Protein":"MED1","RNA":"150 nM","Fraction":"input"},
"Additional sample data":{"Source":"Mouse liver metabolites","RAW_FILE_NAME":"med1 input 22.mzdata.xml;p_med1 input 22.mzdata.xml;med1 input 22_1.mzdata.xml;p_med1 input 22_1.mzdata.xml;"}
},
{
"Subject ID":"-",
"Sample ID":"MED1 Aqueous Sample 3",
"Factors":{"Protein":"MED1","RNA":"150 nM","Fraction":"aqueous"},
"Additional sample data":{"Source":"Mouse liver metabolites","RAW_FILE_NAME":"med1 top23.mzdata.xml;p_med1 top23.mzdata.xml;med1 top23_1.mzdata.xml;p_med1 top23_1.mzdata.xml;"}
},
{
"Subject ID":"-",
"Sample ID":"MED1 Condensate Sample 3",
"Factors":{"Protein":"MED1","RNA":"150 nM","Fraction":"condensate"},
"Additional sample data":{"Source":"Mouse liver metabolites","RAW_FILE_NAME":"med1 bottom23.mzdata.xml;p_med1 bottom23.mzdata.xml;med1 bottom23_1.mzdata.xml;p_med1 bottom23_1.mzdata.xml;"}
},
{
"Subject ID":"-",
"Sample ID":"MED1 Input Sample 3",
"Factors":{"Protein":"MED1","RNA":"150 nM","Fraction":"input"},
"Additional sample data":{"Source":"Mouse liver metabolites","RAW_FILE_NAME":"med1 input 23.mzdata.xml;p_med1 input 23.mzdata.xml;med1 input 23_1.mzdata.xml;p_med1 input 23_1.mzdata.xml;"}
},
{
"Subject ID":"-",
"Sample ID":"HNRNPA1 Aqueous Sample 1",
"Factors":{"Protein":"HNRNPA1","RNA":"150 nM","Fraction":"aqueous"},
"Additional sample data":{"Source":"Mouse liver metabolites","RAW_FILE_NAME":"hnRNPA1 top 21.mzdata.xml;p_hnRNPA1 top 21.mzdata.xml;hnRNPA1 top 21_1.mzdata.xml;p_hnRNPA1 top 21_1.mzdata.xml;"}
},
{
"Subject ID":"-",
"Sample ID":"HNRNPA1 Condensate Sample 1",
"Factors":{"Protein":"HNRNPA1","RNA":"150 nM","Fraction":"condensate"},
"Additional sample data":{"Source":"Mouse liver metabolites","RAW_FILE_NAME":"hnRNPA1 bottom 21.mzdata.xml;p_hnRNPA1 bottom 21.mzdata.xml;hnRNPA1 bottom 21_1.mzdata.xml;p_hnRNPA1 bottom 21_1.mzdata.xml;hnRNPA1 bottom 21_2.mzdata.xml, p_hnRNPA1 bottom 21_2.mzdata.xml"}
},
{
"Subject ID":"-",
"Sample ID":"HNRNPA1 Input Sample 1",
"Factors":{"Protein":"HNRNPA1","RNA":"150 nM","Fraction":"input"},
"Additional sample data":{"Source":"Mouse liver metabolites","RAW_FILE_NAME":"hnRNPA1input 21.mzdata.xml;p_hnRNPA1input 21.mzdata.xml;hnRNPA1input 21_1.mzdata.xml;p_hnRNPA1input 21_1.mzdata.xml;"}
},
{
"Subject ID":"-",
"Sample ID":"HNRNPA1 Aqueous Sample 2",
"Factors":{"Protein":"HNRNPA1","RNA":"150 nM","Fraction":"aqueous"},
"Additional sample data":{"Source":"Mouse liver metabolites","RAW_FILE_NAME":"hnRNPA1 top 22.mzdata.xml;p_hnRNPA1 top 22.mzdata.xml;hnRNPA1 top 22_1.mzdata.xml;p_hnRNPA1 top 22_1.mzdata.xml;"}
},
{
"Subject ID":"-",
"Sample ID":"HNRNPA1 Condensate Sample 2",
"Factors":{"Protein":"HNRNPA1","RNA":"150 nM","Fraction":"condensate"},
"Additional sample data":{"Source":"Mouse liver metabolites","RAW_FILE_NAME":"hnRNPA1 bottom 22.mzdata.xml;p_hnRNPA1 bottom 22.mzdata.xml;hnRNPA1 bottom 22_1.mzdata.xml;p_hnRNPA1 bottom 22_1.mzdata.xml;"}
},
{
"Subject ID":"-",
"Sample ID":"HNRNPA1 Input Sample 2",
"Factors":{"Protein":"HNRNPA1","RNA":"150 nM","Fraction":"input"},
"Additional sample data":{"Source":"Mouse liver metabolites","RAW_FILE_NAME":"hnRNPA1input 22.mzdata.xml;p_hnRNPA1input 22.mzdata.xml;hnRNPA1input 22_1.mzdata.xml;p_hnRNPA1input 22_1.mzdata.xml;"}
},
{
"Subject ID":"-",
"Sample ID":"HNRNPA1 Aqueous Sample 3",
"Factors":{"Protein":"HNRNPA1","RNA":"150 nM","Fraction":"aqueous"},
"Additional sample data":{"Source":"Mouse liver metabolites","RAW_FILE_NAME":"hnRNPA1 top 23.mzdata.xml;p_hnRNPA1 top 23.mzdata.xml;hnRNPA1 top 23_1.mzdata.xml;p_hnRNPA1 top 23_1.mzdata.xml;"}
},
{
"Subject ID":"-",
"Sample ID":"HNRNPA1 Condensate Sample 3",
"Factors":{"Protein":"HNRNPA1","RNA":"150 nM","Fraction":"condensate"},
"Additional sample data":{"Source":"Mouse liver metabolites","RAW_FILE_NAME":"hnRNPA1 bottom 23.mzdata.xml;p_hnRNPA1 bottom 23.mzdata.xml;hnRNPA1 bottom 23_1.mzdata.xml;p_hnRNPA1 bottom 23_1.mzdata.xml;"}
},
{
"Subject ID":"-",
"Sample ID":"HNRNPA1 Input Sample 3",
"Factors":{"Protein":"HNRNPA1","RNA":"150 nM","Fraction":"input"},
"Additional sample data":{"Source":"Mouse liver metabolites","RAW_FILE_NAME":"hnRNPA1input 23.mzdata.xml;p_hnRNPA1input 23.mzdata.xml;hnRNPA1input 23_1.mzdata.xml;p_hnRNPA1input 23_1.mzdata.xml;"}
},
{
"Subject ID":"-",
"Sample ID":"Nucleocapsid Aqueous Sample 1",
"Factors":{"Protein":"SARA CoV-2 nucleocapsid","RNA":"150 nM","Fraction":"aqueous"},
"Additional sample data":{"Source":"Mouse liver metabolites","RAW_FILE_NAME":"nuc std top 22.mzdata.xml;p_nuc std top 22.mzdata.xml;nuc std top 22_1.mzdata.xml;p_nuc std top 22_1.mzdata.xml;"}
},
{
"Subject ID":"-",
"Sample ID":"Nucleocapsid Condensate Sample 1",
"Factors":{"Protein":"SARA CoV-2 nucleocapsid","RNA":"150 nM","Fraction":"condensate"},
"Additional sample data":{"Source":"Mouse liver metabolites","RAW_FILE_NAME":"nuc std bottom 22.mzdata.xml;p_nuc std bottom 22.mzdata.xml;nuc std bottom 22_1.mzdata.xml;p_nuc std bottom 22_1.mzdata.xml;"}
},
{
"Subject ID":"-",
"Sample ID":"Nucleocapsid Input Sample 1",
"Factors":{"Protein":"SARA CoV-2 nucleocapsid","RNA":"150 nM","Fraction":"input"},
"Additional sample data":{"Source":"Mouse liver metabolites","RAW_FILE_NAME":"nuc std input 22.mzdata.xml;p_nuc std input 22.mzdata.xml;nuc std input 22_1.mzdata.xml;p_nuc std input 22_1.mzdata.xml;"}
},
{
"Subject ID":"-",
"Sample ID":"Nucleocapsid Aqueous Sample 2",
"Factors":{"Protein":"SARA CoV-2 nucleocapsid","RNA":"150 nM","Fraction":"aqueous"},
"Additional sample data":{"Source":"Mouse liver metabolites","RAW_FILE_NAME":"nuc std top 23.mzdata.xml;p_nuc std top 23.mzdata.xml;nuc std top 23_1.mzdata.xml;p_nuc std top 23_1.mzdata.xml;"}
},
{
"Subject ID":"-",
"Sample ID":"Nucleocapsid Condensate Sample 2",
"Factors":{"Protein":"SARA CoV-2 nucleocapsid","RNA":"150 nM","Fraction":"condensate"},
"Additional sample data":{"Source":"Mouse liver metabolites","RAW_FILE_NAME":"nuc std bottom 23.mzdata.xml;p_nuc std bottom 23.mzdata.xml;nuc std bottom 23_1.mzdata.xml;p_nuc std bottom 23_1.mzdata.xml;"}
},
{
"Subject ID":"-",
"Sample ID":"Nucleocapsid Input Sample 2",
"Factors":{"Protein":"SARA CoV-2 nucleocapsid","RNA":"150 nM","Fraction":"input"},
"Additional sample data":{"Source":"Mouse liver metabolites","RAW_FILE_NAME":"nuc std input 23.mzdata.xml;p_nuc std input 23.mzdata.xml;nuc std input 23_1.mzdata.xml;p_nuc std input 23_1.mzdata.xml;"}
},
{
"Subject ID":"-",
"Sample ID":"Nucleocapsid Aqueous Sample 3",
"Factors":{"Protein":"SARA CoV-2 nucleocapsid","RNA":"150 nM","Fraction":"aqueous"},
"Additional sample data":{"Source":"Mouse liver metabolites","RAW_FILE_NAME":"nuc std top 24.mzdata.xml;p_nuc std top 24.mzdata.xml;nuc std top 24_1.mzdata.xml;p_nuc std top 24_1.mzdata.xml;"}
},
{
"Subject ID":"-",
"Sample ID":"Nucleocapsid Condensate Sample 3",
"Factors":{"Protein":"SARA CoV-2 nucleocapsid","RNA":"150 nM","Fraction":"condensate"},
"Additional sample data":{"Source":"Mouse liver metabolites","RAW_FILE_NAME":"nuc std bottom 24.mzdata.xml;p_nuc std bottom 24.mzdata.xml;nuc std bottom 24_1.mzdata.xml;p_nuc std bottom 24_1.mzdata.xml;"}
},
{
"Subject ID":"-",
"Sample ID":"Nucleocapsid Input Sample 3",
"Factors":{"Protein":"SARA CoV-2 nucleocapsid","RNA":"150 nM","Fraction":"input"},
"Additional sample data":{"Source":"Mouse liver metabolites","RAW_FILE_NAME":"nuc std input 24.mzdata.xml;p_nuc std input 24.mzdata.xml;nuc std input 24_1.mzdata.xml;p_nuc std input 24_1.mzdata.xml;"}
},
{
"Subject ID":"-",
"Sample ID":"Nucleocapsid No RNA Aqueous Sample 4",
"Factors":{"Protein":"SARA CoV-2 nucleocapsid","RNA":"0 nM","Fraction":"aqueous"},
"Additional sample data":{"Source":"Mouse liver metabolites","RAW_FILE_NAME":"nuc No RNA top 32.mzdata.xml;p_nuc No RNA top 32.mzdata.xml;nuc No RNA top 32_1.mzdata.xml;p_nuc No RNA top 32_1.mzdata.xml;"}
},
{
"Subject ID":"-",
"Sample ID":"Nucleocapsid No RNA Condensate Sample 4",
"Factors":{"Protein":"SARA CoV-2 nucleocapsid","RNA":"0 nM","Fraction":"condensate"},
"Additional sample data":{"Source":"Mouse liver metabolites","RAW_FILE_NAME":"nuc No RNA bottom 32.mzdata.xml;p_nuc No RNA bottom 32.mzdata.xml;nuc No RNA bottom 32_1.mzdata.xml;p_nuc No RNA bottom 32_1.mzdata.xml;"}
},
{
"Subject ID":"-",
"Sample ID":"Nucleocapsid No RNA Input Sample 4",
"Factors":{"Protein":"SARA CoV-2 nucleocapsid","RNA":"0 nM","Fraction":"input"},
