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Acetylation of MnSOD directs enzymatic activity responding to cellular nutrient status or oxidative stress

机译:MnSOD的乙酰化作用指导酶活性响应细胞的营养状况或氧化应激

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摘要

A fundamental observation in biology is that mitochondrial function, as measured by increased reactive oxygen species (ROS), changes significantly with age, suggesting a potential mechanistic link between the cellular processes governing longevity and mitochondrial metabolism homeostasis. In addition, it is well established that altered ROS levels are observed in multiple age-related illnesses including carcinogenesis, neurodegenerative, fatty liver, insulin resistance, and cardiac disease, to name just a few. Manganese superoxide dismutase (MnSOD) is the primary mitochondrial ROS scavenging enzyme that converts superoxide to hydrogen peroxide, which is subsequently converted to water by catalase and other peroxidases. It has recently been shown that MnSOD enzymatic activity is regulated by the reversible acetylation of specific, evolutionarily conserved lysine(s) in the protein. These results, suggest for the first time, that the mitochondria contain bidirectional post-translational signaling networks, similar to that observed in the cytoplasm and nucleus, and that changes in lysine acetylation alter MnSOD enzymatic activity. In addition, these new results demonstrate that the mitochondrial anti-aging or fidelity / sensing protein, SIRT3, responds to changes in mitochondrial nutrient and/or redox status to alter the enzymatic activity of specific downstream targets, including MnSOD that adjusts and/or maintains ROS levels as well as metabolic homeostatic poise.
机译:生物学上的一个基本观察结果是,线粒体功能(通过增加的活性氧(ROS)来衡量)会随着年龄的增长而发生显着变化,这表明控制寿命的细胞过程与线粒体新陈代谢的体内稳态之间存在潜在的机械联系。另外,已经公认的是,在多种与年龄有关的疾病中观察到ROS水平的改变,包括致癌,神经退行性疾病,脂肪肝,胰岛素抵抗和心脏病等。锰超氧化物歧化酶(MnSOD)是主要的线粒体ROS清除酶,可将超氧化物转化为过氧化氢,随后通过过氧化氢酶和其他过氧化物酶将其转化为水。最近显示,MnSOD酶活性受蛋白质中特定的,进化上保守的赖氨酸的可逆乙酰化作用调节。这些结果首次表明,线粒体包含双向翻译后信号网络,类似于在细胞质和细胞核中观察到的,并且赖氨酸乙酰化的变化改变了MnSOD的酶活性。此外,这些新结果表明,线粒体抗衰老或保真/传感蛋白SIRT3对线粒体营养和/或氧化还原状态的变化有反应,从而改变特定下游靶标的酶活性,包括调节和/或维持的MnSOD ROS水平以及代谢稳态。

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