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小Tim蛋白在TIM22导入途径中的基本功能并不依赖于可溶性70千道尔顿复合物的形成。

The essential function of the small Tim proteins in the TIM22 import pathway does not depend on formation of the soluble 70-kilodalton complex.

作者信息

Murphy M P, Leuenberger D, Curran S P, Oppliger W, Koehler C M

机构信息

MRC-Dunn Human Nutrition Unit, MRC-Wellcome, Cambridge CB2 2XY, United Kingdom.

出版信息

Mol Cell Biol. 2001 Sep;21(18):6132-8. doi: 10.1128/MCB.21.18.6132-6138.2001.

Abstract

The TIM22 protein import pathway of the yeast mitochondrion contains several components, including a family of five proteins (Tim8p, -9p, -10p, -12p, and -13p [Tim, for translocase of inner membrane]) that are located in the intermembrane space and are 25% identical. Tim9p and Tim10p have dual roles in mediating the import of inner membrane proteins. Like the Tim8p-Tim13p complex, the Tim9p-Tim10p complex functions as a putative chaperone to guide hydrophobic precursors across the intermembrane space. Like membrane-associated Tim12p, they are members of the Tim18p-Tim22p-Tim54p membrane complex that mediates precursor insertion into the membrane. To understand the role of this family in protein import, we have used a genetic approach to manipulate the complement of the small Tim proteins. A strain has been constructed that lacks the 70-kDa soluble Tim8p-Tim13p and Tim9p-Tim10p complexes in the intermembrane space. Instead, a functional version of Tim9p (Tim9(S67C)p), identified as a second-site suppressor of a conditional tim10 mutant, maintains viability. Characterization of this strain revealed that Tim9(S67C)p and Tim10p were tightly associated with the inner membrane, the soluble 70-kDa Tim8p-Tim13p and Tim9p-Tim10p complexes were not detectable, and the rate of protein import into isolated mitochondria proceeded at a slower rate. An arrested translocation intermediate bound to Tim9(S67C)p was located in the intermembrane space, associated with the inner membrane. We suggest that the 70-kDa complexes facilitate import, similar to the outer membrane receptors of the TOM (hetero-oligomeric translocase of the outer membrane) complex, and the essential role of Tim9p and Tim10p may be to mediate protein insertion in the inner membrane with the TIM22 complex.

摘要

酵母线粒体的TIM22蛋白导入途径包含几个组分,包括位于膜间隙的一个由五种蛋白质组成的家族(Tim8p、-9p、-10p、-12p和-13p [Tim,内膜转位酶]),它们有25%的序列相同性。Tim9p和Tim10p在介导内膜蛋白的导入中具有双重作用。与Tim8p-Tim13p复合体一样,Tim9p-Tim10p复合体作为一种假定的分子伴侣发挥作用,引导疏水前体穿过膜间隙。与膜相关的Tim12p一样,它们是Tim18p-Tim22p-Tim54p膜复合体的成员,该复合体介导前体插入膜中。为了了解这个家族在蛋白质导入中的作用,我们采用了遗传方法来操纵小Tim蛋白的组成。构建了一个菌株,该菌株在膜间隙中缺乏70 kDa的可溶性Tim8p-Tim13p和Tim9p-Tim10p复合体。相反,作为条件性tim10突变体的第二位点抑制子而鉴定出的功能性Tim9p版本(Tim9(S67C)p)维持了细胞活力。对该菌株的表征显示,Tim9(S67C)p和Tim10p与内膜紧密结合,未检测到可溶性70 kDa的Tim8p-Tim13p和Tim9p-Tim10p复合体,并且蛋白质导入分离线粒体的速率较慢。与Tim9(S67C)p结合的停滞转位中间体位于膜间隙,与内膜相关。我们认为,70 kDa复合体促进导入,类似于TOM(外膜异源寡聚转位酶)复合体的外膜受体,并且Tim9p和Tim10p的重要作用可能是通过TIM22复合体介导蛋白质插入内膜。

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