"Additional sample data":{"Source":"Mouse liver metabolites","RAW_FILE_NAME":"nuc No RNA input 32.mzdata.xml;p_nuc No RNA input 32.mzdata.xml;nuc No RNA input 32_1.mzdata.xml;p_nuc No RNA input 32_1.mzdata.xml;"}
},
{
"Subject ID":"-",
"Sample ID":"Nucleocapsid No RNA Aqueous Sample 5",
"Factors":{"Protein":"SARA CoV-2 nucleocapsid","RNA":"0 nM","Fraction":"aqueous"},
"Additional sample data":{"Source":"Mouse liver metabolites","RAW_FILE_NAME":"nuc No RNA top 33.mzdata.xml;p_nuc No RNA top 33.mzdata.xml;nuc No RNA top 33_1.mzdata.xml;p_nuc No RNA top 33_1.mzdata.xml;"}
},
{
"Subject ID":"-",
"Sample ID":"Nucleocapsid No RNA Condensate Sample 5",
"Factors":{"Protein":"SARA CoV-2 nucleocapsid","RNA":"0 nM","Fraction":"condensate"},
"Additional sample data":{"Source":"Mouse liver metabolites","RAW_FILE_NAME":"nuc No RNA bottom 33.mzdata.xml;p_nuc No RNA bottom 33.mzdata.xml;nuc No RNA bottom 33_1.mzdata.xml;p_nuc No RNA bottom 33_1.mzdata.xml;"}
},
{
"Subject ID":"-",
"Sample ID":"Nucleocapsid No RNA Input Sample 5",
"Factors":{"Protein":"SARA CoV-2 nucleocapsid","RNA":"0 nM","Fraction":"input"},
"Additional sample data":{"Source":"Mouse liver metabolites","RAW_FILE_NAME":"nuc No RNA input 33.mzdata.xml;p_nuc No RNA input 33.mzdata.xml;nuc No RNA input 33_1.mzdata.xml;p_nuc No RNA input 33_1.mzdata.xml;"}
},
{
"Subject ID":"-",
"Sample ID":"Nucleocapsid 600 nM RNA Aqueous Sample 6",
"Factors":{"Protein":"SARA CoV-2 nucleocapsid","RNA":"600 nM","Fraction":"aqueous"},
"Additional sample data":{"Source":"Mouse liver metabolites","RAW_FILE_NAME":"nuc high RNA top 42.mzdata.xml;p_nuc high RNA top 42.mzdata.xml;nuc high RNA top 42_1.mzdata.xml;p_nuc high RNA top 42_1.mzdata.xml;"}
},
{
"Subject ID":"-",
"Sample ID":"Nucleocapsid 600 nM RNA Condensate Sample 6",
"Factors":{"Protein":"SARA CoV-2 nucleocapsid","RNA":"600 nM","Fraction":"condensate"},
"Additional sample data":{"Source":"Mouse liver metabolites","RAW_FILE_NAME":"nuc high RNA bottom 42.mzdata.xml;p_nuc high RNA bottom 42.mzdata.xml;nuc high RNA bottom 42_1.mzdata.xml;p_nuc high RNA bottom 42_1.mzdata.xml;"}
},
{
"Subject ID":"-",
"Sample ID":"Nucleocapsid 600 nM RNA Input Sample 6",
"Factors":{"Protein":"SARA CoV-2 nucleocapsid","RNA":"600 nM","Fraction":"input"},
"Additional sample data":{"Source":"Mouse liver metabolites","RAW_FILE_NAME":"nuc high RNA input 42.mzdata.xml;p_nuc high RNA input 42.mzdata.xml;nuc high RNA input 42_1.mzdata.xml;p_nuc high RNA input 42_1.mzdata.xml;"}
},
{
"Subject ID":"-",
"Sample ID":"Nucleocapsid 600 nM RNA Aqueous Sample 7",
"Factors":{"Protein":"SARA CoV-2 nucleocapsid","RNA":"600 nM","Fraction":"aqueous"},
"Additional sample data":{"Source":"Mouse liver metabolites","RAW_FILE_NAME":"nuc high RNA top 43.mzdata.xml;p_nuc high RNA top 43.mzdata.xml;nuc high RNA top 43_1.mzdata.xml;p_nuc high RNA top 43_1.mzdata.xml;"}
},
{
"Subject ID":"-",
"Sample ID":"Nucleocapsid 600 nM RNA Condensate Sample 7",
"Factors":{"Protein":"SARA CoV-2 nucleocapsid","RNA":"600 nM","Fraction":"condensate"},
"Additional sample data":{"Source":"Mouse liver metabolites","RAW_FILE_NAME":"nuc high RNA bottom 43.mzdata.xml;p_nuc high RNA bottom 43.mzdata.xml;nuc high RNA bottom 43_1.mzdata.xml;p_nuc high RNA bottom 43_1.mzdata.xml;"}
},
{
"Subject ID":"-",
"Sample ID":"Nucleocapsid 600 nM RNA Input Sample 7",
"Factors":{"Protein":"SARA CoV-2 nucleocapsid","RNA":"600 nM","Fraction":"input"},
"Additional sample data":{"Source":"Mouse liver metabolites","RAW_FILE_NAME":"nuc high RNA input 43.mzdata.xml;p_nuc high RNA input 43.mzdata.xml;nuc high RNA input 43_1.mzdata.xml;p_nuc high RNA input 43_1.mzdata.xml;"}
}
],
"COLLECTION":{"COLLECTION_SUMMARY":"Condensate metabolomics. Mouse metabolites were collected from the liver of female mice using methanol extraction. After euthanizing a mouse, the liver was immediately frozen in liquid nitrogen. We then used cold 80% methanol to extract metabolites. This method effectively quenches metabolic activity and is well-established for extracting a broad range of metabolites, including polar metabolites77,78. First, 1 ml of 80% methanol was added to the liver and incubated for 10 min at -20oC. Glass beads were added to the liver and then the liver was lysed by bead-beating for 45 s using a Tissuelyser cell disrupter (Qiagen). The lysate was incubated for 10 min at -20oC and centrifuged (13200 rpm, 5 min) to separate metabolites from macromolecules. The supernatant was collected and 200 µl of 80% methanol was added to the pellet. The incubation, shaking and centrifugation steps were repeated twice to extract more metabolites from the pellet. The three supernatants were combined and centrifuged (14000 rpm, 10 min) to separate any remaining macromolecules from the metabolites. The combined supernatants were dried using a SpeedVac Concentrator (Savant, SPD131DDA) at 25oC and the dried metabolite samples were stored at -80oC. The amount of protein in the pellet was measured using the Quick Start Bradford assay to calculate the metabolites’ protein equivalent mass. Mouse metabolites were initially re-suspended in condensate buffer (50 mM NH4HCO3 pH 7.5, 50 mM NaCl, 1 mM DTT) to a protein equivalent concentration of 938 g/l. The chosen final concentration of metabolites is slightly lower than the 200-300 g/l protein concentration observed in cells79. Metabolites that were not fully soluble in condensate buffer were removed by centrifugation (2x5 min, 16,000 g each), in which only the supernatant was retained. Due to the lack of crowding agents, phase separation required greater concentrations of protein and RNA than typically employed for nucleocapsid and MED1 condensate formation17,32. Purified protein (37.5 μM) was briefly sonicated (10 s) and centrifuged (1 min, 1,000 g) to disrupt any existing condensates and to remove any precipitated proteins. Purified protein (final concentration, 30 μM) was combined with metabolites (final concentration, 150 g/l protein equivalent) and then phage lambda RNA (final concentration, 0.15 μM) in a total volume of 300 µl. An input sample (10 µl) was saved and then the sample was allowed to incubate for 10 min at 25oC. Condensates were then separated from the aqueous environment by centrifugation (10 min, 12,500 g, 25oC). The aqueous phase was removed from the condensate phase and then equal volumes (usually ~ 2 µl) of the aqueous fraction, condensate fraction and input sample were processed for metabolomics using identical approaches as described below. Where shown, representative images of the phases were taken on an iPhone 11. Protein levels in each fraction were evaluated using gels as described above. Where indicated, RNA was added instead to the nucleocapsid at a concentration of either 0 μM or 0.6 μM. In these experiments, all other conditions, including buffer concentrations, were identical to other condensate metabolomics experiments. Notably, in a different subset of experiments, metabolites were added to MED1 condensates after the 10 min incubation rather than prior to the incubation. Metabolite enrichment in these condensates was highly correlated to the other MED1 condensates (r = 0.9, Pearson’s correlation), suggesting that the timing of metabolite addition may not be important. Metabolites were then extracted from each fraction and the input for LC-MS as follows. First the samples were diluted in ammonium bicarbonate buffer (50 mM NH4HCO3 pH 7.5) and briefly heated (2 min, 65oC) to disrupt condensates before being added immediately to 4x volume of ice-cold 100% methanol to precipitate protein and RNA. This heating step does not appear to be necessary for extracting these metabolites and can be excluded (Extended Data Fig. 2e,g). Protein and RNA were separated from metabolites by vortexing the samples (2 min), followed by incubation at -25oC (10 min) and then centrifugation (5 min, 13,000 rpm). The supernatant was saved and the process was repeated on the pellet two more times after adding 200 µl of 80% methanol each time to the pellet. The three supernatants were combined and centrifuged (10 min, 14000 rpm) to remove any additional macromolecules. The final supernatant was collected and dried using a SpeedVac Concentrator run at 25oC.","SAMPLE_TYPE":"Liver","COLLECTION_METHOD":"80% methanol","STORAGE_CONDITIONS":"-80℃"},

