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大肠杆菌Lon蛋白酶对线粒体中PIM1蛋白酶的替代。

Substitution of PIM1 protease in mitochondria by Escherichia coli Lon protease.

作者信息

Teichmann U, van Dyck L, Guiard B, Fischer H, Glockshuber R, Neupert W, Langer T

机构信息

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

出版信息

J Biol Chem. 1996 Apr 26;271(17):10137-42. doi: 10.1074/jbc.271.17.10137.

Abstract

PIM1 protease in mitochondria belongs to a conserved family of ATP-dependent proteases, which includes the Escherichia coli Lon protease. Yeast cells lacking PIM1 are largely defective in degrading misfolded proteins in the mitochondrial matrix, are respiratory deficient, and lose integrity of mitochondrial DNA. In order to analyze whether E. coli Lon protease is functionally equivalent to mitochondrial PIM1 protease, yeast cells lacking the PIM1 gene were transformed with a construct consisting of a mitochondrial targeting sequence fused onto the Lon protease. In these cells, the fusion protein was expressed and imported into mitochondria, and the targeting sequence was removed. In the absence of PIM1 protease, the E. coli Lon protease mediated the degradation of misfolded proteins in the matrix space in cooperation with the mitochondrial hsp70 system. These cells maintained the integrity of the mitochondrial genome and the respiratory function at 30 degrees C but not at 37 degrees C. Stabilization of mitochondrial DNA in Deltapim1 cells depended on protein degradation by the E. coli Lon protease, as a proteolytically inactive Lon variant was not capable of substituting for a loss of PIM1 protease. These results demonstrate functional conservation of Lon-like proteases from prokaryotes to eukaryotes and shed new light on the role of Lon-like proteases in mitochondrial biogenesis.

摘要

线粒体中的PIM1蛋白酶属于ATP依赖性蛋白酶的一个保守家族,其中包括大肠杆菌Lon蛋白酶。缺乏PIM1的酵母细胞在降解线粒体基质中错误折叠的蛋白质方面存在很大缺陷,呼吸功能不足,并且线粒体DNA的完整性丧失。为了分析大肠杆菌Lon蛋白酶在功能上是否等同于线粒体PIM1蛋白酶,将缺乏PIM1基因的酵母细胞用一个构建体进行转化,该构建体由融合到Lon蛋白酶上的线粒体靶向序列组成。在这些细胞中,融合蛋白被表达并导入线粒体,靶向序列被去除。在没有PIM1蛋白酶的情况下,大肠杆菌Lon蛋白酶与线粒体hsp70系统协同介导基质空间中错误折叠蛋白质的降解。这些细胞在30℃时维持线粒体基因组的完整性和呼吸功能,但在37℃时则不能。Δpim1细胞中线粒体DNA的稳定依赖于大肠杆菌Lon蛋白酶的蛋白质降解,因为蛋白水解无活性的Lon变体不能替代PIM1蛋白酶的缺失。这些结果证明了从原核生物到真核生物Lon样蛋白酶的功能保守性,并为Lon样蛋白酶在线粒体生物发生中的作用提供了新的线索。

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