The AAA-ATPase Yta4/ATAD1 interacts with the mitochondrial divisome to inhibit mitochondrial fission.

IF 7.8 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY PLoS Biology Pub Date : 2023-08-17 eCollection Date: 2023-08-01 DOI:10.1371/journal.pbio.3002247
Jiajia He, Ke Liu, Yifan Wu, Chenhui Zhao, Shuaijie Yan, Jia-Hui Chen, Lizhu Hu, Dongmei Wang, Fan Zheng, Wenfan Wei, Chao Xu, Chengdong Huang, Xing Liu, Xuebiao Yao, Lijun Ding, Zhiyou Fang, Ai-Hui Tang, Chuanhai Fu
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Abstract

Mitochondria are in a constant balance of fusion and fission. Excessive fission or deficient fusion leads to mitochondrial fragmentation, causing mitochondrial dysfunction and physiological disorders. How the cell prevents excessive fission of mitochondria is not well understood. Here, we report that the fission yeast AAA-ATPase Yta4, which is the homolog of budding yeast Msp1 responsible for clearing mistargeted tail-anchored (TA) proteins on mitochondria, plays a critical role in preventing excessive mitochondrial fission. The absence of Yta4 leads to mild mitochondrial fragmentation in a Dnm1-dependent manner but severe mitochondrial fragmentation upon induction of mitochondrial depolarization. Overexpression of Yta4 delocalizes the receptor proteins of Dnm1, i.e., Fis1 (a TA protein) and Mdv1 (the bridging protein between Fis1 and Dnm1), from mitochondria and reduces the localization of Dnm1 to mitochondria. The effect of Yta4 overexpression on Fis1 and Mdv1, but not Dnm1, depends on the ATPase and translocase activities of Yta4. Moreover, Yta4 interacts with Dnm1, Mdv1, and Fis1. In addition, Yta4 competes with Dnm1 for binding Mdv1 and decreases the affinity of Dnm1 for GTP and inhibits Dnm1 assembly in vitro. These findings suggest a model, in which Yta4 inhibits mitochondrial fission by inhibiting the function of the mitochondrial divisome composed of Fis1, Mdv1, and Dnm1. Therefore, the present work reveals an uncharacterized molecular mechanism underlying the inhibition of mitochondrial fission.

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AAA ATP酶Yta4/ATAD1与线粒体分裂体相互作用以抑制线粒体分裂。
线粒体处于融合和分裂的恒定平衡中。过度分裂或融合不足会导致线粒体断裂,导致线粒体功能障碍和生理障碍。细胞如何防止线粒体过度分裂尚不清楚。在这里,我们报道了分裂酵母AAA ATP酶Yta4,它是负责清除线粒体上错误靶向尾锚定(TA)蛋白的出芽酵母Msp1的同源物,在防止线粒体过度分裂中发挥着关键作用。Yta4的缺失以Dnm1依赖的方式导致轻度线粒体断裂,但在诱导线粒体去极化时导致严重的线粒体断裂。Yta4的过表达使Dnm1的受体蛋白,即Fis1(TA蛋白)和Mdv1(Fis1和Dnm1之间的桥接蛋白)从线粒体离域,并减少Dnm1在线粒体中的定位。Yta4过表达对Fis1和Mdv1的影响,而不是对Dnm1的影响取决于Yta4的ATP酶和易位酶活性。此外,Yta4与Dnm1、Mdv1和Fis1相互作用。此外,Yta4与Dnm1竞争结合Mdv1,降低Dnm1对GTP的亲和力,并在体外抑制Dnm1组装。这些发现提出了一种模型,其中Yta4通过抑制由Fis1、Mdv1和Dnm1组成的线粒体分裂体的功能来抑制线粒体分裂。因此,本研究揭示了抑制线粒体分裂的一种不典型的分子机制。
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来源期刊
PLoS Biology
PLoS Biology 生物-生化与分子生物学
CiteScore
14.40
自引率
2.00%
发文量
359
审稿时长
3 months
期刊介绍: PLOS Biology is an open-access, peer-reviewed general biology journal published by PLOS, a nonprofit organization of scientists and physicians dedicated to making the world's scientific and medical literature freely accessible. The journal publishes new articles online weekly, with issues compiled and published monthly. ISSN Numbers: eISSN: 1545-7885 ISSN: 1544-9173
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