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线粒体加工肽酶:功能与特异性

The mitochondrial processing peptidase: function and specificity.

作者信息

Luciano P, Géli V

机构信息

Laboratoire d'Ingéniérie des Systèmes Macromoléculaires, CNRS, Marseille, France.

出版信息

Experientia. 1996 Dec 15;52(12):1077-82. doi: 10.1007/BF01952105.

Abstract

Targeting signals of mitochondrial precursors are cleaved in the matrix during or after import by the mitochondrial processing peptidase (MPP). This enzyme consists of two nonidentical alpha- and beta-subunits each of molecular weight of about 50 kDa. In mammals and fungi, MPP is soluble in the matrix, whereas in plants the enzyme is part of the cytochrome bc1 complex. MPP is a metalloendopeptidase which has been classified as a member of the pitrilysin family on the basis of the HXXEHX76E zinc-binding motif present in beta-MPP. Both subunits of MPP are required for processing activity. The alpha-subunit of MPP, which probably recognizes a three-dimensional motif adopted by the presequence, presents the presequence to beta-MPP, which carries the catalytic active site. MPP acts as an endoprotease on chemically synthesized peptides corresponding to mitochondrial presequences. Matrix-targeting signals and MPP cleavage signals seem to be distinct, although the two signals may overlap within a given presequence. The structural element helix-turn-helix, that cleavable presequences adopt in a membrane mimetic environment, may be required for processing but is not sufficient for proteolysis. Binding of the presequence by alpha-MPP tolerates a high degree of mutations of the presequence. alpha-MPP may present a degenerated cleavage site motif to beta-MPP in an accessible conformation for processing. The conformation of mitochondrial presequences bound to MPP remains largely unknown.

摘要

线粒体前体的靶向信号在导入过程中或导入后,由线粒体加工肽酶(MPP)在基质中进行切割。该酶由两个不同的α亚基和β亚基组成,每个亚基的分子量约为50 kDa。在哺乳动物和真菌中,MPP可溶于基质,而在植物中,该酶是细胞色素bc1复合物的一部分。MPP是一种金属内肽酶,基于β-MPP中存在的HXXEHX76E锌结合基序,它被归类为pitrilysin家族的成员。MPP的两个亚基对于加工活性都是必需的。MPP的α亚基可能识别前导序列采用的三维基序,将前导序列呈递给带有催化活性位点的β-MPP。MPP对与线粒体前导序列相对应的化学合成肽起内切蛋白酶的作用。基质靶向信号和MPP切割信号似乎是不同的,尽管这两个信号在给定的前导序列中可能重叠。可切割的前导序列在模拟膜环境中采用的螺旋-转角-螺旋结构元件可能是加工所必需的,但不足以进行蛋白水解。α-MPP对前导序列的结合能够耐受前导序列的高度突变。α-MPP可能以可接近的构象向β-MPP呈现一个退化的切割位点基序以便进行加工。与MPP结合的线粒体前导序列的构象在很大程度上仍然未知。

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