Summary of all studies containing PUBCHEM ID 445675
Project | Study | Study_title | Subject_type | Subject_species | Metabolite_name |
---|---|---|---|---|---|
PR000009 | ST000010 | Lung Cancer Cells 4 | Human cells | Homo sapiens | URIDINE 5`-DIPHOSPHO-N-ACETYLGLUCOSAMINE [Data] |
PR000015 | ST000016 | NPM-ALK metabolic regulation | Human | Homo sapiens | URIDINE 5`-DIPHOSPHO-N-ACETYLGLUCOSAMINE [Data] |
PR000018 | ST000040 | Heatshock response of C. elegans using IROA (I) | Invertebrate | Caenorhabditis elegans | Uridine diphosphate-N-acetylglucosamine [Data] |
PR000043 | ST000044 | Pilot experiment looking for the existence of certain molecules in pancreatic cancer cells | Human | Homo sapiens | URIDINE 5`-DIPHOSPHO-N-ACETYLGLUCOSAMINE [Data] |
PR000055 | ST000058 | Metabolite changes associated with methionine stress sensitivity of cancer (GC TOF MS analysis) | Human cells | Homo sapiens | UDP GlcNAc [Data] |
PR000058 | ST000061 | Metabolic Profiling of Visceral and Subcutaneous Adipose Tissue from Colorectal Cancer Patients: GC-TOF MS analyis of subcutaneous and visceral adipose tissue samples | Human | Homo sapiens | UDP-N-acetylglucosamine [Data] |
PR000079 | ST000087 | A study of changes in lipid metabolism of ovarian cancer cells co-cultured with adipocytes: GC-TOF MS analysis | Human cells | Homo sapiens | UDP-N-acetylglucosamine [Data] |
PR000098 | ST000106 | IWMS Study 1:Weight comparison of obese and lean patients | Human | Homo sapiens | URIDINE 5`-DIPHOSPHO-N-ACETYLGLUCOSAMINE [Data] |
PR000106 | ST000117 | Metabolomics analysis of multiple metabolic functions in the YjgF/YER057c/UK114 (Rid) protein family GC-MS (Part 1) | Bacterial cells | Salmonella enterica;Escherichia coli | UDP-N-acetylglucosamine [Data] |
PR000106 | ST000118 | Metabolomics analysis of multiple metabolic functions in the YjgF/YER057c/UK114 (Rid) protein family GCMS (part 2) | Bacterial cells | Salmonella enterica;Escherichia coli | UDP-N-acetylglucosamine [Data] |
PR000186 | ST000230 | Comprehensive analysis of transcriptome and metabolome in Intrahepatic Cholangiocarcinoma and Hepatocellular Carcinoma | Human | Homo sapiens | UDP-N-acetylglucosamine [Data] |
PR000186 | ST000231 | Comprehensive analysis of transcriptome and metabolome in Intrahepatic Cholangiocarcinoma and Hepatocellular Carcinoma (part II) | Human | Homo sapiens | UDP-N-acetylglucosamine [Data] |
PR000210 | ST000258 | Metabolic contribution of pSymA and pSymB megaplasmid/chromid for multipartite Sinorhizobium meliloti cultured in minimal M9 medium | Bacterial cells | Sinorhizobium meliloti | UDP-GlcNAc [Data] |
PR000298 | ST000379 | Temporal metabolomic responses of cultured HepG2 liver cells to high fructose and high glucose exposures | Cells | Homo sapiens | UDP GlcNAc [Data] |
PR000305 | ST000390 | Metabolomic markers of altered nucleotide metabolism in early stage adenocarcinoma (part I) | Human | Homo sapiens | UDP GlcNAc [Data] |
PR000308 | ST000395 | The circadian oscillator in Synechococcus elongatus controls metabolite partitioning during diurnal growth (part II) | Cells | Synechococcus elongatus PCC 7942 | UDP-N-acetylglucosamine [Data] |
PR000313 | ST000401 | Inhibition of diamine oxidase promotes uptake of putrescine from rat small intestine | Animal | Rattus norvegicus | UDP GlcNAc [Data] |
PR000316 | ST000404 | Role of HVCN1 in B cell malignancies | Cells | Homo sapiens | UDP GlcNAc [Data] |
PR000322 | ST000412 | Metabolic profiling during ex vivo machine perfusion of the human liver (part I) | Human | Homo sapiens | UDP GlcNAc [Data] |
