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本文引用的文献

1
The AAA team: related ATPases with diverse functions.AAA团队:具有多种功能的相关ATP酶。
Trends Cell Biol. 1998 Feb;8(2):65-71.
2
The ATP-dependent PIM1 protease is required for the expression of intron-containing genes in mitochondria.线粒体中含内含子基因的表达需要ATP依赖的PIM1蛋白酶。
Genes Dev. 1998 May 15;12(10):1515-24. doi: 10.1101/gad.12.10.1515.
3
Oxa1p mediates the export of the N- and C-termini of pCoxII from the mitochondrial matrix to the intermembrane space.Oxa1p介导细胞色素c氧化酶亚基II(pCoxII)的N端和C端从线粒体基质转运至膜间隙。
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Sequence analysis of the AAA protein family.AAA蛋白家族的序列分析。
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5
Membrane translocation of mitochondrially coded Cox2p: distinct requirements for export of N and C termini and dependence on the conserved protein Oxa1p.线粒体编码的Cox2p的膜易位:N端和C端输出的不同要求以及对保守蛋白Oxa1p的依赖性。
Mol Biol Cell. 1997 Aug;8(8):1449-60. doi: 10.1091/mbc.8.8.1449.
6
ATP-dependent proteases that also chaperone protein biogenesis.同时作为伴侣蛋白参与蛋白质生物合成的ATP依赖性蛋白酶。
Trends Biochem Sci. 1997 Apr;22(4):118-23. doi: 10.1016/s0968-0004(97)01020-7.
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Regulated protein degradation in mitochondria.线粒体中受调控的蛋白质降解
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8
The role of protein degradation in mitochondrial function and biogenesis.蛋白质降解在线粒体功能和生物发生中的作用。
Curr Genet. 1996 Nov;30(5):367-80. doi: 10.1007/s002940050145.
9
AAA proteases with catalytic sites on opposite membrane surfaces comprise a proteolytic system for the ATP-dependent degradation of inner membrane proteins in mitochondria.在相对膜表面具有催化位点的AAA蛋白酶构成了一个用于线粒体内膜蛋白ATP依赖性降解的蛋白水解系统。
EMBO J. 1996 Aug 15;15(16):4218-29.
10
Promotion of mitochondrial membrane complex assembly by a proteolytically inactive yeast Lon.蛋白酶解失活的酵母Lon对线粒体膜复合物组装的促进作用
Science. 1996 Oct 4;274(5284):103-6. doi: 10.1126/science.274.5284.103.

线粒体中呼吸链复合物的形成受m-AAA蛋白酶的蛋白水解控制。

The formation of respiratory chain complexes in mitochondria is under the proteolytic control of the m-AAA protease.

作者信息

Arlt H, Steglich G, Perryman R, Guiard B, Neupert W, Langer T

机构信息

Institut für Physiologische Chemie der Universität München, Goethestrasse 33, 80336 München, Germany.

出版信息

EMBO J. 1998 Aug 17;17(16):4837-47. doi: 10.1093/emboj/17.16.4837.

DOI:10.1093/emboj/17.16.4837
PMID:9707443
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1170813/
Abstract

Yta10p (Afg3p) and Yta12p (Rcal1p), members of the conserved AAA family of ATPases, are subunits of the mitochondrial m-AAA protease, an inner membrane ATP-dependent metallopeptidase. Deletion of YTA10 or YTA12 impairs degradation of non-assembled inner membrane proteins and assembly of respiratory chain complexes. Mutations of the proteolytic sites in either YTA10 or YTA12 have been shown to inhibit proteolysis of membrane-integrated polypeptides but not the respiratory competence of the cells, suggesting additional activities of Yta10p and Yta12p. Here we demonstrate essential proteolytic functions of the m-AAA protease in the biogenesis of the respiratory chain. Cells harbouring proteolytically inactive forms of both Yta10p and Yta12p are respiratory deficient and exhibit a pleiotropic phenotype similar to Deltayta10 and Deltayta12 cells. They show deficiencies in expression of the intron-containing mitochondrial genes COX1 and COB. Splicing of COX1 and COB transcripts is impaired in mitochondria lacking m-AAA protease, whilst transcription and translation can proceed in the absence of Yta10p or Yta12p. The function of the m-AAA protease appears to be confined to introns encoding mRNA maturases. Our results reveal an overlapping substrate specificity of the subunits of the m-AAA protease and explain the impaired assembly of respiratory chain complexes by defects in expression of intron-containing genes in mitochondria lacking m-AAA protease.

摘要

Yta10p(Afg3p)和Yta12p(Rcal1p)是保守的ATP酶AAA家族成员,是线粒体m-AAA蛋白酶的亚基,一种内膜ATP依赖性金属肽酶。YTA10或YTA12的缺失会损害非组装内膜蛋白的降解以及呼吸链复合物的组装。已表明YTA10或YTA12中蛋白水解位点的突变会抑制膜整合多肽的蛋白水解,但不会影响细胞的呼吸能力,这表明Yta10p和Yta12p具有其他活性。在这里,我们证明了m-AAA蛋白酶在呼吸链生物发生中的基本蛋白水解功能。携带Yta10p和Yta12p蛋白水解无活性形式的细胞呼吸缺陷,并表现出与Deltayta10和Deltayta12细胞相似的多效性表型。它们在含内含子的线粒体基因COX1和COB的表达上存在缺陷。在缺乏m-AAA蛋白酶的线粒体中,COX1和COB转录本的剪接受损,而在没有Yta10p或Yta12p的情况下转录和翻译可以进行。m-AAA蛋白酶的功能似乎局限于编码mRNA成熟酶的内含子。我们的结果揭示了m-AAA蛋白酶亚基重叠的底物特异性,并解释了在缺乏m-AAA蛋白酶的线粒体中,由于含内含子基因表达缺陷导致呼吸链复合物组装受损的原因。