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蛋白质导入线粒体。分离的酵母线粒体对膜间隙酶细胞色素b2进行能量依赖的两步加工。

Import of proteins into mitochondria. Energy-dependent, two-step processing of the intermembrane space enzyme cytochrome b2 by isolated yeast mitochondria.

作者信息

Daum G, Gasser S M, Schatz G

出版信息

J Biol Chem. 1982 Nov 10;257(21):13075-80.

PMID:6752147
Abstract

Import of in vitro-synthesized cytochrome b2 (a soluble intermembrane space enzyme) was studied wih isolated yeast mitochondria. Import requires an electrochemical gradient across the inner membrane and is accompanied by cleavage of the precursor to the corresponding mature form. This conversion proceeds via an intermediate form of cytochrome b2, which can be detected as a transient species when mitochondria are incubated with the cytochrome b2 precursor for short times or at low temperatures. Conversion of the precursor to the intermediate form is energy-dependent and catalyzed by an o-phenanthroline-sensitive protease located in the soluble matrix. The intermediate is subsequently converted to mature cytochrome b2 in a reaction which is o-phenanthroline-insensitive and requires neither an energized inner membrane nor a soluble component of the intermembrane space. Whereas mature cytochrome b2 is soluble, the intermediate formed by isolated mitochondria is membrane-bound and exposed to the intermembrane space. The same intermediate is detected as a transient species during cytochrome b2 maturation in intact yeast cells (Reid, G. A., Yonetani, T., and Schatz, G (1982) J. Biol. Chem. 257, 13068-13074). The in vitro studies reported here suggest that a part of the cytochrome b2 precursor polypeptide chain is transported to the matrix where it is cleaved to a membrane-bound intermediate form by the same protease that processes polypeptides destined for the matrix space or for the inner membrane. In a second reaction, the cytochrome b2 intermediate is converted to mature cytochrome b2 which is released into the intermembrane space. The binding of heme is not necessary for converting the intermediate to the mature polypeptide.

摘要

利用分离出的酵母线粒体研究了体外合成的细胞色素b2(一种可溶性的膜间隙酶)的导入过程。导入过程需要跨内膜的电化学梯度,并且伴随着前体切割为相应的成熟形式。这种转化通过细胞色素b2的一种中间形式进行,当线粒体与细胞色素b2前体短时间孵育或在低温下孵育时,这种中间形式可以作为一种瞬时存在的物种被检测到。前体向中间形式的转化是能量依赖的,并且由位于可溶性基质中的一种邻菲罗啉敏感的蛋白酶催化。随后,中间形式在一个邻菲罗啉不敏感的反应中转化为成熟的细胞色素b2,该反应既不需要内膜处于激活状态,也不需要膜间隙的可溶性成分。虽然成熟的细胞色素b2是可溶的,但分离出的线粒体形成的中间形式是与膜结合的,并暴露于膜间隙。在完整酵母细胞的细胞色素b2成熟过程中,同样的中间形式也作为一种瞬时存在的物种被检测到(Reid, G. A., Yonetani, T., and Schatz, G (1982) J. Biol. Chem. 257, 13068 - 13074)。这里报道的体外研究表明,细胞色素b2前体多肽链的一部分被转运到基质中,在那里它被处理定位于基质空间或内膜的多肽的同一种蛋白酶切割为一种与膜结合的中间形式。在第二个反应中,细胞色素b2中间形式转化为成熟的细胞色素b2,后者被释放到膜间隙中。血红素的结合对于将中间形式转化为成熟多肽不是必需的。

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