PR000322 | ST000412 | Metabolic profiling during ex vivo machine perfusion of the human liver (part I) | Human | Homo sapiens | UDP-N-acetylglucosamine [Data] |
PR000357 | ST000465 | Uniquely Tumor-Selective Englerin A Profoundly Alters Lipid Metabolism in Renal Cell Carcinoma inducing ER-Stress and an Acute Inflammatory Response | Human renal cancer cells | Homo sapiens | Uridine diphosphate-n-acetyl-D-glucosamine [Data] |
PR000364 | ST000478 | NMR based Metabolomics Analysis of Liver from C57BL/6 Mouse Exposed to Ionizing Radiation | Animal | Mus musculus | UDP-N-Acetylglucosamine [Data] |
PR000461 | ST000660 | Omega-6 and omega-3 oxylipins are implicated in soybean oil-induced obesity in mice (part I) | Animal | Mus musculus | UDP-N-acetylglucosamine [Data] |
PR000488 | ST000689 | Influence of Noxa knockdown on cell metabolism | Human | Homo sapiens | UDP-N-ACETYL-D-GLUCOSAMINE (CAS# 528-04-1); (M+H)+ [Data] |
PR000488 | ST000689 | Influence of Noxa knockdown on cell metabolism | Human | Homo sapiens | UDP-N-ACETYL-D-GLUCOSAMINE (CAS# 528-04-1); (M-H)- [Data] |
PR000488 | ST000689 | Influence of Noxa knockdown on cell metabolism | Human | Homo sapiens | UDP-N-ACETYL-D-GLUCOSAMINE (CAS# 528-04-1); (M+NA)+ [Data] |
PR000414 | ST000692 | Metabolites produced by strains associated with inflammation | Bacteria | Treponema pectinovorum | UDP-N-ACETYL-D-GLUCOSAMINE (CAS# 528-04-1); (M+H)+ [Data] |
PR000414 | ST000692 | Metabolites produced by strains associated with inflammation | Bacteria | Treponema pectinovorum | UDP-N-ACETYL-D-GLUCOSAMINE (CAS# 528-04-1); (M-H)- [Data] |
PR000414 | ST000692 | Metabolites produced by strains associated with inflammation | Bacteria | Treponema pectinovorum | UDP-N-ACETYL-D-GLUCOSAMINE (CAS# 528-04-1); (M+NA)+ [Data] |
PR000165 | ST000693 | Lanthanide-mineral induced alteration of bile acid metabolism in a murine model of steatohepatitis (part II) | Mouse | Mus musculus | UDP-N-ACETYL-D-GLUCOSAMINE (CAS# 528-04-1); (M+H)+ [Data] |
PR000165 | ST000693 | Lanthanide-mineral induced alteration of bile acid metabolism in a murine model of steatohepatitis (part II) | Mouse | Mus musculus | UDP-N-ACETYL-D-GLUCOSAMINE (CAS# 528-04-1); (M-H)- [Data] |
PR000165 | ST000693 | Lanthanide-mineral induced alteration of bile acid metabolism in a murine model of steatohepatitis (part II) | Mouse | Mus musculus | UDP-N-ACETYL-D-GLUCOSAMINE (CAS# 528-04-1); (M+NA)+ [Data] |
PR000166 | ST000694 | Differences in bile acids composition between ASCL5 knockout and floxed mice. | Mouse | Mus musculus | UDP-N-ACETYL-D-GLUCOSAMINE (CAS# 528-04-1); (M-H)- [Data] |
PR000492 | ST000695 | Pilot metabolomics study of aromatase inhibitor associated arthralgias | Human | Homo sapiens | UDP-N-ACETYL-D-GLUCOSAMINE (CAS# 528-04-1); (M+H)+ [Data] |
PR000493 | ST000696 | Brain-Immune system-Gut Interaction in Chronic Mild Stress (CMS +/- Lacto) | Mouse | Mus musculus | UDP-N-ACETYL-D-GLUCOSAMINE (CAS# 528-04-1); (M+H)+ [Data] |
PR000494 | ST000697 | Cytokines correlation with metabolomic profiling of psoriatic and normal skin | HUMAN | Homo sapiens | UDP-N-ACETYL-D-GLUCOSAMINE (CAS# 528-04-1); (M+H)+ [Data] |
PR000494 | ST000697 | Cytokines correlation with metabolomic profiling of psoriatic and normal skin | HUMAN | Homo sapiens | UDP-N-ACETYL-D-GLUCOSAMINE (CAS# 528-04-1); (M-H)- [Data] |
PR000494 | ST000697 | Cytokines correlation with metabolomic profiling of psoriatic and normal skin | HUMAN | Homo sapiens | UDP-N-ACETYL-D-GLUCOSAMINE (CAS# 528-04-1); (M+NA)+ [Data] |
