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Oxa1直接与Atp9相互作用,并介导其组装到线粒体F1Fo-ATP合酶复合体中。

Oxa1 directly interacts with Atp9 and mediates its assembly into the mitochondrial F1Fo-ATP synthase complex.

作者信息

Jia Lixia, Dienhart Mary K, Stuart Rosemary A

机构信息

Department of Biological Sciences, Marquette University, Milwaukee, WI 53233, USA.

出版信息

Mol Biol Cell. 2007 May;18(5):1897-908. doi: 10.1091/mbc.e06-10-0925. Epub 2007 Mar 7.

Abstract

The yeast Oxa1 protein is involved in the biogenesis of the mitochondrial oxidative phosphorylation (OXPHOS) machinery. The involvement of Oxa1 in the assembly of the cytochrome oxidase (COX) complex, where it facilitates the cotranslational membrane insertion of mitochondrially encoded COX subunits, is well documented. In this study we have addressed the role of Oxa1, and its sequence-related protein Cox18/Oxa2, in the biogenesis of the F(1)F(o)-ATP synthase complex. We demonstrate that Oxa1, but not Cox18/Oxa2, directly supports the assembly of the membrane embedded F(o)-sector of the ATP synthase. Oxa1 was found to physically interact with newly synthesized mitochondrially encoded Atp9 protein in a posttranslational manner and in a manner that is not dependent on the C-terminal, matrix-localized region of Oxa1. The stable manner of the Atp9-Oxa1 interaction is in contrast to the cotranslational and transient interaction previously observed for the mitochondrially encoded COX subunits with Oxa1. In the absence of Oxa1, Atp9 was observed to assemble into an oligomeric complex containing F(1)-subunits, but its further assembly with subunit 6 (Atp6) of the F(o)-sector was perturbed. We propose that by directly interacting with newly synthesized Atp9 in a posttranslational manner, Oxa1 is required to maintain the assembly competence of the Atp9-F(1)-subcomplex for its association with Atp6.

摘要

酵母Oxa1蛋白参与线粒体氧化磷酸化(OXPHOS)机制的生物合成。Oxa1参与细胞色素氧化酶(COX)复合体的组装,它促进线粒体编码的COX亚基的共翻译膜插入,这一点已有充分的文献记载。在本研究中,我们探讨了Oxa1及其序列相关蛋白Cox18/Oxa2在F(1)F(o)-ATP合酶复合体生物合成中的作用。我们证明,Oxa1而非Cox18/Oxa2直接支持ATP合酶膜嵌入F(o)部分的组装。发现Oxa1以翻译后方式与新合成的线粒体编码的Atp9蛋白发生物理相互作用,且这种相互作用不依赖于Oxa1的C末端基质定位区域。Atp9与Oxa1相互作用的稳定性与之前观察到的线粒体编码的COX亚基与Oxa1的共翻译和瞬时相互作用形成对比。在缺乏Oxa1的情况下,观察到Atp9组装成包含F(1)亚基的寡聚复合体,但其与F(o)部分的亚基6(Atp6)的进一步组装受到干扰。我们提出,通过以翻译后方式直接与新合成的Atp9相互作用,Oxa1是维持Atp9-F(1)亚复合体与Atp6结合的组装能力所必需的。

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