Literature DB >> 36064969

Branched-chain amino acids in cardiovascular disease.

Robert W McGarrah1,2,3, Phillip J White4,5,6.   

Abstract

Research conducted in the past 15 years has yielded crucial insights that are reshaping our understanding of the systems physiology of branched-chain amino acid (BCAA) metabolism and the molecular mechanisms underlying the close relationship between BCAA homeostasis and cardiovascular health. The rapidly evolving literature paints a complex picture, in which numerous tissue-specific and disease-specific modes of BCAA regulation initiate a diverse set of molecular mechanisms that connect changes in BCAA homeostasis to the pathogenesis of cardiovascular diseases, including myocardial infarction, ischaemia-reperfusion injury, atherosclerosis, hypertension and heart failure. In this Review, we outline the current understanding of the major factors regulating BCAA abundance and metabolic fate, highlight molecular mechanisms connecting impaired BCAA homeostasis to cardiovascular disease, discuss the epidemiological evidence connecting BCAAs with various cardiovascular disease states and identify current knowledge gaps requiring further investigation.
© 2022. Springer Nature Limited.

Entities:  

Year:  2022        PMID: 36064969     DOI: 10.1038/s41569-022-00760-3

Source DB:  PubMed          Journal:  Nat Rev Cardiol        ISSN: 1759-5002            Impact factor:   49.421


  89 in total

1.  Association of a peripheral blood metabolic profile with coronary artery disease and risk of subsequent cardiovascular events.

Authors:  Svati H Shah; James R Bain; Michael J Muehlbauer; Robert D Stevens; David R Crosslin; Carol Haynes; Jennifer Dungan; L Kristin Newby; Elizabeth R Hauser; Geoffrey S Ginsburg; Christopher B Newgard; William E Kraus
Journal:  Circ Cardiovasc Genet       Date:  2010-02-19

2.  Catabolic Defect of Branched-Chain Amino Acids Promotes Heart Failure.

Authors:  Haipeng Sun; Kristine C Olson; Chen Gao; Domenick A Prosdocimo; Meiyi Zhou; Zhihua Wang; Darwin Jeyaraj; Ji-Youn Youn; Shuxun Ren; Yunxia Liu; Christoph D Rau; Svati Shah; Olga Ilkayeva; Wen-Jun Gui; Noelle S William; R Max Wynn; Christopher B Newgard; Hua Cai; Xinshu Xiao; David T Chuang; Paul Christian Schulze; Christopher Lynch; Mukesh K Jain; Yibin Wang
Journal:  Circulation       Date:  2016-04-08       Impact factor: 29.690

3.  Branched-chain amino acids in disease.

Authors:  Phillip J White; Christopher B Newgard
Journal:  Science       Date:  2019-02-08       Impact factor: 47.728

4.  Human gut microbes impact host serum metabolome and insulin sensitivity.

Authors:  Helle Krogh Pedersen; Valborg Gudmundsdottir; Henrik Bjørn Nielsen; Tuulia Hyotylainen; Trine Nielsen; Benjamin A H Jensen; Kristoffer Forslund; Falk Hildebrand; Edi Prifti; Gwen Falony; Emmanuelle Le Chatelier; Florence Levenez; Joel Doré; Ismo Mattila; Damian R Plichta; Päivi Pöhö; Lars I Hellgren; Manimozhiyan Arumugam; Shinichi Sunagawa; Sara Vieira-Silva; Torben Jørgensen; Jacob Bak Holm; Kajetan Trošt; Karsten Kristiansen; Susanne Brix; Jeroen Raes; Jun Wang; Torben Hansen; Peer Bork; Søren Brunak; Matej Oresic; S Dusko Ehrlich; Oluf Pedersen
Journal:  Nature       Date:  2016-07-13       Impact factor: 49.962

5.  Plasma amino acid levels and insulin secretion in obesity.

Authors:  P Felig; E Marliss; G F Cahill
Journal:  N Engl J Med       Date:  1969-10-09       Impact factor: 91.245

6.  Targeted Metabolomic Profiling of Plasma and Survival in Heart Failure Patients.

Authors:  David E Lanfear; Joseph J Gibbs; Jia Li; Ruicong She; Christopher Petucci; Jeffrey A Culver; W H Wilson Tang; Yigal M Pinto; L Keoki Williams; Hani N Sabbah; Stephen J Gardell
Journal:  JACC Heart Fail       Date:  2017-11       Impact factor: 12.035

7.  Sestrin2 is a leucine sensor for the mTORC1 pathway.

Authors:  Rachel L Wolfson; Lynne Chantranupong; Robert A Saxton; Kuang Shen; Sonia M Scaria; Jason R Cantor; David M Sabatini
Journal:  Science       Date:  2015-10-08       Impact factor: 47.728

8.  Gut microbiota from twins discordant for obesity modulate metabolism in mice.

Authors:  Vanessa K Ridaura; Jeremiah J Faith; Federico E Rey; Jiye Cheng; Alexis E Duncan; Andrew L Kau; Nicholas W Griffin; Vincent Lombard; Bernard Henrissat; James R Bain; Michael J Muehlbauer; Olga Ilkayeva; Clay F Semenkovich; Katsuhiko Funai; David K Hayashi; Barbara J Lyle; Margaret C Martini; Luke K Ursell; Jose C Clemente; William Van Treuren; William A Walters; Rob Knight; Christopher B Newgard; Andrew C Heath; Jeffrey I Gordon
Journal:  Science       Date:  2013-09-06       Impact factor: 47.728

9.  Metabolomic Profiling Identifies Novel Circulating Biomarkers of Mitochondrial Dysfunction Differentially Elevated in Heart Failure With Preserved Versus Reduced Ejection Fraction: Evidence for Shared Metabolic Impairments in Clinical Heart Failure.

Authors:  Wynn G Hunter; Jacob P Kelly; Robert W McGarrah; Michel G Khouri; Damian Craig; Carol Haynes; Olga Ilkayeva; Robert D Stevens; James R Bain; Michael J Muehlbauer; Christopher B Newgard; G Michael Felker; Adrian F Hernandez; Eric J Velazquez; William E Kraus; Svati H Shah
Journal:  J Am Heart Assoc       Date:  2016-07-29       Impact factor: 5.501

Review 10.  Insulin action, type 2 diabetes, and branched-chain amino acids: A two-way street.

Authors:  Phillip J White; Robert W McGarrah; Mark A Herman; James R Bain; Svati H Shah; Christopher B Newgard
Journal:  Mol Metab       Date:  2021-05-24       Impact factor: 7.422

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