PR000495 | ST000698 | Metabolomics analysis of Sirt5 knockdown (KD) melanoma | Human | Homo sapiens | UDP-N-ACETYL-D-GLUCOSAMINE (CAS# 528-04-1); (M+H)+ [Data] |
PR000495 | ST000698 | Metabolomics analysis of Sirt5 knockdown (KD) melanoma | Human | Homo sapiens | UDP-N-ACETYL-D-GLUCOSAMINE (CAS# 528-04-1); (M-H)- [Data] |
PR000495 | ST000698 | Metabolomics analysis of Sirt5 knockdown (KD) melanoma | Human | Homo sapiens | UDP-N-ACETYL-D-GLUCOSAMINE (CAS# 528-04-1); (M+NA)+ [Data] |
PR000515 | ST000718 | Targeted Metabolomics in Pediatric US Population Exposed to Low-Level Heavy Metals | Human | Homo sapiens | UDP-N-ACETYLGLUCOSAMINE [Data] |
PR000521 | ST000724 | Red squirrels age related changes | Animal | Tamiasciurus hudsonicus | UDP-N-ACETYL-D-GLUCOSAMINE (M-H)- [Data] |
PR000522 | ST000725 | Metabolome, body composition, and muscle performance in children | Human | Homo sapiens | UDP-N-ACETYL-D-GLUCOSAMINE (M-H)- [Data] |
PR000535 | ST000741 | Metabolite-phenotype link in X-linked Adrenoleukodystrophy (fibroblast cell culture) | Human | Homo sapiens | UDP-N-ACETYL-D-GLUCOSAMINE (CAS# 528-04-1); (M-H)- [Data] |
PR000541 | ST000751 | Mouse placentas-DEHP exposure | Mouse | Mus musculus | UDP-N-ACETYL-D-GLUCOSAMINE (M-H)- [Data] |
PR000542 | ST000752 | Effect of cooling on muscle tissue metabolism | Human | Homo sapiens | UDP-N-ACETYLGLUCOSAMINE [Data] |
PR000543 | ST000753 | Comparison of the metabolome and lipidome of wild type and mdx/mTR mice | Mouse | Mus musculus | UDP-N-ACETYLGLUCOSAMINE [Data] |
PR000593 | ST000755 | Rat Retinal Detachment Metabolomics Timecourse (part II) | RAT | Rattus norvegicus | UDP-N-ACETYLGLUCOSAMINE [Data] |
PR000554 | ST000768 | Metabolites of human neurons and stem cells (siNeuron metabolomics) | HUMAN | Homo sapiens | UDP-N-ACETYL-D-GLUCOSAMINE (M+H)+ [Data] |
PR000554 | ST000768 | Metabolites of human neurons and stem cells (siNeuron metabolomics) | HUMAN | Homo sapiens | UDP-N-ACETYL-D-GLUCOSAMINE (M-H)- [Data] |
PR000554 | ST000768 | Metabolites of human neurons and stem cells (siNeuron metabolomics) | HUMAN | Homo sapiens | UDP-N-ACETYL-D-GLUCOSAMINE (M+NA)+ [Data] |
PR000593 | ST000832 | Rat Retinal Detachment Metabolomics Timecourse | RAT | Rattus norvegicus | UDP-N-ACETYLGLUCOSAMINE [Data] |
PR000594 | ST000833 | Influence of murine norovirus on cell metabolism | MOUSE | Mus musculus | UDP-N-ACETYLGLUCOSAMINE [Data] |
PR000595 | ST000834 | Purine and TCA measurements in salt sensitive (SS) hypertension | RAT | Rattus norvegicus | UDP-N-ACETYLGLUCOSAMINE [Data] |
PR000595 | ST000835 | Deubiquitinase inhibitor compound C6 effect on cellular metabolism | MOUSE | Mus musculus | UDP-N-ACETYLGLUCOSAMINE [Data] |
PR000596 | ST000836 | Pilot Human Muscle oral glucose tolerance test (OGTT) | HUMAN | Homo sapiens | UDP-N-ACETYLGLUCOSAMINE [Data] |
PR000597 | ST000837 | Hepatocyte Differentiation Metabolism | HUMAN | Homo sapiens | UDP-N-ACETYLGLUCOSAMINE [Data] |
PR000598 | ST000838 | Obesity and marrow and marrow adipose tissue (MAT) metabolomics | MOUSE | Mus musculus | UDP-N-ACETYLGLUCOSAMINE [Data] |
PR000542 | ST000839 | Effect of cooling on muscle tissue metabolism (part II) | HUMAN | Homo sapiens | UDP-N-ACETYLGLUCOSAMINE [Data] |
PR000626 | ST000900 | Evidence that the metabolite repair enzyme NAD(P)HX epimerase has a moonlighting function | Cells | Escherichia coli | UDP-N-acetylglucosamine [Data] |
PR000664 | ST000968 | Impact of thiamine metabolites and spent medium from Chlorella sorokiniana on metabolism in the green algae Auxenochlorella prototheciodes (part I) | Cultured cells | Auxenochlorella protothecoides | UDP-N-acetylglucosamine [Data] |
