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Reducing branched-chain amino acids improves cardiac stress response in mice by decreasing histone H3K23 propionylation
Zhi Yang, … , Danish Sayed, Maha Abdellatif
Zhi Yang, … , Danish Sayed, Maha Abdellatif
Published September 5, 2023
Citation Information: J Clin Invest. 2023;133(22):e169399. https://doi.org/10.1172/JCI169399.
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Research Article Cardiology Metabolism

Reducing branched-chain amino acids improves cardiac stress response in mice by decreasing histone H3K23 propionylation

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Abstract

Identification of branched-chain amino acid (BCAA) oxidation enzymes in the nucleus led us to predict that they are a source of the propionyl-CoA that is utilized for histone propionylation and, thereby, regulate gene expression. To investigate the effects of BCAAs on the development of cardiac hypertrophy and failure, we applied pressure overload on the heart in mice maintained on a diet with standard levels of BCAAs (BCAA control) versus a BCAA-free diet. The former was associated with an increase in histone H3K23-propionyl (H3K23Pr) at the promoters of upregulated genes (e.g., cell signaling and extracellular matrix genes) and a decrease at the promoters of downregulated genes (e.g., electron transfer complex [ETC I–V] and metabolic genes). Intriguingly, the BCAA-free diet tempered the increases in promoter H3K23Pr, thus reducing collagen gene expression and fibrosis during cardiac hypertrophy. Conversely, the BCAA-free diet inhibited the reductions in promoter H3K23Pr and abolished the downregulation of ETC I–V subunits, enhanced mitochondrial respiration, and curbed the progression of cardiac hypertrophy. Thus, lowering the intake of BCAAs reduced pressure overload–induced changes in histone propionylation–dependent gene expression in the heart, which retarded the development of cardiomyopathy.

Authors

Zhi Yang, Minzhen He, Julianne Austin, Danish Sayed, Maha Abdellatif

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Figure 9

A BCAA-free diet reduces pressure overload–induced ECM genes.

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A BCAA-free diet reduces pressure overload–induced ECM genes.
Mice were ...
Mice were treated, as described in Figure 2, (A and B) without or (C) with 1% dietary propionate supplementation. (A and C) 1 week after TAC or (B) 2 weeks after TAC, the hearts were isolated, and RNA was extracted and sequenced (n = 3 each). Heatmaps show the LFCs of TAC/sham (column 1, control); TAC/sham (column 2, BCAA-free); TAC (BCAA-free)/TAC (column 3, control); and TAC (column 4, 0BCAA with 1% propionate)/TAC (0BCAA) for all collagen isoform genes expressed in the heart and other ECM genes including Postn, Tnc, Fn1, Eln, Fbn1, Lamc2, and Gpc1 (negative control; did not increase with pressure overload). The color code bar is shown on the right. Values displayed in black have a padj of 0.05 or less.

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