首页> 外文期刊>Journal of Cell Science >Loss of MARCH5 mitochondrial E3 ubiquitin ligase induces cellular senescence through dynamin-related protein 1 and mitofusin 1.
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Loss of MARCH5 mitochondrial E3 ubiquitin ligase induces cellular senescence through dynamin-related protein 1 and mitofusin 1.

机译:MARCH5线粒体E3泛素连接酶的丧失通过动力蛋白相关蛋白1和线粒体蛋白1诱导细胞衰老。

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摘要

Mitochondria constantly divide and combine through fission and fusion activities. MARCH5, a mitochondrial E3 ubiquitin ligase, has been identified as a molecule that binds mitochondrial fission 1 protein (hFis1), dynamin-related protein 1 (Drp1) and mitofusin 2 (Mfn2), key proteins in the control of mitochondrial fission and fusion. However, how these interactions control mitochondrial dynamics, and cellular function has remained obscure. Here, we show that shRNA-mediated MARCH5 knockdown promoted the accumulation of highly interconnected and elongated mitochondria. Cells transfected with MARCH5 shRNA or a MARCH5 RING domain mutant displayed cellular enlargement and flattening accompanied by increased senescence-associated beta-galactosidase (SA-beta-Gal) activity, indicating that these cells had undergone cellular senescence. Notably, a significant increase in Mfn1 level, but not Mfn2, Drp1 or hFis1 levels, was observed in MARCH5-depleted cells, indicating that Mfn1 is a major ubiquitylation substrate. Introduction of Mfn1(T109A), a GTPase-deficient mutant form of Mfn1, into MARCH5-RNAi cells not only disrupted mitochondrial elongation, but also abolished the increase in SA-beta-Gal activity. Moreover, the aberrant mitochondrial phenotypes in MARCH5-RNAi cells were reversed by ectopic expression of Drp1, but not by hFis1, and reversion of the mitochondria morphology in MARCH5-depleted cells was accompanied by a reduction in SA-beta-Gal activity. Collectively, our data indicate that the lack of MARCH5 results in mitochondrial elongation, which promotes cellular senescence by blocking Drp1 activity and/or promoting accumulation of Mfn1 at the mitochondria.
机译:线粒体通过裂变和融合活动不断分裂和结合。 MARCH5是一种线粒体E3泛素连接酶,已被鉴定为结合线粒体裂变1蛋白(hFis1),与动力蛋白相关的蛋白1(Drp1)和线粒体蛋白2(Mfn2)的分子,这是控制线粒体裂变和融合的关键蛋白。但是,这些相互作用如何控制线粒体动力学,以及细胞功能仍然不清楚。在这里,我们显示,shRNA介导的MARCH5敲低促进了高度互连和延长的线粒体的积累。用MARCH5 shRNA或MARCH5 RING域突变体转染的细胞显示细胞增大和扁平化,并伴随着衰老相关的β-半乳糖苷酶(SA-β-Gal)活性增加,表明这些细胞已经经历了细胞衰老。值得注意的是,在MARCH5缺失的细胞中观察到Mfn1水平显着增加,但未观察到Mfn2,Drp1或hFis1水平显着增加,表明Mfn1是主要的泛素化底物。 Mfn1(T109A),Mfn1的一种GTPase缺陷型突变形式,引入MARCH5-RNAi细胞不仅破坏了线粒体的延伸,而且消除了SA-β-Gal活性的增加。此外,MARCH5-RNAi细胞中异常的线粒体表型可以通过异位表达的Drp1来逆转,而不能被hFis1逆转,并且MARCH5缺失的细胞中线粒体形态的逆转还伴随着SA-beta-Gal活性的降低。总的来说,我们的数据表明,缺少MARCH5会导致线粒体伸长,从而通过阻止Drp1活性和/或促进线粒体Mfn1的积累来促进细胞衰老。

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