PR000727 | ST001088 | Physiological and metabolic response of crab megalopae and juveniles to ocean acidification (part-I) | Invertebrate | Metacarcinus magister | UDP GlcNAc [Data] |
PR000741 | ST001110 | Investigating link between metabolism and circadian rhythm in Drosophila melanogaster | Insect | Drosophila melanogaster | UDP GlcNAc [Data] |
PR000758 | ST001133 | Downregulation of CENPF epigenetically remodels prostate cancer cells and alters cellular metabolism | Cultured cells | Homo sapiens | UDP-N-acetylglucosamine [Data] |
PR000727 | ST001166 | Physiological and metabolic response of pteropods to ocean acidification (part IV) | Invertebrate | Metacarcinus magister | UDP GlcNAc [Data] |
PR000801 | ST001189 | 1H NMR spectroscopy-based metabolic profiling of Ophiocordyceps sinensis and Cordyceps militaris of water-boiled and 50% ethanol-soaked extracts | Fungi | Ophiocordyceps sinensis;Cordyceps militaris | UDP-N-Acetylglucosamine [Data] |
PR000814 | ST001211 | Metabolomic Markers of Methotrexate Response, In Vitro | Cultured cells | Homo sapiens | UDP-N-acetylglucosamine [Data] |
PR000867 | ST001282 | Role of Hi1a in mitochondrial metabolic rewiring in M1 Macrophages | Cultured cells | Mus musculus | UDP GlcNAc [Data] |
PR000867 | ST001283 | Nitric Oxide (NO) effect on mitochondrial metabolic rewiring in M1 Macrophages | Cultured cells | Mus musculus | UDP GlcNAc [Data] |
PR000895 | ST001318 | Atg32-mediated mitophagy promotes heat stress tolerance in Saccharomyces cerevisiae by sustaining spermidine and nitric oxide levels | Other | Saccharomyces cerevisiae | UDP-N-acetylglucosamine [Data] |
PR000901 | ST001324 | Metabolomics Adaptation of Juvenile Pacific Abalone Haliotis discus hannai to Heat Stress | Invertebrate | Haliotis discus hannai | N-Acetylglucosamine 1-phosphate [Data] |
PR000901 | ST001324 | Metabolomics Adaptation of Juvenile Pacific Abalone Haliotis discus hannai to Heat Stress | Invertebrate | Haliotis discus hannai | UDP-N-acetylglucosamine [Data] |
PR000941 | ST001375 | Fructosamine-3-kinase (FN3K) KO in HepG2 liver cancer cells | Cultured cells | Homo sapiens | UDP GlcNAc [Data] |
PR000958 | ST001398 | Mechanism of Trichloroethylene (TCE) toxicity in the placenta | Human | Homo sapiens | UDP-N-Ac-D-glucosamine [Data] |
PR000974 | ST001420 | Metabolomic analysis of patients with recurrent angina | Human | Homo sapiens | UDP-N-acetylglucosamine [Data] |
PR001027 | ST001526 | Mitochondrial health is enhanced in rats with higher vs. lower intrinsic exercise capacity and extended lifespan | Mammal | Rattus norvegicus | UDP GlcNAc [Data] |
PR001035 | ST001610 | Control (DMSO 0.1%; v/v) and 10 µM DRB18 treated A549 lung cancer cells in vitro for 48 hours | Cultured cells | Homo sapiens | Uridine diphosphate-N-acetylglucosamine [Data] |
PR001037 | ST001614 | NMR metabolomics analysis of ricin-induced and fasting hypoglycemia (part-I) | Mammal | Mus musculus | UDP-N-Acetylglucosamine [Data] |
PR001047 | ST001637 | A Metabolome Atlas of the Aging Mouse Brain | Mammal | Mus musculus | UDP-N-acetylglucosamine [Data] |
PR001051 | ST001643 | Deletion of the diabetes candidate gene Slc16a13 in mice | Mammal | Mus musculus | UDP-N-acetylglucosamine [Data] |
PR001089 | ST001700 | A cross-sectional study of functional and metabolic changes during aging through the lifespan in male mice (Serum) part-II | Mammal | Mus musculus | UDP GlcNAc [Data] |
PR001089 | ST001701 | A cross-sectional study of functional and metabolic changes during aging through the lifespan in male mice (Liver) part-III | Mammal | Mus musculus | UDP-N-acetylglucosamine [Data] |
