Impaired Folding of the Mitochondria! Small TIM Chaperones Induces Clearance by the i-AAA Protease

被引:52
作者
Baker, Michael J. [1 ,2 ,3 ]
Mooga, Ved P. [1 ,2 ]
Guiard, Bernard [4 ]
Langer, Thomas [3 ]
Ryan, Michael T. [1 ,2 ]
Stojanovski, Diana [1 ,2 ]
机构
[1] La Trobe Univ, Dept Biochem, La Trobe Inst Mol Sci, Melbourne, Vic 3086, Australia
[2] La Trobe Univ, ARC Ctr Excellence Coherent Xray Sci, Melbourne, Vic 3086, Australia
[3] Univ Cologne, Inst Genet, D-50674 Cologne, Germany
[4] CNRS, Ctr Genet Mol, F-91190 Gif Sur Yvette, France
基金
澳大利亚研究理事会;
关键词
disulfide bond; intermembrane space; MIA; mitochondria; Yme1; DISULFIDE RELAY SYSTEM; INTERMEMBRANE SPACE; TIM8-TIM13; COMPLEX; IMPORT CHANNEL; PROTEINS; MIA40; TRANSLOCATION; MEMBRANE; IDENTIFICATION; DEGRADATION;
D O I
10.1016/j.jmb.2012.09.019
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
070307 [化学生物学]; 071010 [生物化学与分子生物学];
摘要
The intermembrane space of mitochondria contains a dedicated chaperone network-the small translocase of the inner membrane (TIM) family-for the sorting of hydrophobic precursors. All small TIMs are defined by the presence of a twin CX3C motif and the monomeric proteins are stabilized by two intramolecular disulfide bonds formed between the cysteines of these motifs. The conserved cysteine residues within small TIM members have also been shown to participate in early biogenesis events, with the most N-terminal cysteine residue important for import and retention within the intermembrane space via the receptor and disulfide oxidase, Mia40. In this study, we have analyzed the in vivo consequences of improper folding of small TIM chaperones by generating site-specific cysteine mutants and assessed the fate of the incompletely oxidized proteins within mitochondria. We show that no individual cysteine residue is required for the function of Tim9 or Tim10 in yeast and that defective assembly of the small TIMs induces their proteolytic clearance from mitochondria. We delineate a clearance mechanism for the mutant proteins and their unassembled wild-type partner protein by the mitochondrial ATP-dependent protease, Yme1 (yeast mitochondrial escape 1). (C) 2012 Elsevier Ltd. All rights reserved.
引用
收藏
页码:227 / 239
页数:13
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