"TREATMENT":{"TREATMENT_SUMMARY":"Mouse liver metabolites were combined with either the condensate-forming low-complexity domains of HNRNPA1, MED1 or full-length SARS-CoV-2 nucleocapsid. Condensates were stimulated with either 0 nM, 150 nM or 600 nM RNA. Condensates were centrifuged to the bottom of a 600 ul tube. Equal fractions from the input sample, aqueous phase and condensate phases were collected separately. Metabolites were extracted from each fraction."},

"SAMPLEPREP":{"SAMPLEPREP_SUMMARY":"Metabolites were then extracted from each fraction and the input for LC-MS as follows. First the samples were diluted in ammonium bicarbonate buffer (50 mM NH4HCO3 pH 7.5) and briefly heated (2 min, 65oC) to disrupt condensates before being added immediately to 4x volume of ice-cold 100% methanol to precipitate protein and RNA. This heating step does not appear to be necessary for extracting these metabolites and can be excluded (Extended Data Fig. 2e,g). Protein and RNA were separated from metabolites by vortexing the samples (2 min), followed by incubation at -25oC (10 min) and then centrifugation (5 min, 13,000 rpm). The supernatant was saved and the process was repeated on the pellet two more times after adding 200 µl of 80% methanol each time to the pellet. The three supernatants were combined and centrifuged (10 min, 14000 rpm) to remove any additional macromolecules. The final supernatant was collected and dried using a SpeedVac Concentrator run at 25oC. On the day of metabolite analysis, dried-down extracts were reconstituted in 150 µl 70% acetonitrile, at a relative protein concentration of ~ 2 µg/µl, and 4 µl of this reconstituted extract was injected for LC/MS-based targeted and untargeted metabolite profiling.","EXTRACT_STORAGE":"-80℃"},

"CHROMATOGRAPHY":{"CHROMATOGRAPHY_SUMMARY":"Tissue extracts were analyzed by LC/MS as described previously, using a platform comprised of an Agilent Model 1290 Infinity II liquid chromatography system coupled to an Agilent 6550 iFunnel time-of-flight MS analyzer. Chromatography of metabolites utilized aqueous normal phase (ANP) chromatography on a Diamond Hydride column (Microsolv). Mobile phases consisted of: (A) 50% isopropanol, containing 0.025% acetic acid, and (B) 90% acetonitrile containing 5 mM ammonium acetate. To eliminate the interference of metal ions on chromatographic peak integrity and electrospray ionization, EDTA was added to the mobile phase at a final concentration of 5 µM. The following gradient was applied: 0-1.0 min, 99% B; 1.0-15.0 min, to 20% B; 15.0 to 29.0, 0% B; 29.1 to 37min, 99% B.","CHROMATOGRAPHY_TYPE":"Normal phase","INSTRUMENT_NAME":"Agilent Model 1290 Infinity II liquid chromatography system","COLUMN_NAME":"Cogent Diamond Hydride (150 × 2.1 mm, 4um)","SOLVENT_A":"50% isopropanol, containing 0.025% acetic acid","SOLVENT_B":"90% acetonitrile containing 5 mM ammonium acetate"},

"ANALYSIS":{"ANALYSIS_TYPE":"MS"},

"MS":{"INSTRUMENT_NAME":"Agilent 6550 QTOF","INSTRUMENT_TYPE":"QTOF","MS_TYPE":"Other","ION_MODE":"POSITIVE","MS_COMMENTS":"LC/MS-based targeted and untargeted metabolite profiling. For targeted analysis, raw LC/MS data was extracted by MassProfinder 8.0 (Agilent Technologies) using an in-house annotated personal metabolite database that contains 863 metabolites (Agilent Technologies). Additionally, molecular feature extraction (MFE) was performed for untargeted metabolite profiling using MassProfinder 8.0 (Agilent Technologies). The untargeted molecular features were imported into MassProfiler Professional 15.1 (MPP, Agilent Technologies) and searched against Metlin personal metabolite database (PCDL database 8.0), Human Metabolome Database (HMDB) and an in-house phospholipid database for tentative metabolite ID assignments, based on monoisotopic neutral mass (< 5 ppm mass accuracy) matches. Furthermore, a molecular formula generator (MFG) algorithm in MPP was used to generate and score empirical molecular formulae, based on a weighted consideration of monoisotopic mass accuracy, isotope abundance ratios, and spacing between isotope peaks. A tentative compound ID was assigned when PCDL database and MFG scores concurred for a given candidate molecule. Tentatively assigned molecules were reextracted using Profinder 8.0 for confirmation of untargeted results. For phospholipids, assignment of IDs was based on the defined pattern of neutral loss and head group fragment ions. Metabolites from targeted and untargeted extraction were combined for further statistical analysis among groups of input, aqueous and condensate fractions. Metabolites were removed from our analysis if they had a low ion count or high variation in input samples. Measurements of metabolite ion counts in input samples should be replicates across experiments. As such, differences in metabolite ion counts reflect experimental variability. To determine appropriate cut-offs, we examined the relationship between metabolite ion counts and their variation across input sample technical replicates. Metabolites with a median of < 1000 ion counts/sample tended to have high variation across samples. As a result, these metabolites were removed. Metabolites were also removed with > 2.5 standard deviation in log2(ion counts) since the input measurements for these metabolites were particularly unreliable relative to what was observed for other metabolites."},

"MS_METABOLITE_DATA":{
"Units":"Ion counts",

"Data":[{"Metabolite":"Xanthine","Nucleocapsid Condensate Sample 1":"682550.015654907","Nucleocapsid Condensate Sample 2":"573728.955922851","Nucleocapsid Condensate Sample 3":"832576.883448731","Nucleocapsid Aqueous Sample 1":"1356741.49974597","Nucleocapsid Aqueous Sample 2":"1091538.98534106","Nucleocapsid Aqueous Sample 3":"1162611.77812488","Nucleocapsid Input Sample 1":"1429908.14516028","Nucleocapsid Input Sample 2":"1039271.15564005","Nucleocapsid Input Sample 3":"979322.518750336","MED1 Condensate Sample 1":"827464.233683548","MED1 Condensate Sample 2":"1132386.70934207","MED1 Condensate Sample 3":"1272206.39001099","MED1 Aqueous Sample 1":"754441.175922577","MED1 Aqueous Sample 2":"495.80909638214","MED1 Aqueous Sample 3":"2133671.3760531","MED1 Input Sample 1":"631141.937244919","MED1 Input Sample 2":"1201452.21511621","MED1 Input Sample 3":"1537057.20864185","HNRNPA1 Condensate Sample 1":"1220259.01192578","HNRNPA1 Condensate Sample 2":"1530261.16870428","HNRNPA1 Condensate Sample 3":"1557698.81464917","HNRNPA1 Aqueous Sample 1":"1301876.41826233","HNRNPA1 Aqueous Sample 2":"1455709.57307809","HNRNPA1 Aqueous Sample 3":"1652513.24592114","HNRNPA1 Input Sample 1":"1332447.68645709","HNRNPA1 Input Sample 2":"1640406.21967224","HNRNPA1 Input Sample 3":"1241641.18760584","Nucleocapsid No RNA Condensate Sample 4":"1280126.18571844","Nucleocapsid No RNA Condensate Sample 5":"658706.435015503","Nucleocapsid No RNA Aqueous Sample 4":"1359812.34595691","Nucleocapsid No RNA Aqueous Sample 5":"554620.754614517","Nucleocapsid No RNA Input Sample 4":"1902986.18875436","Nucleocapsid No RNA Input Sample 5":"524994.214767792","Nucleocapsid 600 nM RNA Condensate Sample 6":"720686.515062439","Nucleocapsid 600 nM RNA Condensate Sample 7":"656157.174236115","Nucleocapsid 600 nM RNA Aqueous Sample 6":"1260703.39231274","Nucleocapsid 600 nM RNA Aqueous Sample 7":"1217343.27314294","Nucleocapsid 600 nM RNA Input Sample 6":"1357521.63467261","Nucleocapsid 600 nM RNA Input Sample 7":"1147934.07339063"},{"Metabolite":"Uridine","Nucleocapsid Condensate Sample 1":"266596.512777588","Nucleocapsid Condensate Sample 2":"385905.595471802","Nucleocapsid Condensate Sample 3":"507548.577806274","Nucleocapsid Aqueous Sample 1":"459869.385390625","Nucleocapsid Aqueous Sample 2":"730990.723918701","Nucleocapsid Aqueous Sample 3":"739056.7188479","Nucleocapsid Input Sample 1":"499417.173301758","Nucleocapsid Input Sample 2":"635049.35202832","Nucleocapsid Input Sample 3":"655096.143758972","MED1 Condensate Sample 1":"602338.109163574","MED1 Condensate Sample 2":"534582.144563965","MED1 Condensate Sample 3":"416371.676694336","MED1 Aqueous Sample 1":"583691.91150708","MED1 Aqueous Sample 2":"135","MED1 Aqueous Sample 3":"920168.549778808","MED1 Input Sample 1":"452902.426008545","MED1 Input Sample 2":"658236.697044433","MED1 Input Sample 3":"574381.235734863","HNRNPA1 Condensate Sample 1":"482161.640844727","HNRNPA1 Condensate