PR001089 | ST001702 | A cross-sectional study of functional and metabolic changes during aging through the lifespan in male mice (Heart) part-IV | Mammal | Mus musculus | UDP GlcNAc [Data] |
PR001089 | ST001703 | A cross-sectional study of functional and metabolic changes during aging through the lifespan in male mice (Brain) part-V | Mammal | Mus musculus | UDP GlcNAc [Data] |
PR001094 | ST001709 | SARS-CoV-2 infection rewires host cell metabolism and is potentially susceptible to mTORC1 inhibition | Cultured cells | Homo sapiens | UDP-N-acetylglucosamine M0 [Data] |
PR001094 | ST001709 | SARS-CoV-2 infection rewires host cell metabolism and is potentially susceptible to mTORC1 inhibition | Cultured cells | Homo sapiens | UDP-N-acetylglucosamine M1 [Data] |
PR001094 | ST001709 | SARS-CoV-2 infection rewires host cell metabolism and is potentially susceptible to mTORC1 inhibition | Cultured cells | Homo sapiens | UDP-N-acetylglucosamine M10 [Data] |
PR001094 | ST001709 | SARS-CoV-2 infection rewires host cell metabolism and is potentially susceptible to mTORC1 inhibition | Cultured cells | Homo sapiens | UDP-N-acetylglucosamine M11 [Data] |
PR001094 | ST001709 | SARS-CoV-2 infection rewires host cell metabolism and is potentially susceptible to mTORC1 inhibition | Cultured cells | Homo sapiens | UDP-N-acetylglucosamine M12 [Data] |
PR001094 | ST001709 | SARS-CoV-2 infection rewires host cell metabolism and is potentially susceptible to mTORC1 inhibition | Cultured cells | Homo sapiens | UDP-N-acetylglucosamine M13 [Data] |
PR001094 | ST001709 | SARS-CoV-2 infection rewires host cell metabolism and is potentially susceptible to mTORC1 inhibition | Cultured cells | Homo sapiens | UDP-N-acetylglucosamine M14 [Data] |
PR001094 | ST001709 | SARS-CoV-2 infection rewires host cell metabolism and is potentially susceptible to mTORC1 inhibition | Cultured cells | Homo sapiens | UDP-N-acetylglucosamine M15 [Data] |
PR001094 | ST001709 | SARS-CoV-2 infection rewires host cell metabolism and is potentially susceptible to mTORC1 inhibition | Cultured cells | Homo sapiens | UDP-N-acetylglucosamine M16 [Data] |
PR001094 | ST001709 | SARS-CoV-2 infection rewires host cell metabolism and is potentially susceptible to mTORC1 inhibition | Cultured cells | Homo sapiens | UDP-N-acetylglucosamine M17 [Data] |
PR001094 | ST001709 | SARS-CoV-2 infection rewires host cell metabolism and is potentially susceptible to mTORC1 inhibition | Cultured cells | Homo sapiens | UDP-N-acetylglucosamine M2 [Data] |
PR001094 | ST001709 | SARS-CoV-2 infection rewires host cell metabolism and is potentially susceptible to mTORC1 inhibition | Cultured cells | Homo sapiens | UDP-N-acetylglucosamine M3 [Data] |
PR001094 | ST001709 | SARS-CoV-2 infection rewires host cell metabolism and is potentially susceptible to mTORC1 inhibition | Cultured cells | Homo sapiens | UDP-N-acetylglucosamine M4 [Data] |
PR001094 | ST001709 | SARS-CoV-2 infection rewires host cell metabolism and is potentially susceptible to mTORC1 inhibition | Cultured cells | Homo sapiens | UDP-N-acetylglucosamine M5 [Data] |
PR001094 | ST001709 | SARS-CoV-2 infection rewires host cell metabolism and is potentially susceptible to mTORC1 inhibition | Cultured cells | Homo sapiens | UDP-N-acetylglucosamine M6 [Data] |
PR001094 | ST001709 | SARS-CoV-2 infection rewires host cell metabolism and is potentially susceptible to mTORC1 inhibition | Cultured cells | Homo sapiens | UDP-N-acetylglucosamine M7 [Data] |
