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核糖体相关蛋白Mba1将环氧化酶2从插入机制转运至成熟组装中间体。

Ribosome-Associated Mba1 Escorts Cox2 from Insertion Machinery to Maturing Assembly Intermediates.

作者信息

Lorenzi Isotta, Oeljeklaus Silke, Ronsör Christin, Bareth Bettina, Warscheid Bettina, Rehling Peter, Dennerlein Sven

机构信息

Department of Cellular Biochemistry, University Medical Center Göttingen, GZMB, Göttingen, Germany.

Faculty of Biology, Department of Biochemistry and Functional Proteomics, University of Freiburg, Freiburg, Germany.

出版信息

Mol Cell Biol. 2016 Oct 28;36(22):2782-2793. doi: 10.1128/MCB.00361-16. Print 2016 Nov 15.

Abstract

The three conserved core subunits of the cytochrome oxidase are encoded by mitochondria in close to all eukaryotes. The Cox2 subunit spans the inner membrane twice, exposing the N and C termini to the intermembrane space. For this, the N terminus is exported cotranslationally by Oxa1 and subsequently undergoes proteolytic maturation in Little is known about the translocation of the C terminus, but Cox18 has been identified to be a critical protein in this process. Here we find that the scaffold protein Cox20, which promotes processing of Cox2, is in complex with the ribosome receptor Mba1 and translating mitochondrial ribosomes in a Cox2-dependent manner. The Mba1-Cox20 complex accumulates when export of the C terminus of Cox2 is blocked by the loss of the Cox18 protein. While Cox20 engages with Cox18, Mba1 is no longer present at this stage. Our analyses indicate that Cox20 associates with nascent Cox2 and Mba1 to promote Cox2 maturation cotranslationally. We suggest that Mba1 stabilizes the Cox20-ribosome complex and supports the handover of Cox2 to the Cox18 tail export machinery.

摘要

细胞色素氧化酶的三个保守核心亚基几乎在所有真核生物中都由线粒体编码。Cox2亚基跨内膜两次,将N端和C端暴露于膜间隙。为此,N端由Oxa1共翻译输出,随后在膜间隙进行蛋白水解成熟。关于C端的转运知之甚少,但已确定Cox18是这一过程中的关键蛋白。在这里,我们发现促进Cox2加工的支架蛋白Cox20与核糖体受体Mba1形成复合物,并以Cox2依赖的方式与翻译中的线粒体核糖体结合。当Cox18蛋白缺失导致Cox2的C端输出受阻时,Mba1-Cox20复合物会积累。虽然Cox20与Cox18结合,但此时Mba1不再存在。我们的分析表明,Cox20与新生的Cox2和Mba1结合,以共翻译方式促进Cox2成熟。我们认为,Mba1稳定了Cox20-核糖体复合物,并支持将Cox2移交给Cox18尾部输出机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9ddf/5086520/dfbb41ed38cb/zmb9991013390001.jpg

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