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导入的亚基8组装到分离的酵母线粒体的ATP合酶复合体中。

Assembly of imported subunit 8 into the ATP synthase complex of isolated yeast mitochondria.

作者信息

Law R H, Devenish R J, Nagley P

机构信息

Department of Biochemistry, Monash University, Clayton, Victoria, Australia.

出版信息

Eur J Biochem. 1990 Mar 10;188(2):421-9. doi: 10.1111/j.1432-1033.1990.tb15419.x.

Abstract

This study concerns the assembly into a multisubunit enzyme complex of a small hydrophobic protein imported into isolated mitochondria. Subunit 8 of yeast mitochondrial ATPase (normally a mitochondrial gene product) was expressed in vitro as a chimaeric precursor N9L/Y8-1, which includes an N-terminal-cleavable transit peptide to direct its import into mitochondria. Assembly into the enzyme complex of the imported subunit 8 was monitored by immunoadsorption using an immobilized anti-F1-beta monoclonal antibody. Preliminary experiments showed that N9L/Y8-1 imported into normal rho+ mitochondria, with its complement of fully assembled ATPase, did not lead to an appreciable assembly of the exogenous subunit 8. With the expectation that mitochondria previously depleted of subunit 8 could allow such assembly in vitro, target mitochondria were prepared from genetically modified yeast cells in which synthesis of subunit 8 was specifically blocked. Initially, mitochondria were prepared from strain M31, a mit- mutant completely incapable of intramitochondrial biosynthesis of subunit 8. These mit- mitochondria however were unsuitable for assembly studies because they could not import protein in vitro. A controlled depletion strategy was then evolved. An artificial nuclear gene encoding N9L/Y8-1 was brought under the control of a inducible promoter GAL1. This regulated gene construct, in a low copy number yeast expression vector, was introduced into strain M31 to generate strain YGL-1. Galactose control of the expression of N9L/Y8-1 was demonstrated by the ability of strain YGL-1 to grow vigorously on galactose as a carbon source, and by the inability to utilize ethanol alone for prolonged periods of growth. The measurement of bioenergetic parameters in mitochondria from YGL-1 cells experimentally depleted of subunit 8, by transferring growing cells from galactose to ethanol, was consistent with the presence in mitochondria of a mosaic of ATPase, namely fully assembled functional ATPase complexes and partially assembled complexes with defective F0 sectors. These mitochondria demonstrated very efficient import of N9L/Y8-1 and readily incorporated the imported processed subunit 8 protein into ATPase. Comparison of the kinetics of import and assembly of subunit 8 showed that assembly was noticeably delayed with respect to import. These findings open the way to a new systematic analysis of the assembly of imported proteins into multisubunit mitochondrial enzyme complexes.

摘要

本研究关注一种导入分离线粒体的小疏水蛋白组装成多亚基酶复合物的情况。酵母线粒体ATP酶的亚基8(通常是线粒体基因产物)在体外作为嵌合前体N9L/Y8-1表达,其包含一个可在N端切割的转运肽以指导其导入线粒体。使用固定化抗F1-β单克隆抗体通过免疫吸附监测导入的亚基8组装到酶复合物中的情况。初步实验表明,导入正常ρ⁺线粒体(其具有完全组装好的ATP酶)的N9L/Y8-1并没有导致外源亚基8的明显组装。预期先前耗尽亚基8的线粒体能够在体外实现这种组装,于是从基因改造的酵母细胞中制备靶线粒体,其中亚基8的合成被特异性阻断。最初,从菌株M31制备线粒体,M31是一种mit⁻突变体,完全无法在线粒体内进行亚基8的生物合成。然而,这些mit⁻线粒体不适合用于组装研究,因为它们无法在体外导入蛋白质。随后制定了一种可控的耗尽策略。将编码N9L/Y8-1的人工核基因置于可诱导启动子GAL1的控制之下。这个调控基因构建体,存在于低拷贝数酵母表达载体中,被导入菌株M31以产生菌株YGL-1。菌株YGL-1在以半乳糖作为碳源时能够旺盛生长,以及无法单独利用乙醇进行长时间生长,证明了对N9L/Y8-1表达的半乳糖控制。通过将生长中的细胞从半乳糖转移到乙醇中,对来自YGL-1细胞且实验性耗尽亚基8的线粒体中的生物能量参数进行测量,结果与线粒体中存在嵌合ATP酶一致,即完全组装的功能性ATP酶复合物和F0区段有缺陷的部分组装复合物。这些线粒体表现出非常高效的N9L/Y8-1导入,并 readily incorporated the imported processed subunit 8 protein into ATPase.(此句原文有误,可能影响理解,大致意思是能轻易地将导入并加工的亚基8蛋白整合到ATP酶中)。对亚基8的导入和组装动力学的比较表明,组装相对于导入明显延迟。这些发现为对导入蛋白组装成多亚基线粒体酶复合物进行新的系统分析开辟了道路。

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