PR001094 | ST001709 | SARS-CoV-2 infection rewires host cell metabolism and is potentially susceptible to mTORC1 inhibition | Cultured cells | Homo sapiens | UDP-N-acetylglucosamine M8 [Data] |
PR001094 | ST001709 | SARS-CoV-2 infection rewires host cell metabolism and is potentially susceptible to mTORC1 inhibition | Cultured cells | Homo sapiens | UDP-N-acetylglucosamine M9 [Data] |
PR001143 | ST001809 | The Metabolic Benefits of Short Cycles of Very Low Caloric Intake are Dependent on Diet Composition in Middle-Aged Mice | Mammal | Mus musculus | UDP-N-acetylglucosamine [Data] |
PR001162 | ST001841 | Metabolomics of lung microdissections reveals region- and sex-specific metabolic effects of acute naphthalene exposure in mice (part II) | Mammal | Mus musculus | Uridine-5-diphosphoacetylglucosamine [Data] |
PR000667 | ST001842 | Identification of unique metabolite networks between Latino and Caucasian patients with nonalcoholic fatty liver disease (NAFLD) (part I) | Human | Homo sapiens | UDP-N-acetylglucosamine [Data] |
PR001170 | ST001855 | The metabolomic resetting effect of FG4592 in AKI to CKD transition (Part 1) | Mammal | Mus musculus | Uridine diphosphate-N-acetylglucosamine [Data] |
PR001170 | ST001856 | The metabolomic resetting effect of FG4592 in AKI to CKD transition (Part 2) | Mammal | Mus musculus | Uridine diphosphate-N-acetylglucosamine [Data] |
PR001213 | ST001922 | Sublytic membrane attack complex drives glycolysis and mitochondrial dysfunction with inflammatory consequences in human monocyte-derived macrophages | Human | Homo sapiens | Uridine diphosphate-N-acetylglucosamine [Data] |
PR001241 | ST001954 | A pathogenic role for histone H3 copper reductase activity in a yeast model of Friedreich’s Ataxia | Yeast | Saccharomyces cerevisiae | UDP-N-acetylglucosamine [Data] |
PR001262 | ST001986 | Fbxo7 promotes Cdk6 activity to inhibit PFKP and glycolysis in T cells | Cultured cells | Mus musculus | UDP-GlcNac [Data] |
PR001276 | ST002012 | Untargeted primary metabolite profiling in Arabidopsis thaliana | Plant | Arabidopsis thaliana | UDP-N-acetylglucosamine [Data] |
PR001290 | ST002043 | Maternal Hypoxemia and Oxidative Stress | Mammal | Ovis aries | UDP-N-acetylglucosamine [Data] |
PR001340 | ST002115 | LC-MS analysis of metabolic changes induced by GPX4 inhibitor treatment in cultured HT1080 cells | Cultured cells | Homo sapiens | UDP-N-acetyl-glucosamine [Data] |
PR001418 | ST002220 | Catabolism of branched-chain amino acids (BCAAs) in renal cells HK2 and 786-O | Cultured cells | Homo sapiens | UDP-GlcNac [Data] |
PR001418 | ST002221 | Glutaminolysis contribution to the carbon backbone of aspartate through ATP Citrate Lyase (ACLY) in ccRCC | Cultured cells | Homo sapiens | UDP-GlcNac_m+0 [Data] |
PR001418 | ST002221 | Glutaminolysis contribution to the carbon backbone of aspartate through ATP Citrate Lyase (ACLY) in ccRCC | Cultured cells | Homo sapiens | UDP-GlcNac_m+1 [Data] |
PR001418 | ST002221 | Glutaminolysis contribution to the carbon backbone of aspartate through ATP Citrate Lyase (ACLY) in ccRCC | Cultured cells | Homo sapiens | UDP-GlcNac_m+2 [Data] |
PR001418 | ST002221 | Glutaminolysis contribution to the carbon backbone of aspartate through ATP Citrate Lyase (ACLY) in ccRCC | Cultured cells | Homo sapiens | UDP-GlcNac_m+3 [Data] |
PR001418 | ST002221 | Glutaminolysis contribution to the carbon backbone of aspartate through ATP Citrate Lyase (ACLY) in ccRCC | Cultured cells | Homo sapiens | UDP-GlcNac_m+4 [Data] |
PR001418 | ST002221 | Glutaminolysis contribution to the carbon backbone of aspartate through ATP Citrate Lyase (ACLY) in ccRCC | Cultured cells | Homo sapiens | UDP-GlcNac_m+5 [Data] |