Sample 2":"806668.230032105","HNRNPA1 Condensate Sample 3":"565405.822118164","HNRNPA1 Aqueous Sample 1":"482616.893239014","HNRNPA1 Aqueous Sample 2":"729638.137726563","HNRNPA1 Aqueous Sample 3":"619452.173164795","HNRNPA1 Input Sample 1":"532681.163977783","HNRNPA1 Input Sample 2":"769849.793500732","HNRNPA1 Input Sample 3":"478403.559858642","Nucleocapsid No RNA Condensate Sample 4":"407484.87505542","Nucleocapsid No RNA Condensate Sample 5":"376414.539735962","Nucleocapsid No RNA Aqueous Sample 4":"462822.258544739","Nucleocapsid No RNA Aqueous Sample 5":"368057.476254395","Nucleocapsid No RNA Input Sample 4":"631321.276896973","Nucleocapsid No RNA Input Sample 5":"356262.33323291","Nucleocapsid 600 nM RNA Condensate Sample 6":"436378.367045288","Nucleocapsid 600 nM RNA Condensate Sample 7":"455582.640960449","Nucleocapsid 600 nM RNA Aqueous Sample 6":"726309.425500733","Nucleocapsid 600 nM RNA Aqueous Sample 7":"841877.406435547","Nucleocapsid 600 nM RNA Input Sample 6":"809381.583923828","Nucleocapsid 600 nM RNA Input Sample 7":"795228.831941894"},{"Metabolite":"Uric Acid","Nucleocapsid Condensate Sample 1":"81116.1357498288","Nucleocapsid Condensate Sample 2":"69007.7476036806","Nucleocapsid Condensate Sample 3":"111329.418743281","Nucleocapsid Aqueous Sample 1":"635273.708267395","Nucleocapsid Aqueous Sample 2":"1386117.63897101","Nucleocapsid Aqueous Sample 3":"670654.108044162","Nucleocapsid Input Sample 1":"756257.459959241","Nucleocapsid Input Sample 2":"1316252.27194627","Nucleocapsid Input Sample 3":"195418.983676714","MED1 Condensate Sample 1":"1487442.61767684","MED1 Condensate Sample 2":"1997725.00419322","MED1 Condensate Sample 3":"654521.663664221","MED1 Aqueous Sample 1":"406261.130992929","MED1 Aqueous Sample 2":"7766.69065763259","MED1 Aqueous Sample 3":"2626854.9783112","MED1 Input Sample 1":"961833.252813339","MED1 Input Sample 2":"1573927.55598887","MED1 Input Sample 3":"1427068.38731007","HNRNPA1 Condensate Sample 1":"1019938.96834612","HNRNPA1 Condensate Sample 2":"1477895.85120987","HNRNPA1 Condensate Sample 3":"1512116.46669266","HNRNPA1 Aqueous Sample 1":"1087610.23760246","HNRNPA1 Aqueous Sample 2":"1124255.60665066","HNRNPA1 Aqueous Sample 3":"1410116.14056161","HNRNPA1 Input Sample 1":"1047363.28247786","HNRNPA1 Input Sample 2":"1424038.71814704","HNRNPA1 Input Sample 3":"913200.829495876","Nucleocapsid No RNA Condensate Sample 4":"1083500.16482171","Nucleocapsid No RNA Condensate Sample 5":"230374.845246399","Nucleocapsid No RNA Aqueous Sample 4":"1172596.99462367","Nucleocapsid No RNA Aqueous Sample 5":"90059.7234573691","Nucleocapsid No RNA Input Sample 4":"2695464.95068571","Nucleocapsid No RNA Input Sample 5":"85049.769889534","Nucleocapsid 600 nM RNA Condensate Sample 6":"109439.797709419","Nucleocapsid 600 nM RNA Condensate Sample 7":"95263.6682534712","Nucleocapsid 600 nM RNA Aqueous Sample 6":"2567421.87980515","Nucleocapsid 600 nM RNA Aqueous Sample 7":"1865512.74110033","Nucleocapsid 600 nM RNA Input Sample 6":"1708528.25436016","Nucleocapsid 600 nM RNA Input Sample 7":"2063210.31018069"},{"Metabolite":"Urea","Nucleocapsid Condensate Sample 1":"650398.766795899","Nucleocapsid Condensate Sample 2":"628512.726951172","Nucleocapsid Condensate Sample 3":"418244.064348145","Nucleocapsid Aqueous Sample 1":"151992.122244385","Nucleocapsid Aqueous Sample 2":"81713.147996338","Nucleocapsid Aqueous Sample 3":"78782.7643210449","Nucleocapsid Input Sample 1":"144049.052303223","Nucleocapsid Input Sample 2":"62968.044027588","Nucleocapsid Input Sample 3":"270185.631737061","MED1 Condensate Sample 1":"48148.4092260742","MED1 Condensate Sample 2":"23308.3369674683","MED1 Condensate Sample 3":"91734.5104005128","MED1 Aqueous Sample 1":"220421.435115967","MED1 Aqueous Sample 2":"99735.8155507813","MED1 Aqueous Sample 3":"17818.2977050781","MED1 Input Sample 1":"112018.679636353","MED1 Input Sample 2":"37743.9570246582","MED1 Input Sample 3":"42904.5130750732","HNRNPA1 Condensate Sample 1":"21542.0935575562","HNRNPA1 Condensate Sample 2":"15938.7403379517","HNRNPA1 Condensate Sample 3":"25492.823315979","HNRNPA1 Aqueous Sample 1":"16486.7602576904","HNRNPA1 Aqueous Sample 2":"32439.5805628052","HNRNPA1 Aqueous Sample 3":"22194.5158725586","HNRNPA1 Input Sample 1":"31626.8234638672","HNRNPA1 Input Sample 2":"19145.0429229736","HNRNPA1 Input Sample 3":"33109.2149064941","Nucleocapsid No RNA Condensate Sample 4":"104499.983616699","Nucleocapsid No RNA Condensate Sample 5":"392708.36644873","Nucleocapsid No RNA Aqueous Sample 4":"82741.3801882324","Nucleocapsid No RNA Aqueous Sample 5":"631528.726104492","Nucleocapsid No RNA Input Sample 4":"55524.2421662598","Nucleocapsid No RNA Input Sample 5":"606165.864912109","Nucleocapsid 600 nM RNA Condensate Sample 6":"654802.646070801","Nucleocapsid 600 nM RNA Condensate Sample 7":"766235.305679688","Nucleocapsid 600 nM RNA Aqueous Sample 6":"35339.2124211426","Nucleocapsid 600 nM RNA Aqueous Sample 7":"70202.4624194337","Nucleocapsid 600 nM RNA Input Sample 6":"62144.0904084472","Nucleocapsid 600 nM RNA Input Sample 7":"47051.0074916992"},{"Metabolite":"Tyramine","Nucleocapsid Condensate Sample 1":"1131546.63193359","Nucleocapsid Condensate Sample 2":"833593.009335938","Nucleocapsid Condensate Sample 3":"627945.645414063","Nucleocapsid Aqueous Sample 1":"1454135.01208106","Nucleocapsid Aqueous Sample 2":"1036015.42559668","Nucleocapsid Aqueous Sample 3":"807466.424239746","Nucleocapsid Input Sample 1":"1751894.68145312","Nucleocapsid Input Sample 2":"1197327.91790381","Nucleocapsid Input Sample 3":"655419.709480469","MED1 Condensate Sample 1":"1352405.7902041","MED1 Condensate Sample 2":"1139088.87868555","MED1 Condensate Sample 3":"1010875.45607568","MED1 Aqueous Sample 1":"1126619.47974561","MED1 Aqueous Sample 2":"925473.091612304","MED1 Aqueous Sample 3":"1865000.10877734","MED1 Input Sample 1":"1199442.77907275","MED1 Input Sample 2":"1617049.78319092","MED1 Input Sample 3":"1317198.28993262","HNRNPA1 Condensate Sample 1":"1089081.13677344","HNRNPA1 Condensate Sample 2":"1357585.79862891","HNRNPA1 Condensate Sample 3":"1433312.12375781","HNRNPA1 Aqueous Sample 1":"800933.530509766","HNRNPA1 Aqueous Sample 2":"1026695.01516016","HNRNPA1 Aqueous Sample 3":"1735579.17812305","HNRNPA1 Input Sample 1":"869634.874667969","HNRNPA1 Input Sample 2":"1263881.56406055","HNRNPA1 Input Sample 3":"1567205.68985547","Nucleocapsid No RNA Condensate Sample 4":"842684.229486329","Nucleocapsid No RNA Condensate Sample 5":"1590643.0759082","Nucleocapsid No RNA Aqueous Sample 4":"1779871.31915625","Nucleocapsid No RNA Aqueous Sample 5":"791283.235212892","Nucleocapsid No RNA Input Sample 4":"1785520.4448623","Nucleocapsid No RNA Input Sample 5":"864921.337289063","Nucleocapsid 600 nM RNA Condensate Sample 6":"1336743.91667578","Nucleocapsid 600 nM RNA Condensate Sample 7":"1149073.43","Nucleocapsid 600 nM RNA Aqueous Sample 6":"1573915.33961621","Nucleocapsid 600 nM RNA Aqueous Sample 7":"1518134.64286865","Nucleocapsid 600 nM RNA Input Sample 6":"1567998.56373584","Nucleocapsid 600 nM RNA Input Sample 7":"1453162.85170947"},{"Metabolite":"Trimethyllysine","Nucleocapsid Condensate Sample 1":"31623.1309104155","Nucleocapsid Condensate Sample 2":"27772.0505414276","Nucleocapsid Condensate Sample 3":"80465.3153642271","Nucleocapsid Aqueous Sample 1":"85770.2160529481","Nucleocapsid Aqueous Sample 2":"94719.0290956114","Nucleocapsid Aqueous Sample 3":"102264.396331589","Nucleocapsid Input Sample 1":"88122.8909049606","Nucleocapsid Input Sample 2":"86823.2860062255","Nucleocapsid Input Sample 3":"82001.7521805116","MED1 Condensate Sample 1":"102992.155174652","MED1 Condensate Sample 2":"139739.058355698","MED1 Condensate Sample 3":"94229.5742630309","MED1 Aqueous Sample 1":"77072.9827416913","MED1 Aqueous Sample 2":"1640.91539160154","MED1 Aqueous Sample 3":"217578.846013672","MED1 Input Sample 1":"93809.6655258178","MED1 Input Sample 2":"124633.264767059","MED1 Input Sample 3":"101371.034128067","HNRNPA1 Condensate Sample 1":"143848.320355041","HNRNPA1 Condensate Sample 2":"197342.580335968","HNRNPA1 Condensate Sample 3":"160425.357835327","HNRNPA1 Aqueous Sample 1":"129116.361969986","HNRNPA1 Aqueous Sample 2":"124623.182366608","HNRNPA1 Aqueous Sample 3":"159148.011266388","HNRNPA1 Input Sample 1":"135110.758004318","HNRNPA1 