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前体蛋白导入线粒体过程中解折叠和跨膜转运所需的能量。

Energy requirements for unfolding and membrane translocation of precursor proteins during import into mitochondria.

作者信息

Pfanner N, Rassow J, Guiard B, Söllner T, Hartl F U, Neupert W

机构信息

Institut für Physiologische Chemie, Universität Müchen, Federal Republic of Germany.

出版信息

J Biol Chem. 1990 Sep 25;265(27):16324-9.

PMID:2144529
Abstract

ATP is involved in conferring transport competence to numerous mitochondrial precursor proteins in the cytosol. Unfolded precursor proteins were found not to require ATP for import into mitochondria, suggesting a role of ATP in the unfolding of precursors. Here we report the unexpected finding that a hybrid protein containing the tightly folded passenger protein dihydrofolate reductase becomes unfolded and specifically translocated across the mitochondrial membranes independently of added ATP. Moreover, interaction of the precursor with the mitochondrial receptor components does not require ATP. The results suggest that ATP is not involved in the actual process of unfolding during membrane translocation of precursors. ATP rather appears to be necessary for preventing the formation of improper structures of precursors in the cytosol and for folding of imported polypeptides on (and release from) chaperone-like molecules in the mitochondrial matrix.

摘要

ATP参与赋予胞质溶胶中众多线粒体前体蛋白转运能力。未折叠的前体蛋白被发现导入线粒体不需要ATP,这表明ATP在前体蛋白的去折叠过程中发挥作用。在此,我们报告了一个意外发现:含有紧密折叠的乘客蛋白二氢叶酸还原酶的杂合蛋白能够独立于添加的ATP发生去折叠并特异性地穿过线粒体膜。此外,前体蛋白与线粒体受体组分的相互作用也不需要ATP。这些结果表明,ATP不参与前体蛋白跨膜转运过程中的实际去折叠过程。相反,ATP似乎对于防止胞质溶胶中前体蛋白形成异常结构以及使导入的多肽在线粒体基质中类似伴侣分子上折叠(并从其上释放)是必需的。

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