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酵母细胞色素c线粒体导入的序列要求。

Sequence requirements for mitochondrial import of yeast cytochrome c.

作者信息

Wang X, Dumont M E, Sherman F

机构信息

Department of Biochemistry, University of Rochester School of Medicine and Dentistry, Rochester, New York 14642, USA.

出版信息

J Biol Chem. 1996 Mar 22;271(12):6594-604.

PMID:8636074
Abstract

Apocytochrome c is synthesized in the cytoplasm, transported to the mitochondrial intermembrane space, and subsequently covalently attached to heme in a reaction catalyzed by the enzyme cytochrome c heme lyase. We have investigated the amino acid sequences in cytochrome c which are required for mitochondrial import, using a systematic series of site-directed alterations of the CYC7-H3 gene which encodes iso-2-cytochrome c in the yeast Saccharomyces cerevisiae. Import of the altered apocytochromes c was assayed in yeast strains that overexpressed cytochrome c heme lyase. Under these conditions, there was efficient mitochondrial accumulation of forms of apocytochrome c which are incapable of having heme covalently attached. In fact, all apocytochromes c containing deletions located to the carboxyl-terminal side of His27 efficiently accumulated in the mitochondria of strains overexpressing heme lyase, even though all but one of these deletion-containing proteins were incapable of heme attachment. A minimum length of polypeptide chain at the extreme amino terminus of cytochrome c, rather than any specific sequence element in this region, appears to be required for efficient mitochondrial import. Certain amino acid substitutions in the region extending from Gly15 to Leu18, at residue Phe19 and at residue His27, lead to reduced mitochondrial import of apocytochrome c, resulting from stalling of the altered apocytochrome c in partially imported states.

摘要

脱辅基细胞色素c在细胞质中合成,转运至线粒体膜间隙,随后在细胞色素c血红素连接酶催化的反应中与血红素共价结合。我们利用酿酒酵母中编码同工型2 - 细胞色素c的CYC7 - H3基因的一系列系统性定点突变,研究了细胞色素c中线粒体导入所需的氨基酸序列。在过表达细胞色素c血红素连接酶的酵母菌株中检测了突变型脱辅基细胞色素c的导入情况。在这些条件下,无法进行血红素共价结合的脱辅基细胞色素c形式能有效地在线粒体中积累。事实上,所有在His27羧基末端一侧有缺失的脱辅基细胞色素c都能在过表达血红素连接酶的菌株线粒体中有效积累,尽管除一种含缺失的蛋白质外,其他所有蛋白质都无法结合血红素。细胞色素c最末端氨基端的多肽链最短长度,而非该区域的任何特定序列元件,似乎是线粒体有效导入所必需的。从Gly15延伸至Leu18区域、Phe19残基和His27残基处的某些氨基酸替换,会导致脱辅基细胞色素c的线粒体导入减少,这是由于突变型脱辅基细胞色素c在部分导入状态下停滞所致。

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