Input Sample 2":"210829.61120729","HNRNPA1 Input Sample 3":"92445.3175507812","Nucleocapsid No RNA Condensate Sample 4":"125291.724628067","Nucleocapsid No RNA Condensate Sample 5":"86293.2311582795","Nucleocapsid No RNA Aqueous Sample 4":"107624.712824585","Nucleocapsid No RNA Aqueous Sample 5":"68338.0697943572","Nucleocapsid No RNA Input Sample 4":"175615.293592621","Nucleocapsid No RNA Input Sample 5":"78358.792296997","Nucleocapsid 600 nM RNA Condensate Sample 6":"73548.4410897677","Nucleocapsid 600 nM RNA Condensate Sample 7":"61138.4422637635","Nucleocapsid 600 nM RNA Aqueous Sample 6":"175785.662097657","Nucleocapsid 600 nM RNA Aqueous Sample 7":"130103.549413147","Nucleocapsid 600 nM RNA Input Sample 6":"150463.976948196","Nucleocapsid 600 nM RNA Input Sample 7":"119234.142791305"},{"Metabolite":"Thiamine","Nucleocapsid Condensate Sample 1":"131424.21854541","Nucleocapsid Condensate Sample 2":"123543.90296228","Nucleocapsid Condensate Sample 3":"255473.977957306","Nucleocapsid Aqueous Sample 1":"229910.513556885","Nucleocapsid Aqueous Sample 2":"308225.860575256","Nucleocapsid Aqueous Sample 3":"374111.420279816","Nucleocapsid Input Sample 1":"220986.946380554","Nucleocapsid Input Sample 2":"288087.399496368","Nucleocapsid Input Sample 3":"267854.948911865","MED1 Condensate Sample 1":"303563.835801208","MED1 Condensate Sample 2":"325114.058391662","MED1 Condensate Sample 3":"243537.195133209","MED1 Aqueous Sample 1":"190034.171071747","MED1 Aqueous Sample 2":"5300.49695687859","MED1 Aqueous Sample 3":"586065.517989198","MED1 Input Sample 1":"202413.253235351","MED1 Input Sample 2":"345071.49955246","MED1 Input Sample 3":"269883.050610962","HNRNPA1 Condensate Sample 1":"245295.593299072","HNRNPA1 Condensate Sample 2":"527195.736911408","HNRNPA1 Condensate Sample 3":"359647.299573365","HNRNPA1 Aqueous Sample 1":"246965.592406281","HNRNPA1 Aqueous Sample 2":"373831.580355713","HNRNPA1 Aqueous Sample 3":"392515.491999878","HNRNPA1 Input Sample 1":"244305.829903381","HNRNPA1 Input Sample 2":"537062.365116577","HNRNPA1 Input Sample 3":"255645.793718048","Nucleocapsid No RNA Condensate Sample 4":"227463.200187164","Nucleocapsid No RNA Condensate Sample 5":"185439.47206842","Nucleocapsid No RNA Aqueous Sample 4":"274094.715715546","Nucleocapsid No RNA Aqueous Sample 5":"132846.459020737","Nucleocapsid No RNA Input Sample 4":"390354.141281067","Nucleocapsid No RNA Input Sample 5":"147061.738624939","Nucleocapsid 600 nM RNA Condensate Sample 6":"192888.665845032","Nucleocapsid 600 nM RNA Condensate Sample 7":"171949.221650879","Nucleocapsid 600 nM RNA Aqueous Sample 6":"408777.11524469","Nucleocapsid 600 nM RNA Aqueous Sample 7":"379189.976781067","Nucleocapsid 600 nM RNA Input Sample 6":"384844.239958252","Nucleocapsid 600 nM RNA Input Sample 7":"346312.00325476"},{"Metabolite":"Succinoadenosine","Nucleocapsid Condensate Sample 1":"7876.67909510808","Nucleocapsid Condensate Sample 2":"8415.19418730167","Nucleocapsid Condensate Sample 3":"17223.7652133332","Nucleocapsid Aqueous Sample 1":"13779.9069593887","Nucleocapsid Aqueous Sample 2":"19276.6193714065","Nucleocapsid Aqueous Sample 3":"23030.6448426972","Nucleocapsid Input Sample 1":"13962.1615892791","Nucleocapsid Input Sample 2":"17515.9240399018","Nucleocapsid Input Sample 3":"17590.9417627258","MED1 Condensate Sample 1":"16684.3202015229","MED1 Condensate Sample 2":"42881.8897565917","MED1 Condensate Sample 3":"17009.954373291","MED1 Aqueous Sample 1":"27871.852216156","MED1 Aqueous Sample 2":"194.089844436654","MED1 Aqueous Sample 3":"45500.2124393617","MED1 Input Sample 1":"33934.1264953002","MED1 Input Sample 2":"32710.5925241547","MED1 Input Sample 3":"25124.9787863617","HNRNPA1 Condensate Sample 1":"31564.2124119262","HNRNPA1 Condensate Sample 2":"37884.8200694427","HNRNPA1 Condensate Sample 3":"27232.0070716781","HNRNPA1 Aqueous Sample 1":"31173.6952051238","HNRNPA1 Aqueous Sample 2":"25957.1893801804","HNRNPA1 Aqueous Sample 3":"32071.0763251343","HNRNPA1 Input Sample 1":"25473.7343147277","HNRNPA1 Input Sample 2":"52148.6704491118","HNRNPA1 Input Sample 3":"17922.9827393188","Nucleocapsid No RNA Condensate Sample 4":"22497.617875885","Nucleocapsid No RNA Condensate Sample 5":"20185.8761676635","Nucleocapsid No RNA Aqueous Sample 4":"20089.5901264801","Nucleocapsid No RNA Aqueous Sample 5":"17667.1549240875","Nucleocapsid No RNA Input Sample 4":"36746.8109034424","Nucleocapsid No RNA Input Sample 5":"21736.8925647431","Nucleocapsid 600 nM RNA Condensate Sample 6":"13714.5778924408","Nucleocapsid 600 nM RNA Condensate Sample 7":"12906.0091401367","Nucleocapsid 600 nM RNA Aqueous Sample 6":"29025.5134618377","Nucleocapsid 600 nM RNA Aqueous Sample 7":"20089.1934672394","Nucleocapsid 600 nM RNA Input Sample 6":"24636.6915435639","Nucleocapsid 600 nM RNA Input Sample 7":"21786.7874148102"},{"Metabolite":"ST 21:4;O5","Nucleocapsid Condensate Sample 1":"18289.9439269682","Nucleocapsid Condensate Sample 2":"34270.4292555761","Nucleocapsid Condensate Sample 3":"16222.4539205322","Nucleocapsid Aqueous Sample 1":"35064.2818185425","Nucleocapsid Aqueous Sample 2":"30187.3228909302","Nucleocapsid Aqueous Sample 3":"22043.5590458374","Nucleocapsid Input Sample 1":"57402.1367838234","Nucleocapsid Input Sample 2":"25394.5434301901","Nucleocapsid Input Sample 3":"28697.0363001709","MED1 Condensate Sample 1":"12285.8151671777","MED1 Condensate Sample 2":"4806.74992126466","MED1 Condensate Sample 3":"18903.3264050598","MED1 Aqueous Sample 1":"22578.3285337396","MED1 Aqueous Sample 2":"3737.4615717163","MED1 Aqueous Sample 3":"33769.8312234719","MED1 Input Sample 1":"27175.0145034485","MED1 Input Sample 2":"33609.4205909481","MED1 Input Sample 3":"40489.8005984421","HNRNPA1 Condensate Sample 1":"135","HNRNPA1 Condensate Sample 2":"29834.3541971099","HNRNPA1 Condensate Sample 3":"31601.5646017761","HNRNPA1 Aqueous Sample 1":"23906.6856663725","HNRNPA1 Aqueous Sample 2":"24146.34609906","HNRNPA1 Aqueous Sample 3":"20692.9963762207","HNRNPA1 Input Sample 1":"26784.1576438599","HNRNPA1 Input Sample 2":"36074.7054830322","HNRNPA1 Input Sample 3":"14372.3728126221","Nucleocapsid No RNA Condensate Sample 4":"34780.607064603","Nucleocapsid No RNA Condensate Sample 5":"71792.0748549042","Nucleocapsid No RNA Aqueous Sample 4":"53085.8958367897","Nucleocapsid No RNA Aqueous Sample 5":"35978.2757062988","Nucleocapsid No RNA Input Sample 4":"43142.6860193529","Nucleocapsid No RNA Input Sample 5":"29292.2850366694","Nucleocapsid 600 nM RNA Condensate Sample 6":"30319.156788147","Nucleocapsid 600 nM RNA Condensate Sample 7":"8323.7039344504","Nucleocapsid 600 nM RNA Aqueous Sample 6":"59320.4475049474","Nucleocapsid 600 nM RNA Aqueous Sample 7":"43324.4755208445","Nucleocapsid 600 nM RNA Input Sample 6":"38190.2278091431","Nucleocapsid 600 nM RNA Input Sample 7":"23792.2220392699"},{"Metabolite":"ST 21:3;O5","Nucleocapsid Condensate Sample 1":"46604.0530765931","Nucleocapsid Condensate Sample 2":"33815.4623522644","Nucleocapsid Condensate Sample 3":"42479.2632269543","Nucleocapsid Aqueous Sample 1":"37712.7002463684","Nucleocapsid Aqueous Sample 2":"36044.1200460676","Nucleocapsid Aqueous Sample 3":"31962.9019225464","Nucleocapsid Input Sample 1":"53514.7122147647","Nucleocapsid Input Sample 2":"35662.4898209894","Nucleocapsid Input Sample 3":"23866.7840699768","MED1 Condensate Sample 1":"82105.5176002605","MED1 Condensate Sample 2":"90273.9643695679","MED1 Condensate Sample 3":"63396.0489444885","MED1 Aqueous Sample 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No RNA Condensate Sample 5":"817922.353785263","Nucleocapsid No RNA Aqueous Sample 4":"839221.207883758","Nucleocapsid No RNA Aqueous Sample 5":"624407.992150635","Nucleocapsid No RNA Input Sample 4":"1780841.63779032","Nucleocapsid No RNA Input Sample 5":"649213.437914947","Nucleocapsid 600 nM RNA Condensate Sample 6":"582522.352823212","Nucleocapsid 600 nM RNA Condensate Sample 7":"629324.988839355","Nucleocapsid 600 nM RNA Aqueous Sample 6":"1784215.22599445","Nucleocapsid 600 nM RNA Aqueous Sample 7":"1580287.1304277","Nucleocapsid 600 nM RNA Input Sample 6":"1472502.03430258","Nucleocapsid 600 nM RNA Input Sample 7":"1493030.72105023"},{"Metabolite":"Proline Betaine","Nucleocapsid Condensate Sample 1":"807715.479104493","Nucleocapsid Condensate Sample 2":"708478.487355408","Nucleocapsid