PR001418 | ST002221 | Glutaminolysis contribution to the carbon backbone of aspartate through ATP Citrate Lyase (ACLY) in ccRCC | Cultured cells | Homo sapiens | UDP-GlcNac_m+6 [Data] |
PR001418 | ST002221 | Glutaminolysis contribution to the carbon backbone of aspartate through ATP Citrate Lyase (ACLY) in ccRCC | Cultured cells | Homo sapiens | UDP-GlcNac_m+7 [Data] |
PR001418 | ST002222 | Glutaminolysis contribution to the carbon backbone of aspartate and glutamate in ccRCC | Cultured cells | Homo sapiens | UDP-GlcNac_m+0 [Data] |
PR001418 | ST002222 | Glutaminolysis contribution to the carbon backbone of aspartate and glutamate in ccRCC | Cultured cells | Homo sapiens | UDP-GlcNac_m+1 [Data] |
PR001418 | ST002222 | Glutaminolysis contribution to the carbon backbone of aspartate and glutamate in ccRCC | Cultured cells | Homo sapiens | UDP-GlcNac_m+2 [Data] |
PR001418 | ST002222 | Glutaminolysis contribution to the carbon backbone of aspartate and glutamate in ccRCC | Cultured cells | Homo sapiens | UDP-GlcNac_m+3 [Data] |
PR001418 | ST002222 | Glutaminolysis contribution to the carbon backbone of aspartate and glutamate in ccRCC | Cultured cells | Homo sapiens | UDP-GlcNac_m+4 [Data] |
PR001418 | ST002222 | Glutaminolysis contribution to the carbon backbone of aspartate and glutamate in ccRCC | Cultured cells | Homo sapiens | UDP-GlcNac_m+5 [Data] |
PR001418 | ST002222 | Glutaminolysis contribution to the carbon backbone of aspartate and glutamate in ccRCC | Cultured cells | Homo sapiens | UDP-GlcNac_m+6 [Data] |
PR001418 | ST002222 | Glutaminolysis contribution to the carbon backbone of aspartate and glutamate in ccRCC | Cultured cells | Homo sapiens | UDP-GlcNac_m+7 [Data] |
PR001418 | ST002223 | Metabolic profiling of mouse tissues and tissue interstitial fluids | Mammal | Mus musculus | UDP-GlcNac [Data] |
PR001418 | ST002224 | Intracellular metabolic profile of renal cells cultured in Plasmax | Cultured cells | Homo sapiens | UDP-GlcNac [Data] |
PR001418 | ST002225 | Time sensitive contribution of the BCAA catabolism to the TCA cycle carbons in HK2, 786-O, OS-RC-2 and RFX-631 | Cultured cells | Homo sapiens | UDP-GlcNac [Data] |
PR001431 | ST002242 | Hypoxia promotes osteogenesis via regulating the acetyl-CoA-mediated mito-nuclear communication. | Cultured cells | Mus musculus | UDP-GlcNAc [Data] |
PR001468 | ST002289 | Map of microbially induced metabolic changes across diverse body sites in mice - Bacterial culture data | Bacteria | Several mouse commensals | UDP-N-acetylglucosamine [Data] |
PR001509 | ST002349 | Biomolecular condensates create phospholipid-enriched microenvironments (Part 1) | Mammal | Mus musculus | UDP-N-Acetylglucosamine [Data] |
PR001509 | ST002352 | Biomolecular condensates create phospholipid-enriched microenvironments (Part 2) | Mammal | Mus musculus | UDP-N-Acetylglucosamine [Data] |
PR001585 | ST002457 | Mouse kidney metabolomics (Whole kidney) | Mammal | Mus musculus | Uridine Diphosphate-N-Acetylglucosamine [Data] |
PR001636 | ST002540 | Deriving Schwann Cells from hPSCs Enables Disease Modeling and Drug Discovery for Diabetic Peripheral Neuropathy | Cultured cells | Homo sapiens | UDP-N-acetylglucosamine [Data] |
PR001648 | ST002556 | Blood metabolomics and impacted cellular mechanisms during transition into lactation in dairy cows that develop metritis | Mammal | Bos taurus | UDP GlcNAc [Data] |
PR001665 | ST002585 | Zinc treatment reverses and anti-Zn-regulated miRs suppress esophageal carcinomas in vivo | Mammal | Rattus norvegicus | UDP-N-acetylglucosamine [Data] |
