线粒体中受调节的蛋白质降解。

Experientia Pub Date : 1996-12-15 DOI:10.1007/BF01952104
T Langer, W Neupert
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引用次数: 30

摘要

线粒体内鉴定出多种三磷酸腺苷(ATP)依赖性蛋白酶,它们介导线粒体蛋白的选择性降解,并在线粒体生物发生中发挥重要作用。基质定位的PIM1蛋白酶是大肠杆菌蛋白酶的同源物,是呼吸和维持线粒体基因组完整性所必需的。PIM1蛋白酶对非天然多肽的降解取决于线粒体Hsp70系统的伴侣活性,这就提出了关于蛋白质水解系统与线粒体折叠机制之间关系的有趣问题。线粒体内膜含有两种依赖atp的金属肽酶,m-和i-AAA蛋白酶,它们的催化位点暴露在相反的膜表面,并协同降解内膜蛋白。除了其蛋白水解活性外,m-AAA蛋白酶在呼吸和atp合酶复合物的组装过程中具有伴侣样活性。它构成了膜内包埋蛋白复合物的质量控制体系。
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Regulated protein degradation in mitochondria.

Various adenosine triphosphate (ATP)-dependent proteases were identified within mitochondria which mediate selective mitochondrial protein degradation and fulfill crucial functions in mitochondrial biogenesis. The matrix-localized PIM1 protease, a homologue of the Escherichia coli Lon protease, is required for respiration and maintenance of mitochondrial genome integrity. Degradation of non-native polypeptides by PIM1 protease depends on the chaperone activity of the mitochondrial Hsp70 system, posing intriguing questions about the relation between the proteolytic system and the folding machinery in mitochondria. The mitochondrial inner membrane harbors two ATP-dependent metallopeptidases, the m- and the i-AAA protease, which expose their catalytic sites to opposite membrane surfaces and cooperate in the degradation of inner membrane proteins. In addition to its proteolytic activity, the m-AAA protease has chaperone-like activity during the assembly of respiratory and ATP-synthase complexes. It constitutes a quality control system in the inner membrane for membrane-embedded protein complexes.

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