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线粒体转位酶结构与动态功能的分离:Tim44对于紧密折叠结构域转位时内膜导入位点至关重要,但对松散折叠前体蛋白的转位并非如此。

Separation of structural and dynamic functions of the mitochondrial translocase: Tim44 is crucial for the inner membrane import sites in translocation of tightly folded domains, but not of loosely folded preproteins.

作者信息

Bömer U, Maarse A C, Martin F, Geissler A, Merlin A, Schönfisch B, Meijer M, Pfanner N, Rassow J

机构信息

Institut für Biochemie und Molekularbiologie, Universität Freiburg, Germany.

出版信息

EMBO J. 1998 Aug 3;17(15):4226-37. doi: 10.1093/emboj/17.15.4226.

Abstract

The essential gene TIM44 encodes a subunit of the inner mitochondrial membrane preprotein translocase that forms a complex with the matrix heat-shock protein Hsp70. The specific role of Tim44 in protein import has not yet been defined because of the lack of means to block its function. Here we report on a Saccharomyces cerevisiae mutant allele of TIM44 that allows selective and efficient inactivation of Tim44 in organello. Surprisingly, the mutant mitochondria are still able to import preproteins. The import rate is only reduced by approximately 30% compared with wild-type as long as the preproteins do not carry stably folded domains. Moreover, the number of import sites is not reduced. However, the mutant mitochondria are strongly impaired in pulling folded domains of preproteins close to the outer membrane and in promoting their unfolding. Our results demonstrate that Tim44 is not an essential structural component of the import channel, but is crucial for import of folded domains. We suggest that the concerted action of Tim44 and mtHsp70 drives unfolding of preproteins and accelerates translocation of loosely folded preproteins. While mtHsp70 is essential for import of both tightly and loosly folded preproteins, Tim44 plays a more specialized role in translocation of tightly folded domains.

摘要

必需基因TIM44编码线粒体内膜前体蛋白转位酶的一个亚基,该亚基与基质热休克蛋白Hsp70形成复合物。由于缺乏阻断其功能的手段,Tim44在蛋白质输入中的具体作用尚未明确。在此,我们报道了一个酿酒酵母TIM44突变等位基因,它能在细胞器中选择性且高效地使Tim44失活。令人惊讶的是,突变型线粒体仍能输入前体蛋白。只要前体蛋白不携带稳定折叠的结构域,其输入速率与野生型相比仅降低约30%。此外,输入位点的数量并未减少。然而,突变型线粒体在将前体蛋白的折叠结构域拉近外膜以及促进其解折叠方面严重受损。我们的结果表明,Tim44不是输入通道的必需结构成分,但对折叠结构域的输入至关重要。我们认为,Tim44和线粒体Hsp70的协同作用驱动前体蛋白的解折叠,并加速松散折叠前体蛋白的转位。虽然线粒体Hsp70对紧密折叠和松散折叠前体蛋白的输入都是必需的,但Tim44在紧密折叠结构域的转位中发挥着更特殊的作用。

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