PR001678 | ST002708 | Levels of central carbon metabolites in choroid plexus as part of natural diurnal variation | Mammal | Mus musculus | UDP-GlcNAc [Data] |
PR001679 | ST002709 | FH variant pathogenicity promotes purine salvage pathway dependence in kidney cancer | Cultured cells | NCCFH1; UOK262; UTFHC1 | UDP-N-acetylglucosamine [Data] |
PR001686 | ST002719 | Comparison of metabolic of A549 cells before and after Gossypol acetate (GAA) treatment | Cultured cells | Homo sapiens | UDP-GlcNAc [Data] |
PR001700 | ST002736 | Assessing mitochondrial bioenergetics in coronary artery disease: A translational multiomic tissue study in humans (The AMBITION study). | Human | Homo sapiens | UDP-GlcNac [Data] |
PR001509 | ST002744 | Biomolecular condensates create phospholipid-enriched microenvironments (Part 4) | Mammal | Mus musculus | UDP-N-Acetylglucosamine [Data] |
PR001509 | ST002751 | Biomolecular condensates create phospholipid-enriched microenvironments (Part 5) | Mammal | Mus musculus | UDP-N-Acetylglucosamine [Data] |
PR001748 | ST002801 | Investigation of metabolism in hypertrophic cardiomyopathy | Mammal | Mus musculus | UDP-N-acetylglucosamine [Data] |
PR001750 | ST002803 | Early life metabolic abnormalities in the bone marrow of the offspring of obese mothers | Mammal | Mus musculus | UDP-N-acetylglucosamine [Data] |
PR001761 | ST002814 | Atlas of fetal metabolism during mid-to-late gestation and diabetic pregnancy | Mammal | Mus musculus | UDP-N-acetylglucosamine [Data] |
PR001767 | ST002825 | Brain Metabolomics in Fragile X-Associated Tremor/Ataxia Syndrome (FXTAS) | Human | Homo sapiens | UDP-N-acetylglucosamine [Data] |
PR001786 | ST002852 | MYC is a regulator of androgen receptor inhibition-induced metabolic requirements in prostate cancer | Mammal | Mus musculus | UDP-N-acetylglucosamine [Data] |
PR001761 | ST002878 | Atlas of fetal metabolism during mid-to-late gestation and diabetic pregnancy. Dynamic Labelling experiment. | Mammal | Mus musculus | UDP-N-acetylglucosamine [Data] |
PR001835 | ST002952 | Investigate the impact of feeding time on the hexosamine biosynthetic pathway (HBP) in the mouse liver and heart using targeted metabolomics: primary metabolism | Mammal | Mus musculus | UDP-N-acetylglucosamine [Data] |
PR001864 | ST002994 | Integrating uterine microbiome and metabolome to advance the understanding of the uterine environment in dairy cows with metritis | Mammal | Bos taurus | UDP GlcNAc [Data] |
PR002082 | ST003347 | ADSL deficiency drives mitochondrial dysfunction and ERK2 dysregulation in a linear genotype to phenotype correlation | Cultured cells | Homo sapiens | UDP-GlcNac [Data] |
PR001941 | ST003433 | Intracellular and medium metabolomics of BT-474 cells treated with dimethylmalonate, Fasnall, and GSK2194069 | Cultured cells | Homo sapiens | UDP-N-acetyl-D-glucosamine 79 [Data] |
PR001941 | ST003434 | Plasma concentrations of Fasnall in mice after a bolus of 10 mg/kg administered intraperitoneally. | Mammal | Mus musculus | UDP-N-acetyl-D-glucosamine 79 [Data] |
PR001941 | ST003435 | Metabolomics analysis of zebrafish embryos treated with rotenone, Fasnall, TVB-2640, and GSK2194069 | Fish | Danio rerio | UDP-N-acetyl-D-glucosamine 79 [Data] |
PR001941 | ST003436 | Pharmacokinetics of Fasnall in NSG mice | Mammal | Mus musculus | UDP-N-acetyl-D-glucosamine 79 [Data] |
PR002082 | ST003499 | Metabolic analysis of ADSL deficiency patients' EBV-LCLs. | Cultured cells | Homo sapiens | UDP-GlcNac [Data] |