Condensate Sample 3":"1275227.95902344","Nucleocapsid Aqueous Sample 1":"1675425.26865576","Nucleocapsid Aqueous Sample 2":"1893435.68916071","Nucleocapsid Aqueous Sample 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Aqueous Sample 5":"5869.7309010235","Nucleocapsid No RNA Input Sample 4":"5830.71875118196","Nucleocapsid No RNA Input Sample 5":"6564.77678465128","Nucleocapsid 600 nM RNA Condensate Sample 6":"106844.511380159","Nucleocapsid 600 nM RNA Condensate Sample 7":"75107.7265143492","Nucleocapsid 600 nM RNA Aqueous Sample 6":"6413.00293816304","Nucleocapsid 600 nM RNA Aqueous Sample 7":"6933.25841613769","Nucleocapsid 600 nM RNA Input Sample 6":"8112.25320951296","Nucleocapsid 600 nM RNA Input Sample 7":"5313.59168016888"},{"Metabolite":"PE 35:1","Nucleocapsid Condensate Sample 1":"63034.261261138","Nucleocapsid Condensate Sample 2":"37245.0726130295","Nucleocapsid Condensate Sample 3":"30389.1588034263","Nucleocapsid Aqueous Sample 1":"9523.8364109124","Nucleocapsid Aqueous Sample 2":"4108.78883401489","Nucleocapsid Aqueous Sample 3":"7569.50551313115","Nucleocapsid Input Sample 1":"8360.33726242352","Nucleocapsid Input Sample 2":"4258.07064615393","Nucleocapsid Input Sample 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Condensate Sample 2":"87962.7874560852","MED1 Condensate Sample 3":"97771.0567890168","MED1 Aqueous Sample 1":"4984.99340744016","MED1 Aqueous Sample 2":"6111.89220367434","MED1 Aqueous Sample 3":"9121.67763056942","MED1 Input Sample 1":"4171.13069711307","MED1 Input Sample 2":"11227.0525754395","MED1 Input Sample 3":"13713.1811453247","HNRNPA1 Condensate Sample 1":"74543.9659434509","HNRNPA1 Condensate Sample 2":"135639.439286163","HNRNPA1 Condensate Sample 3":"91327.6182041932","HNRNPA1 Aqueous Sample 1":"9283.8656308289","HNRNPA1 Aqueous Sample 2":"8365.74520223997","HNRNPA1 Aqueous Sample 3":"7516.39238153077","HNRNPA1 Input Sample 1":"6071.16651959227","HNRNPA1 Input Sample 2":"7009.53391716002","HNRNPA1 Input Sample 3":"15177.484277771","Nucleocapsid No RNA Condensate Sample 4":"75511.8025946655","Nucleocapsid No RNA Condensate Sample 5":"114098.41815918","Nucleocapsid No RNA Aqueous Sample 4":"6029.77527944949","Nucleocapsid No RNA Aqueous Sample 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No RNA Condensate Sample 5":"1442768.0758468","Nucleocapsid No RNA Aqueous Sample 4":"58814.7086423646","Nucleocapsid No RNA Aqueous Sample 5":"21112.2846278381","Nucleocapsid No RNA Input Sample 4":"65099.8623030395","Nucleocapsid No RNA Input Sample 5":"18445.4242052612","Nucleocapsid 600 nM RNA Condensate Sample 6":"306510.905088409","Nucleocapsid 600 nM RNA Condensate Sample 7":"525429.929327576","Nucleocapsid 600 nM RNA Aqueous Sample 6":"38349.292988678","Nucleocapsid 600 nM RNA Aqueous Sample 7":"65445.0372863617","Nucleocapsid 600 nM RNA Input Sample 6":"39869.8775195007","Nucleocapsid 600 nM RNA Input Sample 7":"50723.3267445983"},{"Metabolite":"LPC 20:1","Nucleocapsid Condensate Sample 1":"24376.7862002869","Nucleocapsid Condensate Sample 2":"13627.017969101","Nucleocapsid Condensate Sample 3":"16563.9231482468","Nucleocapsid Aqueous Sample 1":"4545.39249301148","Nucleocapsid Aqueous Sample 2":"3011.9772435608","Nucleocapsid Aqueous Sample 3":"3919.91393719483","Nucleocapsid 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Aqueous Sample 2":"107947.432580337","Nucleocapsid Aqueous Sample 3":"112183.036829193","Nucleocapsid Input Sample 1":"167362.105440735","Nucleocapsid Input Sample 2":"101368.739443176","Nucleocapsid Input Sample 3":"84249.3976875914","MED1 Condensate Sample 1":"643947.974092896","MED1 Condensate Sample 2":"1891443.0226076","MED1 Condensate Sample 3":"3822615.41128449","MED1 Aqueous Sample 1":"54271.718735199","MED1 Aqueous Sample 2":"31030.867207489","MED1 Aqueous Sample 3":"65716.6665123291","MED1 Input Sample 1":"53600.9173899841","MED1 Input Sample 2":"120718.340532105","MED1 Input Sample 3":"215620.482797638","HNRNPA1 Condensate Sample 1":"1855195.57974829","HNRNPA1 Condensate Sample 2":"3339816.15109814","HNRNPA1 Condensate Sample 3":"2208566.36215186","HNRNPA1 Aqueous Sample 1":"62792.1492017211","HNRNPA1 Aqueous Sample 2":"112409.661853577","HNRNPA1 Aqueous Sample 3":"117500.636590576","HNRNPA1 Input Sample 1":"65737.1016823119","HNRNPA1 Input Sample 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nM RNA Condensate Sample 7":"1209185.37603296","Nucleocapsid 600 nM RNA Aqueous Sample 6":"2139248.80318536","Nucleocapsid 600 nM RNA Aqueous Sample 7":"2237020.45830658","Nucleocapsid 600 nM RNA Input Sample 6":"2039563.83332361","Nucleocapsid 600 nM RNA Input Sample 7":"1994272.62938855"},{"Metabolite":"Guanidinosuccinic Acid","Nucleocapsid Condensate Sample 1":"44603.9853778077","Nucleocapsid Condensate Sample 2":"52402.6035207519","Nucleocapsid Condensate Sample 3":"85419.0520271607","Nucleocapsid Aqueous Sample 1":"79519.9981599731","Nucleocapsid Aqueous Sample 2":"110430.726857056","Nucleocapsid Aqueous Sample 3":"110273.952403259","Nucleocapsid Input Sample 1":"74811.1810970459","Nucleocapsid Input Sample 2":"98226.6358417359","Nucleocapsid Input Sample 3":"96219.2433706055","MED1 Condensate Sample 1":"86529.2617476806","MED1 Condensate Sample 2":"151585.570621948","MED1 Condensate Sample 3":"93328.2490703125","MED1 Aqueous Sample 1":"97347.7968320311","MED1 Aqueous Sample 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Input Sample 2":"143308.903030762","HNRNPA1 Input Sample 3":"136151.109541138","Nucleocapsid No RNA Condensate Sample 4":"92138.3730115967","Nucleocapsid No RNA Condensate Sample 5":"71400.2942658692","Nucleocapsid No RNA Aqueous Sample 4":"125106.088197265","Nucleocapsid No RNA Aqueous Sample 5":"73140.4149451905","Nucleocapsid No RNA Input Sample 4":"71830.5746550292","Nucleocapsid No RNA Input Sample 5":"78240.2713426513","Nucleocapsid 600 nM RNA Condensate Sample 6":"75080.3470609133","Nucleocapsid 600 nM RNA Condensate Sample 7":"74919.2764251709","Nucleocapsid 600 nM RNA Aqueous Sample 6":"75744.8778701782","Nucleocapsid 600 nM RNA Aqueous Sample 7":"74376.5928900149","Nucleocapsid 600 nM RNA Input Sample 6":"74186.5792604371","Nucleocapsid 600 nM RNA Input Sample 7":"80958.1921048586"},{"Metabolite":"Choline","Nucleocapsid Condensate Sample 1":"2522319.19288741","Nucleocapsid Condensate Sample 2":"3211491.4597919","Nucleocapsid Condensate Sample 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No RNA Condensate Sample 5":"87225.2691348877","Nucleocapsid No RNA Aqueous Sample 4":"89470.7367519075","Nucleocapsid No RNA Aqueous Sample 5":"96763.3242232971","Nucleocapsid No RNA Input Sample 4":"91711.4179147947","Nucleocapsid No RNA Input Sample 5":"95420.9012984925","Nucleocapsid 600 nM RNA Condensate Sample 6":"78641.7991677549","Nucleocapsid 600 nM RNA Condensate Sample 7":"95980.8967561647","Nucleocapsid 600 nM RNA Aqueous Sample 6":"110772.193794678","Nucleocapsid 600 nM RNA Aqueous Sample 7":"91007.6437346189","Nucleocapsid 600 nM RNA Input Sample 6":"78723.8547958068","Nucleocapsid 600 nM RNA Input Sample 7":"89099.2270373229"},{"Metabolite":"Alanine","Nucleocapsid Condensate Sample 1":"464507.262435165","Nucleocapsid Condensate Sample 2":"433075.91438031","Nucleocapsid Condensate Sample 3":"713311.89283406","Nucleocapsid Aqueous Sample 1":"767735.427586898","Nucleocapsid Aqueous Sample 2":"888223.099572617","Nucleocapsid Aqueous Sample 3":"944372.758942565","Nucleocapsid Input Sample 1":"785836.175077087","Nucleocapsid Input Sample 2":"832625.229981063","Nucleocapsid Input Sample 3":"758457.223725616","MED1 Condensate Sample 1":"534251.118121643","MED1 Condensate Sample 2":"940423.843052033","MED1 Condensate Sample 3":"781902.675484314","MED1 Aqueous Sample 1":"577528.702099686","MED1 Aqueous Sample 2":"70981.2117439117","MED1 Aqueous Sample 3":"1654257.0955116","MED1 Input Sample 1":"638228.007618317","MED1 Input Sample 2":"973533.603005264","MED1 Input Sample 3":"927752.756042206","HNRNPA1 Condensate Sample 1":"915216.190850769","HNRNPA1 Condensate Sample 2":"1275724.5130891","HNRNPA1 Condensate Sample 3":"1171544.55121567","HNRNPA1 Aqueous Sample 1":"912593.5855652","HNRNPA1 Aqueous Sample 2":"1017168.47496663","HNRNPA1 Aqueous Sample 3":"1255700.87951331","HNRNPA1 Input Sample 1":"882904.505972351","HNRNPA1 Input Sample 2":"1383324.10015335","HNRNPA1 