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Sirtuins 的全面综述:重点关注氧化还原平衡和代谢。

A comprehensive review of Sirtuins: With a major focus on redox homeostasis and metabolism.

机构信息

Department of Immunology, Faculty of Medical Sciences, Tarbiat Modares University, Tehran, Iran.

Autoimmune Diseases Research Center, Shiraz University of Medical Sciences, Shiraz, Iran.

出版信息

Life Sci. 2021 Oct 1;282:119803. doi: 10.1016/j.lfs.2021.119803. Epub 2021 Jul 6.

Abstract

Sirtuins are Class III protein deacetylases with seven conserved isoforms. In general, Sirtuins are highly activated under cellular stress conditions in which NAD levels are increased. Nevertheless, regulation of Sirtuins extends far beyond the influences of cellular NAD/NADH ratio and a rapidly expanding body of evidence currently suggests that their expression and catalytic activity are highly kept under control at multiple levels by various factors and processes. Owing to their intrinsic ability to enzymatically target various intracellular proteins, Sirtuins are prominently involved in the regulation of fundamental biological processes including inflammation, metabolism, redox homeostasis, DNA repair and cell proliferation and senescence. In fact, Sirtuins are well established to regulate and reprogram different redox and metabolic pathways under both pathological and physiological conditions. Therefore, alterations in Sirtuin levels can be a pivotal intermediary step in the pathogenesis of several disorders. This review first highlights the mechanisms involved in the regulation of Sirtuins and further summarizes the current findings on the major functions of Sirtuins in cellular redox homeostasis and bioenergetics (glucose and lipid metabolism).

摘要

Sirtuins 是具有 7 种保守同工酶的 III 类蛋白质去乙酰化酶。一般来说,Sirtuins 在 NAD 水平增加的细胞应激条件下高度激活。然而,Sirtuins 的调节远远超出了细胞 NAD/NADH 比例的影响,目前大量证据表明,它们的表达和催化活性在多个水平上受到多种因素和过程的高度控制。由于其内在的酶靶向各种细胞内蛋白质的能力,Sirtuins 显著参与包括炎症、代谢、氧化还原稳态、DNA 修复和细胞增殖和衰老在内的基本生物过程的调节。事实上,Sirtuins 已被证实可在病理和生理条件下调节和重新编程不同的氧化还原和代谢途径。因此,Sirtuins 水平的改变可能是几种疾病发病机制中的关键中间步骤。本综述首先强调了 Sirtuins 调节的机制,并进一步总结了 Sirtuins 在细胞氧化还原稳态和生物能量学(葡萄糖和脂质代谢)中的主要功能的最新发现。

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