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SIRT4与OPA1相互作用并调节线粒体质量控制和线粒体自噬。

SIRT4 interacts with OPA1 and regulates mitochondrial quality control and mitophagy.

作者信息

Lang Alexander, Anand Ruchika, Altinoluk-Hambüchen Simone, Ezzahoini Hakima, Stefanski Anja, Iram Afshin, Bergmann Laura, Urbach Jennifer, Böhler Philip, Hänsel Jan, Franke Manuel, Stühler Kai, Krutmann Jean, Scheller Jürgen, Stork Björn, Reichert Andreas S, Piekorz Roland P

机构信息

Institut für Biochemie und Molekularbiologie II, Medizinische Fakultät der Heinrich-Heine-Universität, Düsseldorf, Germany.

Institut für Biochemie und Molekularbiologie I, Medizinische Fakultät der Heinrich-Heine-Universität, Düsseldorf, Germany.

出版信息

Aging (Albany NY). 2017 Oct 29;9(10):2163-2189. doi: 10.18632/aging.101307.

Abstract

The stress-responsive mitochondrial sirtuin SIRT4 controls cellular energy metabolism in a NAD-dependent manner and is implicated in cellular senescence and aging. Here we reveal a novel function of SIRT4 in mitochondrial morphology/quality control and regulation of mitophagy. We report that moderate overexpression of SIRT4, but not its enzymatically inactive mutant H161Y, sensitized cells to mitochondrial stress. CCCP-triggered dissipation of the mitochondrial membrane potential resulted in increased mitochondrial ROS levels and autophagic flux, but surprisingly led to increased mitochondrial mass and decreased Parkin-regulated mitophagy. The anti-respiratory effect of elevated SIRT4 was accompanied by increased levels of the inner-membrane bound long form of the GTPase OPA1 (L-OPA1) that promotes mitochondrial fusion and thereby counteracts fission and mitophagy. Consistent with this, upregulation of endogenous SIRT4 expression in fibroblast models of senescence either by transfection with miR-15b inhibitors or by ionizing radiation increased L-OPA1 levels and mitochondrial fusion in a SIRT4-dependent manner. We further demonstrate that SIRT4 interacts physically with OPA1 in co-immunoprecipitation experiments. Overall, we propose that the SIRT4-OPA1 axis is causally linked to mitochondrial dysfunction and altered mitochondrial dynamics that translates into aging-associated decreased mitophagy based on an unbalanced mitochondrial fusion/fission cycle.

摘要

应激反应性线粒体去乙酰化酶SIRT4以NAD依赖的方式控制细胞能量代谢,并与细胞衰老和老化有关。在此,我们揭示了SIRT4在线粒体形态/质量控制和线粒体自噬调节中的新功能。我们报告称,适度过表达SIRT4(而非其酶活性失活的突变体H161Y)会使细胞对线粒体应激敏感。CCCP引发的线粒体膜电位耗散导致线粒体ROS水平和自噬通量增加,但令人惊讶的是,这导致线粒体质量增加以及帕金蛋白调节的线粒体自噬减少。SIRT4升高的抗呼吸作用伴随着促进线粒体融合从而抵消裂变和线粒体自噬的线粒体内膜结合的长形式GTP酶OPA1(L-OPA1)水平增加。与此一致的是,在衰老的成纤维细胞模型中,通过转染miR-15b抑制剂或电离辐射上调内源性SIRT4表达,以SIRT4依赖的方式增加了L-OPA1水平和线粒体融合。我们在免疫共沉淀实验中进一步证明SIRT4与OPA1存在物理相互作用。总体而言,我们提出SIRT4-OPA1轴与线粒体功能障碍和线粒体动力学改变存在因果关系,基于不平衡的线粒体融合/裂变循环,这转化为与衰老相关的线粒体自噬减少。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6003/5680561/6c3362654d2e/aging-09-2163-g001.jpg

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