BCAA Catabolic Defect Alters Glucose Metabolism in Lean Mice

scientific article published on 04 September 2019

BCAA Catabolic Defect Alters Glucose Metabolism in Lean Mice is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.3389/FPHYS.2019.01140
P932PMC publication ID6738029
P698PubMed publication ID31551816

P2093author name stringJi Wang
Jing Shao
Yibin Wang
Yunxia Liu
Haipeng Sun
Junwei Fang
Kun Lian
Meiyi Zhou
Mengping Chen
Xinyi Shentu
P2860cites workMetabolic signature shift in type 2 diabetes mellitus revealed by mass spectrometry-based metabolomics.Q51341131
The BCKDH Kinase and Phosphatase Integrate BCAA and Lipid Metabolism via Regulation of ATP-Citrate Lyase.Q54108559
Targeting BCAA Catabolism to Treat Obesity-Associated Insulin ResistanceQ92547049
Quantitative Analysis of the Whole-Body Metabolic Fate of Branched-Chain Amino AcidsQ93200099
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Global transcript profiles of fat in monozygotic twins discordant for BMI: pathways behind acquired obesityQ28472357
Disruption of BCATm in mice leads to increased energy expenditure associated with the activation of a futile protein turnover cycleQ28593294
Biomarkers for type 2 diabetes and impaired fasting glucose using a nontargeted metabolomics approachQ28661494
Leucine signaling in the pathogenesis of type 2 diabetes and obesityQ29543116
Metabolite profiles and the risk of developing diabetesQ29615359
Adipose tissue branched chain amino acid (BCAA) metabolism modulates circulating BCAA levels.Q33799720
Leucine and protein metabolism in obese Zucker ratsQ34635192
Protective role of transient pore openings in calcium handling by cardiac mitochondriaQ35266787
Branched-chain [corrected] amino acid metabolism: implications for establishing safe intakesQ36147749
Novel biomarkers for pre-diabetes identified by metabolomicsQ36321634
Circulating branched-chain amino acid concentrations are associated with obesity and future insulin resistance in children and adolescents.Q36460410
Identification of serum metabolites associated with risk of type 2 diabetes using a targeted metabolomic approachQ36560652
Differential metabolic impact of gastric bypass surgery versus dietary intervention in obese diabetic subjects despite identical weight lossQ36851000
Metabolic profiling of the human response to a glucose challenge reveals distinct axes of insulin sensitivityQ36883203
Branched-chain amino acid levels are associated with improvement in insulin resistance with weight lossQ36885523
Regulation of adipose branched-chain amino acid catabolism enzyme expression and cross-adipose amino acid flux in human obesityQ36923616
Catabolic Defect of Branched-Chain Amino Acids Promotes Heart FailureQ36932534
Insulin resistance is associated with a metabolic profile of altered protein metabolism in Chinese and Asian-Indian menQ37120388
Protein phosphatase 2Cm is a critical regulator of branched-chain amino acid catabolism in mice and cultured cellsQ37209211
Relationships between circulating metabolic intermediates and insulin action in overweight to obese, inactive men and womenQ37319222
Obesity-related elevations in plasma leucine are associated with alterations in enzymes involved in branched-chain amino acid metabolism.Q37399240
Adipose transplant for inborn errors of branched chain amino acid metabolism in miceQ37640465
Insulin resistance and the metabolism of branched-chain amino acidsQ38079446
Impaired adiponectin signaling contributes to disturbed catabolism of branched-chain amino acids in diabetic miceQ38305445
Branched-chain amino acids differently modulate catabolic and anabolic states in mammals: a pharmacological point of viewQ38957303
Defective Branched-Chain Amino Acid Catabolism Disrupts Glucose Metabolism and Sensitizes the Heart to Ischemia-Reperfusion InjuryQ46367991
Restoration of metabolic health by decreased consumption of branched-chain amino acidsQ47266242
P275copyright licenseCreative Commons Attribution 4.0 InternationalQ20007257
P6216copyright statuscopyrightedQ50423863
P304page(s)1140
P577publication date2019-09-04
P1433published inFrontiers in PhysiologyQ2434141
P1476titleBCAA Catabolic Defect Alters Glucose Metabolism in Lean Mice
P478volume10

Reverse relations

Q89762134Blood Metabolite Signature of Metabolic Syndrome Implicates Alterations in Amino Acid Metabolism: Findings from the Baltimore Longitudinal Study of Aging (BLSA) and the Tsuruoka Metabolomics Cohort Study (TMCS)cites workP2860

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