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前体蛋白的前导序列和成熟部分强烈影响线粒体蛋白输入对基质中热休克蛋白70的依赖性。

Presequence and mature part of preproteins strongly influence the dependence of mitochondrial protein import on heat shock protein 70 in the matrix.

作者信息

Voos W, Gambill B D, Guiard B, Pfanner N, Craig E A

机构信息

Biochemisches Institut, Universität Freiburg, Germany.

出版信息

J Cell Biol. 1993 Oct;123(1):119-26. doi: 10.1083/jcb.123.1.119.

Abstract

To test the hypothesis that 70-kD mitochondrial heat shock protein (mt-hsp70) has a dual role in membrane translocation of preproteins we screened preproteins in an attempt to find examples which required either only the unfoldase or only the translocase function of mt-hsp70. We found that a series of fusion proteins containing amino-terminal portions of the intermembrane space protein cytochrome b2 (cyt. b2) fused to dihydrofolate reductase (DHFR) were differentially imported into mitochondria containing mutant hsp70s. A fusion protein between the amino-terminal 167 residues of the precursor of cyt. b2 and DHFR was efficiently transported into mitochondria independently of both hsp70 functions. When the length of the cyt. b2 portion was increased and included the heme binding domain, the fusion protein became dependent on the unfoldase function of mt-hsp70, presumably caused by a conformational restriction of the heme-bound preprotein. In the absence of heme the noncovalent heme binding domain in the longer fusion proteins no longer conferred a dependence on the unfoldase function. When the cyt. b2 portion of the fusion protein was less than 167 residues, its import was still independent of mt-hsp70 function; however, deletion of the intermembrane space sorting signal resulted in preproteins that ended up in the matrix of wild-type mitochondria and whose translocation was strictly dependent on the translocase function of mt-hsp70. These findings provide strong evidence for a dual role of mt-hsp70 in membrane translocation and indicate that preproteins with an intermembrane space sorting signal can be correctly imported even in mutants with severely impaired hsp70 function.

摘要

为了验证70-kD线粒体热休克蛋白(mt-hsp70)在蛋白质前体的膜转运中具有双重作用这一假说,我们筛选了蛋白质前体,试图找到仅需要mt-hsp70的解折叠酶功能或仅需要其转位酶功能的例子。我们发现,一系列包含线粒体外膜间隙蛋白细胞色素b2(cyt. b2)氨基末端部分与二氢叶酸还原酶(DHFR)融合的融合蛋白,被差异性地导入含有突变型hsp70的线粒体中。细胞色素b2前体的氨基末端167个残基与DHFR之间的融合蛋白能够有效地转运到线粒体中,且不依赖于hsp70的任何一种功能。当细胞色素b2部分的长度增加并包含血红素结合结构域时,融合蛋白变得依赖于mt-hsp70的解折叠酶功能,这可能是由于血红素结合的蛋白质前体的构象限制所致。在没有血红素的情况下,较长融合蛋白中的非共价血红素结合结构域不再导致对解折叠酶功能的依赖性。当融合蛋白的细胞色素b2部分少于167个残基时,其导入仍然不依赖于mt-hsp70的功能;然而,线粒体外膜间隙分选信号的缺失导致蛋白质前体最终进入野生型线粒体的基质中,并且其转运严格依赖于mt-hsp70的转位酶功能。这些发现为mt-hsp70在膜转运中的双重作用提供了有力证据,并表明即使在hsp70功能严重受损的突变体中,具有线粒体外膜间隙分选信号的蛋白质前体也能被正确导入。

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