Pajic A, Tauer R, Feldmann H, Neupert W, Langer T
Institut für Physiologische Chemie, Physikalische Biochemie und Zellbiologie der Universität München, Germany.
FEBS Lett. 1994 Oct 17;353(2):201-6. doi: 10.1016/0014-5793(94)01046-3.
Incompletely synthesized polypeptides in the mitochondrial inner membrane are subject to rapid proteolysis. We demonstrate that Yta10p, a mitochondrial homologue of a conserved family of putative ATPases in Saccharomyces cerevisiae, is essential for this proteolytic process. Yta10p-dependent degradation requires divalent metal ions and the hydrolysis of ATP. Yta10p is an integral protein of the inner mitochondrial membrane exposing the carboxy terminus to the mitochondrial matrix space. Based on the presence of consensus binding sites for ATP, and for divalent metal ions found in a number of metal dependent endopeptidases, a direct role of Yta10p in the proteolytic breakdown of membrane-associated polypeptides in mitochondria is suggested.
线粒体内膜中未完全合成的多肽会迅速被蛋白酶水解。我们证明,Yta10p是酿酒酵母中一个保守的假定ATP酶家族的线粒体同源物,对这一蛋白水解过程至关重要。Yta10p依赖的降解需要二价金属离子和ATP水解。Yta10p是线粒体内膜的整合蛋白,其羧基末端暴露于线粒体基质空间。基于在许多金属依赖性内肽酶中发现的ATP和二价金属离子的共有结合位点,提示Yta10p在线粒体中膜相关多肽的蛋白水解降解中起直接作用。