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带正电荷的跨膜片段在线粒体内膜蛋白插入与组装中的作用。

Role of positively charged transmembrane segments in the insertion and assembly of mitochondrial inner-membrane proteins.

作者信息

Saint-Georges Y, Hamel P, Lemaire C, Dujardin G

机构信息

Centre de Génétique Moléculaire du Centre National de la Recherche Scientifique, Avenue de la Terrasse, 91198-Gif sur Yvette, France.

出版信息

Proc Natl Acad Sci U S A. 2001 Nov 20;98(24):13814-9. doi: 10.1073/pnas.251503098.

Abstract

The biogenesis of membrane oligomeric complexes is an intricate process that requires the insertion and assembly of transmembrane (TM) domains into the lipid bilayer. The Oxa1p family plays a key role in this process in organelles and bacteria. Hell et al. (2001, EMBO J., 20, 1281-1288) recently have proposed that Oxa1p could act as part of a general membrane insertion machinery for mitochondrial respiratory complex subunits. We have previously shown that mutations in the TM domain of Cyt1p can partially compensate for the absence of Oxa1p. Here, we demonstrate that a single amino acid substitution in the TM domain of Qcr9p can bypass Oxa1p in yeast. Qcr9p and Cyt1p are two subunits of the respiratory complex bc1 and their relative roles in the assembly of other respiratory complexes have been investigated. The mutations we have isolated in Cyt1p or Qcr9p introduce positively charged amino acids, and we show that the mutant TM domain of Cyt1p mediates the restoration of complex assembly. We propose that the positive charges introduced in Cyt1p and Qcr9p TM domains promote interactions with negatively charged TM domains of other respiratory complex subunits, allowing the coinsertion of both domains into the membrane, in the absence of Oxa1p. This model argues in favor of a role of Oxa1p in the insertion and the lateral exit of less hydrophobic TM domains from the translocation site into the lipid bilayer.

摘要

膜寡聚复合物的生物发生是一个复杂的过程,需要跨膜(TM)结构域插入脂质双层并进行组装。Oxa1p家族在细胞器和细菌的这一过程中起关键作用。Hell等人(2001年,《欧洲分子生物学组织杂志》,20卷,1281 - 1288页)最近提出,Oxa1p可能作为线粒体呼吸复合物亚基的一般膜插入机制的一部分发挥作用。我们之前已经表明,Cyt1p的TM结构域中的突变可以部分补偿Oxa1p的缺失。在这里,我们证明Qcr9p的TM结构域中的单个氨基酸取代可以在酵母中绕过Oxa1p。Qcr9p和Cyt1p是呼吸复合物bc1的两个亚基,并且已经研究了它们在其他呼吸复合物组装中的相对作用。我们在Cyt1p或Qcr9p中分离出的突变引入了带正电荷的氨基酸,并且我们表明Cyt1p的突变TM结构域介导了复合物组装的恢复。我们提出,在Cyt1p和Qcr9p的TM结构域中引入的正电荷促进了与其他呼吸复合物亚基带负电荷的TM结构域的相互作用,从而在没有Oxa1p的情况下允许两个结构域共同插入膜中。该模型支持Oxa1p在疏水性较低的TM结构域从易位位点插入脂质双层以及横向退出中的作用。

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