Input Sample 3":"867364.585520584","Nucleocapsid No RNA Condensate Sample 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Aqueous Sample 3":"4817922.5682937","Nucleocapsid Input Sample 1":"3601925.12443726","Nucleocapsid Input Sample 2":"3842496.69903272","Nucleocapsid Input Sample 3":"3645597.05249194","MED1 Condensate Sample 1":"7948446.15772058","MED1 Condensate Sample 2":"6592295.28580225","MED1 Condensate Sample 3":"8207519.29933765","MED1 Aqueous Sample 1":"4544346.47259717","MED1 Aqueous Sample 2":"92090.3670844726","MED1 Aqueous Sample 3":"7941584.73201196","MED1 Input Sample 1":"4571211.72732568","MED1 Input Sample 2":"5498671.52752887","MED1 Input Sample 3":"5459724.72583472","HNRNPA1 Condensate Sample 1":"1924897.49978082","HNRNPA1 Condensate Sample 2":"3538812.23953616","HNRNPA1 Condensate Sample 3":"2883341.32813619","HNRNPA1 Aqueous Sample 1":"1732933.28870689","HNRNPA1 Aqueous Sample 2":"2110697.1495704","HNRNPA1 Aqueous Sample 3":"2477659.10990115","HNRNPA1 Input Sample 1":"1676241.20556812","HNRNPA1 Input Sample 2":"2988933.16305234","HNRNPA1 Input Sample 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Condensate Sample 2":"146218.868547205","Nucleocapsid Condensate Sample 3":"100911.832506592","Nucleocapsid Aqueous Sample 1":"76577.1092664175","Nucleocapsid Aqueous Sample 2":"90726.2138969726","Nucleocapsid Aqueous Sample 3":"86659.7823306885","Nucleocapsid Input Sample 1":"68553.9327420044","Nucleocapsid Input Sample 2":"93583.8059102173","Nucleocapsid Input Sample 3":"65658.5172437744","MED1 Condensate Sample 1":"82482.9663371491","MED1 Condensate Sample 2":"72465.7769819336","MED1 Condensate Sample 3":"79389.973533988","MED1 Aqueous Sample 1":"37078.1338682251","MED1 Aqueous Sample 2":"47317.11035849","MED1 Aqueous Sample 3":"66777.9674282226","MED1 Input Sample 1":"35760.3327575684","MED1 Input Sample 2":"47889.3416218567","MED1 Input Sample 3":"72369.5821035461","HNRNPA1 Condensate Sample 1":"115420.667341324","HNRNPA1 Condensate Sample 2":"186978.745705414","HNRNPA1 Condensate Sample 3":"190168.252226135","HNRNPA1 Aqueous Sample 1":"34312.4980350952","HNRNPA1 Aqueous Sample 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Condensate Sample 1":"25564.0348062906","Nucleocapsid Condensate Sample 2":"28374.6469247837","Nucleocapsid Condensate Sample 3":"42047.9671148291","Nucleocapsid Aqueous Sample 1":"42331.54063767","Nucleocapsid Aqueous Sample 2":"50967.8323383093","Nucleocapsid Aqueous Sample 3":"47267.9357073241","Nucleocapsid Input Sample 1":"45102.8891861888","Nucleocapsid Input Sample 2":"49359.2707166695","Nucleocapsid Input Sample 3":"43781.2422317665","MED1 Condensate Sample 1":"45696.2042924679","MED1 Condensate Sample 2":"58596.0985346489","MED1 Condensate Sample 3":"23889.1531762371","MED1 Aqueous Sample 1":"39624.7569963486","MED1 Aqueous Sample 2":"427.610116577156","MED1 Aqueous Sample 3":"75550.935708477","MED1 Input Sample 1":"38445.1684862128","MED1 Input Sample 2":"44310.9648835291","MED1 Input Sample 3":"36491.4659195945","HNRNPA1 Condensate Sample 1":"44291.0489339208","HNRNPA1 Condensate Sample 2":"66491.9597911853","HNRNPA1 Condensate Sample 3":"43103.8577175083","HNRNPA1 Aqueous 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Sample 2":"23391.7382699109","HNRNPA1 Condensate Sample 3":"24984.7978704071","HNRNPA1 Aqueous Sample 1":"19336.6211511841","HNRNPA1 Aqueous Sample 2":"14247.1238168793","HNRNPA1 Aqueous Sample 3":"21377.6335007927","HNRNPA1 Input Sample 1":"18426.4425767269","HNRNPA1 Input Sample 2":"19132.7113458422","HNRNPA1 Input Sample 3":"15300.0392968439","Nucleocapsid No RNA Condensate Sample 4":"19024.2648932202","Nucleocapsid No RNA Condensate Sample 5":"23147.4018055315","Nucleocapsid No RNA Aqueous Sample 4":"15723.7154206085","Nucleocapsid No RNA Aqueous Sample 5":"23234.0697826691","Nucleocapsid No RNA Input Sample 4":"14713.7223831863","Nucleocapsid No RNA Input Sample 5":"23500.7010653119","Nucleocapsid 600 nM RNA Condensate Sample 6":"20489.8659699624","Nucleocapsid 600 nM RNA Condensate Sample 7":"24444.7744263714","Nucleocapsid 600 nM RNA Aqueous Sample 6":"14571.7756394922","Nucleocapsid 600 nM RNA Aqueous Sample 7":"14211.5442396076","Nucleocapsid 600 nM RNA Input Sample 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No RNA Aqueous Sample 4":"1090045.34698685","Nucleocapsid No RNA Aqueous Sample 5":"273347.592927854","Nucleocapsid No RNA Input Sample 4":"1101266.72860739","Nucleocapsid No RNA Input Sample 5":"263611.564827535","Nucleocapsid 600 nM RNA Condensate Sample 6":"637679.890413694","Nucleocapsid 600 nM RNA Condensate Sample 7":"525847.897283982","Nucleocapsid 600 nM RNA Aqueous Sample 6":"1039347.06862006","Nucleocapsid 600 nM RNA Aqueous Sample 7":"1270429.36323012","Nucleocapsid 600 nM RNA Input Sample 6":"1261080.52620198","Nucleocapsid 600 nM RNA Input Sample 7":"1015585.70280554"},{"Metabolite":"5-Aminopentanoic Acid","Nucleocapsid Condensate Sample 1":"2189920.48567578","Nucleocapsid Condensate Sample 2":"2287819.27200781","Nucleocapsid Condensate Sample 3":"3674406.88546875","Nucleocapsid Aqueous Sample 1":"3993976.04477734","Nucleocapsid Aqueous Sample 2":"4596030.25507422","Nucleocapsid Aqueous Sample 3":"5227558.34622657","Nucleocapsid Input Sample 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No RNA Condensate Sample 5":"3647160.42938672","Nucleocapsid No RNA Aqueous Sample 4":"5182415.2516875","Nucleocapsid No RNA Aqueous Sample 5":"2687101.19104297","Nucleocapsid No RNA Input Sample 4":"8247369.68566798","Nucleocapsid No RNA Input Sample 5":"2987972.38942968","Nucleocapsid 600 nM RNA Condensate Sample 6":"3421763.19305078","Nucleocapsid 600 nM RNA Condensate Sample 7":"2902656.45548828","Nucleocapsid 600 nM RNA Aqueous Sample 6":"8196628.95191407","Nucleocapsid 600 nM RNA Aqueous Sample 7":"6434047.16546093","Nucleocapsid 600 nM RNA Input Sample 6":"7293342.62345704","Nucleocapsid 600 nM RNA Input Sample 7":"5809812.0495586"},{"Metabolite":"463.2019@7.22, provisional ID = 4-Hydroxynonenal Glutathione","Nucleocapsid Condensate Sample 1":"4624.33298797609","Nucleocapsid Condensate Sample 2":"3118.86428846741","Nucleocapsid Condensate Sample 3":"4863.5769276123","Nucleocapsid Aqueous Sample 1":"4834.02939971925","Nucleocapsid Aqueous Sample 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Sample 2":"41873.8413992919","HNRNPA1 Input Sample 3":"40750.5344931031","Nucleocapsid No RNA Condensate Sample 4":"149285.195503754","Nucleocapsid No RNA Condensate Sample 5":"138283.532339355","Nucleocapsid No RNA Aqueous Sample 4":"41284.6976233217","Nucleocapsid No RNA Aqueous Sample 5":"41362.0636763916","Nucleocapsid No RNA Input Sample 4":"39234.582669922","Nucleocapsid No RNA Input Sample 5":"32468.2095469056","Nucleocapsid 600 nM RNA Condensate Sample 6":"87578.0747933656","Nucleocapsid 600 nM RNA Condensate Sample 7":"80001.8382702024","Nucleocapsid 600 nM RNA Aqueous Sample 6":"21729.4023711548","Nucleocapsid 600 nM RNA Aqueous Sample 7":"45271.8656239015","Nucleocapsid 600 nM RNA Input Sample 6":"35579.7548692932","Nucleocapsid 600 nM RNA Input Sample 7":"44157.0574330444"},{"Metabolite":"439.3363@7.96, provisional ID = CAR 18:2;O","Nucleocapsid Condensate Sample 1":"40900.747743042","Nucleocapsid Condensate Sample 2":"9743.7555375976","Nucleocapsid Condensate Sample 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Input Sample 1":"4082.70011325073","HNRNPA1 Input Sample 2":"4518.09214141844","HNRNPA1 Input Sample 3":"2415.20305688476","Nucleocapsid No RNA Condensate Sample 4":"32594.0889147339","Nucleocapsid No RNA Condensate Sample 5":"27414.7409194946","Nucleocapsid No RNA Aqueous Sample 4":"4784.41772186282","Nucleocapsid No RNA Aqueous Sample 5":"4621.1943534546","Nucleocapsid No RNA Input Sample 4":"2969.15927639768","Nucleocapsid No RNA Input Sample 5":"6166.7640859375","Nucleocapsid 600 nM RNA Condensate Sample 6":"17214.1565587768","Nucleocapsid 600 nM RNA Condensate Sample 7":"5498.13453900147","Nucleocapsid 600 nM RNA Aqueous Sample 6":"2163.85877664183","Nucleocapsid 600 nM RNA Aqueous Sample 7":"1677.97771072388","Nucleocapsid 600 nM RNA Input Sample 6":"1546.21032943727","Nucleocapsid 600 nM RNA Input Sample 7":"4289.67844604494"},{"Metabolite":"437.2841@5.28, provisional ID = LPE O-16:1","Nucleocapsid Condensate Sample 