作者
Julie L Horton, Ola J Martin, Ling Lai, Nicholas M Riley, Alicia L Richards, Rick B Vega, Teresa C Leone, David J Pagliarini, Deborah M Muoio, Kenneth C Bedi Jr, Kenneth B Margulies, Joshua J Coon, Daniel P Kelly
发表日期
2016/2/2
期刊
JCI insight
卷号
1
期号
2
出版商
American Society for Clinical Investigation
简介
Myocardial fuel and energy metabolic derangements contribute to the pathogenesis of heart failure. Recent evidence implicates posttranslational mechanisms in the energy metabolic disturbances that contribute to the pathogenesis of heart failure. We hypothesized that accumulation of metabolite intermediates of fuel oxidation pathways drives posttranslational modifications of mitochondrial proteins during the development of heart failure. Myocardial acetylproteomics demonstrated extensive mitochondrial protein lysine hyperacetylation in the early stages of heart failure in well-defined mouse models and the in end-stage failing human heart. To determine the functional impact of increased mitochondrial protein acetylation, we focused on succinate dehydrogenase A (SDHA), a critical component of both the tricarboxylic acid (TCA) cycle and respiratory complex II. An acetyl-mimetic mutation targeting an SDHA …
引用总数
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JL Horton, OJ Martin, L Lai, NM Riley, AL Richards… - JCI insight, 2016