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线粒体F1ATP酶α亚基是线粒体前体有效导入所必需的。

The mitochondrial F1ATPase alpha-subunit is necessary for efficient import of mitochondrial precursors.

作者信息

Yuan H, Douglas M G

机构信息

Department of Biochemistry and Biophysics, University of North Carolina Medical School, Chapel Hill 27599-7260.

出版信息

J Biol Chem. 1992 Jul 25;267(21):14697-702.

PMID:1386080
Abstract

The mitochondrial import and assembly of the F1ATPase subunits requires, respectively, the participation of the molecular chaperones hsp70SSA1 and hsp70SSC1 and other components operating on opposite sides of the mitochondrial membrane. In previous studies, both the homology and the assembly properties of the F1ATPase alpha-subunit (ATP1p) compared to the groEL homologue, hsp60, have led to the proposal that this subunit could exhibit chaperone-like activity. In this report the extent to which this subunit participates in protein transport has been determined by comparing import into mitochondria that lack the F1ATPase alpha-subunit (delta ATP1) versus mitochondria that lack the other major catalytic subunit, the F1ATPase beta-subunit (delta ATP2). Yeast mutants lacking the alpha-subunit but not the beta-subunit grow much more slowly than expected on fermentable carbon sources and exhibit delayed kinetics of protein import for several mitochondrial precursors such as the F1 beta subunit, hsp60MIF4 and subunits 4 and 5 of the cytochrome oxidase. In vitro and in vivo the F1 beta-subunit precursor accumulates as a translocation intermediate in absence of the F1 alpha-subunit. In the absence of both the ATPase subunits yeast grows at the same rate as a strain lacking only the beta-subunit, and import of mitochondrial precursors is restored to that of wild type. These data indicate that the F1 alpha-subunit likely functions as an "assembly partner" to influence protein import rather than functioning directly as a chaperone. These data are discussed in light of the relationship between the import and assembly of proteins in mitochondria.

摘要

F1ATP酶亚基的线粒体导入和组装分别需要分子伴侣hsp70SSA1和hsp70SSC1以及在线粒体外膜另一侧发挥作用的其他组分的参与。在先前的研究中,F1ATP酶α亚基(ATP1p)与groEL同源物hsp60相比的同源性和组装特性,促使人们提出该亚基可能具有类似伴侣蛋白的活性。在本报告中,通过比较导入缺乏F1ATP酶α亚基的线粒体(ΔATP1)与缺乏另一个主要催化亚基F1ATP酶β亚基的线粒体(ΔATP2),确定了该亚基参与蛋白质转运的程度。缺乏α亚基但不缺乏β亚基的酵母突变体在可发酵碳源上生长比预期慢得多,并且对于几种线粒体前体蛋白,如F1β亚基、hsp60MIF4和细胞色素氧化酶的亚基4和5,表现出蛋白质导入动力学延迟。在体外和体内,F1β亚基前体在缺乏F1α亚基时会积累为转运中间体。在缺乏这两个ATP酶亚基的情况下,酵母的生长速度与仅缺乏β亚基的菌株相同,线粒体前体蛋白的导入恢复到野生型水平。这些数据表明,F1α亚基可能作为“组装伴侣”发挥作用以影响蛋白质导入,而不是直接作为伴侣蛋白发挥作用。根据线粒体中蛋白质导入和组装之间的关系对这些数据进行了讨论。

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