1":"31635.8314704285","Nucleocapsid Condensate Sample 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Condensate Sample 7":"66306.8193030281","Nucleocapsid 600 nM RNA Aqueous Sample 6":"43636.6440809693","Nucleocapsid 600 nM RNA Aqueous Sample 7":"46401.2578888819","Nucleocapsid 600 nM RNA Input Sample 6":"61458.9914244995","Nucleocapsid 600 nM RNA Input Sample 7":"52140.786641284"},{"Metabolite":"325.2973@1.13, provisional ID = NAE 18:1","Nucleocapsid Condensate Sample 1":"153640.305713359","Nucleocapsid Condensate Sample 2":"67819.0985264478","Nucleocapsid Condensate Sample 3":"507915.059853689","Nucleocapsid Aqueous Sample 1":"211630.567904449","Nucleocapsid Aqueous Sample 2":"81943.3585976735","Nucleocapsid Aqueous Sample 3":"50866.4805216064","Nucleocapsid Input Sample 1":"133217.388736155","Nucleocapsid Input Sample 2":"133867.068651241","Nucleocapsid Input Sample 3":"124376.593540502","MED1 Condensate Sample 1":"34026.6155977078","MED1 Condensate Sample 2":"46444.8882564697","MED1 Condensate Sample 3":"195732.81625824","MED1 Aqueous Sample 1":"31355.8336925899","MED1 Aqueous 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No RNA Condensate Sample 5":"28263.1415100098","Nucleocapsid No RNA Aqueous Sample 4":"34732.2366514587","Nucleocapsid No RNA Aqueous Sample 5":"22754.0834963379","Nucleocapsid No RNA Input Sample 4":"26045.6372727051","Nucleocapsid No RNA Input Sample 5":"26976.9138024292","Nucleocapsid 600 nM RNA Condensate Sample 6":"25196.8952005005","Nucleocapsid 600 nM RNA Condensate Sample 7":"34452.0873012695","Nucleocapsid 600 nM RNA Aqueous Sample 6":"35849.6419901428","Nucleocapsid 600 nM RNA Aqueous Sample 7":"26674.4977150879","Nucleocapsid 600 nM RNA Input Sample 6":"31568.9571944885","Nucleocapsid 600 nM RNA Input Sample 7":"36135.729173706"},{"Metabolite":"208.0863@5.23, provisional ID = Kynurenine","Nucleocapsid Condensate Sample 1":"105425.538112671","Nucleocapsid Condensate Sample 2":"124425.607712647","Nucleocapsid Condensate Sample 3":"163572.787103149","Nucleocapsid Aqueous Sample 1":"132708.901945923","Nucleocapsid Aqueous Sample 2":"122449.412974182","Nucleocapsid Aqueous Sample 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Sample 4":"82665.0226635742","Nucleocapsid No RNA Condensate Sample 5":"108551.146275879","Nucleocapsid No RNA Aqueous Sample 4":"75882.6926777344","Nucleocapsid No RNA Aqueous Sample 5":"86035.7728519288","Nucleocapsid No RNA Input Sample 4":"60653.8632127685","Nucleocapsid No RNA Input Sample 5":"84150.4323735351","Nucleocapsid 600 nM RNA Condensate Sample 6":"113420.576849487","Nucleocapsid 600 nM RNA Condensate Sample 7":"119229.477242859","Nucleocapsid 600 nM RNA Aqueous Sample 6":"96748.0384993285","Nucleocapsid 600 nM RNA Aqueous Sample 7":"83940.1603455201","Nucleocapsid 600 nM RNA Input Sample 6":"115198.932925903","Nucleocapsid 600 nM RNA Input Sample 7":"83484.7571750488"},{"Metabolite":"2-Aminoadipic Acid","Nucleocapsid Condensate Sample 1":"98600.891747101","Nucleocapsid Condensate Sample 2":"105627.603325012","Nucleocapsid Condensate Sample 3":"85325.5708591308","Nucleocapsid Aqueous Sample 1":"84338.3197450865","Nucleocapsid Aqueous Sample 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Input Sample 2":"48714.4931366272","HNRNPA1 Input Sample 3":"10989.3287663574","Nucleocapsid No RNA Condensate Sample 4":"3818.37569674684","Nucleocapsid No RNA Condensate Sample 5":"1273.1892831421","Nucleocapsid No RNA Aqueous Sample 4":"7055.69984669494","Nucleocapsid No RNA Aqueous Sample 5":"8571.55403507994","Nucleocapsid No RNA Input Sample 4":"9384.35568237303","Nucleocapsid No RNA Input Sample 5":"4910.34330267333","Nucleocapsid 600 nM RNA Condensate Sample 6":"3080.44838417054","Nucleocapsid 600 nM RNA Condensate Sample 7":"3053.35053543092","Nucleocapsid 600 nM RNA Aqueous Sample 6":"14476.8908567657","Nucleocapsid 600 nM RNA Aqueous Sample 7":"9736.16717838285","Nucleocapsid 600 nM RNA Input Sample 6":"10759.695152504","Nucleocapsid 600 nM RNA Input Sample 7":"10243.5727707367"},{"Metabolite":"1-Methylnicotinamide","Nucleocapsid Condensate Sample 1":"102082.086762756","Nucleocapsid Condensate Sample 2":"87117.0674261476","Nucleocapsid Condensate Sample 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LC-MS runs)":"4.16","Retention time (average across LC-MS runs)":"19.7","InChiKeys":"ODKSFYDXXFIFQN-BYPYZUCNSA-N"},{"Metabolite":"Argininosuccinic Acid","Pubchem ID":"16950","Formula":"C10H18N4O6","Measured mass":"290.1317","Mass (actual)":"290.1226","Mass accuracy (ppm, average across LC-MS runs)":"31.25","Retention time (average across LC-MS runs)":"7.87","InChiKeys":"KDZOASGQNOPSCU-WDSKDSINSA-N"},{"Metabolite":"Betaine","Pubchem ID":"247","Formula":"C5H11NO2","Measured mass":"117.0795","Mass (actual)":"117.079","Mass accuracy (ppm, average across LC-MS runs)":"4.45","Retention time (average across LC-MS runs)":"8.87","InChiKeys":"KWIUHFFTVRNATP-UHFFFAOYSA-N"},{"Metabolite":"Bilirubin","Pubchem ID":"5280352","Formula":"C33H36N4O6","Measured mass":"584.2652","Mass (actual)":"584.2635","Mass accuracy (ppm, average across LC-MS runs)":"2.94","Retention time (average across LC-MS runs)":"1.07","InChiKeys":"BPYKTIZUTYGOLE-IFADSCNNSA-N"},{"Metabolite":"CAR 4:0","Pubchem 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LC-MS runs)":"8.02","InChiKeys":""},{"Metabolite":"LPC 16:1","Pubchem ID":"","Formula":"C24H48NO7P","Measured mass":"493.3152","Mass (actual)":"493.3168","Mass accuracy (ppm, average across LC-MS runs)":"3.32","Retention time (average across LC-MS runs)":"7.96","InChiKeys":""},{"Metabolite":"LPC 18:0","Pubchem ID":"","Formula":"C26H54NO7P","Measured mass":"523.3646","Mass (actual)":"523.3638","Mass accuracy (ppm, average across LC-MS runs)":"1.55","Retention time (average across LC-MS runs)":"7.95","InChiKeys":""},{"Metabolite":"LPC 18:1","Pubchem ID":"","Formula":"C26H52NO7P","Measured mass":"521.3484","Mass (actual)":"521.3481","Mass accuracy (ppm, average across LC-MS runs)":"0.5","Retention time (average across LC-MS runs)":"7.98","InChiKeys":""},{"Metabolite":"LPC 18:2","Pubchem ID":"","Formula":"C26H50NO7P","Measured mass":"519.333","Mass (actual)":"519.3325","Mass accuracy (ppm, average across LC-MS runs)":"0.98","Retention time (average across LC-MS 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runs)":"5.46","InChiKeys":""},{"Metabolite":"LPE 20:3","Pubchem ID":"","Formula":"C25H46NO7P","Measured mass":"503.3022","Mass (actual)":"503.3012","Mass accuracy (ppm, average across LC-MS runs)":"2.01","Retention time (average across LC-MS runs)":"5.38","InChiKeys":""},{"Metabolite":"Lysine","Pubchem ID":"5962","Formula":"C6H14N2O2","Measured mass":"146.1057","Mass (actual)":"146.1055","Mass accuracy (ppm, average across LC-MS runs)":"1.18","Retention time (average across LC-MS runs)":"15.95","InChiKeys":"KDXKERNSBIXSRK-YFKPBYRVSA-N"},{"Metabolite":"Methionine","Pubchem ID":"6137","Formula":"C5H11NO2S","Measured mass":"149.0515","Mass (actual)":"149.051","Mass accuracy (ppm, average across LC-MS runs)":"3.02","Retention time (average across LC-MS runs)":"5.86","InChiKeys":"FFEARJCKVFRZRR-BYPYZUCNSA-N"},{"Metabolite":"CAR 4:1;O2","Pubchem ID":"","Formula":"C11H19NO6","Measured mass":"261.1216","Mass (actual)":"261.1212","Mass accuracy (ppm, average across LC-MS runs)":"1.39","Retention time (average across LC-MS runs)":"10.95","InChiKeys":""},{"Metabolite":"N1-Acetylspermidine","Pubchem ID":"496","Formula":"C9H21N3O","Measured mass":"187.1686","Mass (actual)":"187.1685","Mass accuracy (ppm, average across LC-MS runs)":"0.74","Retention time (average across LC-MS runs)":"20.35","InChiKeys":"MQTAVJHICJWXBR-UHFFFAOYSA-N"},{"Metabolite":"Nicotinamide","Pubchem ID":"936","Formula":"C6H6N2O","Measured mass":"122.0486","Mass (actual)":"122.048","Mass accuracy (ppm, average across LC-MS runs)":"4.81","Retention time (average across LC-MS runs)":"1.77","InChiKeys":"DFPAKSUCGFBDDF-UHFFFAOYSA-N"},{"Metabolite":"CAR 16:0;O","Pubchem ID":"","Formula":"C23H45NO5","Measured mass":"415.3386","Mass (actual)":"415.3298","Mass accuracy (ppm, average across LC-MS runs)":"21.25","Retention time (average across LC-MS runs)":"7.95","InChiKeys":""},{"Metabolite":"CAR 18:1","Pubchem ID":"","Formula":"C25H47NO4","Measured mass":"425.3545","Mass 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}

}