Catabolic Defect of Branched-Chain Amino Acids Promotes Heart Failure

scientific article published on 08 April 2016

Catabolic Defect of Branched-Chain Amino Acids Promotes Heart Failure is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1161/CIRCULATIONAHA.115.020226
P932PMC publication ID4879058
P698PubMed publication ID27059949

P50authorYibin WangQ40664206
Haipeng SunQ42389231
Xinshu XiaoQ55154862
Christopher B NewgardQ87867408
P2093author name stringDarwin Jeyaraj
Mukesh K Jain
Domenick A Prosdocimo
Chen Gao
David T Chuang
Wen-Jun Gui
Svati Shah
Olga Ilkayeva
Christoph D Rau
Yunxia Liu
Hua Cai
Zhihua Wang
Ji-Youn Youn
R Max Wynn
Shuxun Ren
Paul Christian Schulze
Christopher Lynch
Meiyi Zhou
Kristine C Olson
Noelle S William
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Branched-chain amino acid supplementation promotes survival and supports cardiac and skeletal muscle mitochondrial biogenesis in middle-aged mice.Q55053482
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Branched-chain amino acids in metabolic signalling and insulin resistanceQ28249276
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The Krüppel-like factor KLF15 regulates the insulin-sensitive glucose transporter GLUT4Q28585457
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Kruppel-like factor 15 regulates skeletal muscle lipid flux and exercise adaptation.Q30424438
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The importance of myocardial amino acids during ischemia and reperfusion in dilated left ventricle of patients with degenerative mitral valve disease.Q33773363
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Elevation of circulating branched-chain amino acids is an early event in human pancreatic adenocarcinoma developmentQ34315320
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Glucose metabolism and cardiac hypertrophyQ34808553
MicroRNA-133 regulates the expression of GLUT4 by targeting KLF15 and is involved in metabolic control in cardiac myocytesQ35000436
Micronutrient deficiencies an unmet need in heart failureQ35009114
Analysis of transcriptome complexity through RNA sequencing in normal and failing murine heartsQ35625685
Metabolic remodelling of the failing heart: the cardiac burn-out syndrome?Q35635100
Klf15 orchestrates circadian nitrogen homeostasisQ35823605
Regulation of gluconeogenesis by Krüppel-like factor 15Q35843674
Metabolite profiling identifies pathways associated with metabolic risk in humansQ36037142
Tissue-specific and nutrient regulation of the branched-chain α-keto acid dehydrogenase phosphatase, protein phosphatase 2Cm (PP2Cm).Q36078735
RBFox1-mediated RNA splicing regulates cardiac hypertrophy and heart failureQ36430719
Return to the fetal gene program: a suggested metabolic link to gene expression in the heartQ36762995
Nutrient signaling components controlling protein synthesis in striated muscleQ36883255
High heritability of metabolomic profiles in families burdened with premature cardiovascular diseaseQ37196164
Protein phosphatase 2Cm is a critical regulator of branched-chain amino acid catabolism in mice and cultured cellsQ37209211
Time course of gene expression during mouse skeletal muscle hypertrophy.Q37235089
Metabolic remodelling of the failing heart: beneficial or detrimental?Q37293624
P433issue21
P407language of work or nameEnglishQ1860
P921main subjectheart failureQ181754
P304page(s)2038-2049
P577publication date2016-04-08
P1433published inCirculationQ578091
P1476titleCatabolic Defect of Branched-Chain Amino Acids Promotes Heart Failure
P478volume133

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