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酵母异-1-细胞色素c:结构要求的遗传分析

Yeast iso-1-cytochrome c: genetic analysis of structural requirements.

作者信息

Hampsey D M, Das G, Sherman F

机构信息

Department of Biophysics, University of Rochester Medical Center, NY 14642.

出版信息

FEBS Lett. 1988 Apr 25;231(2):275-83. doi: 10.1016/0014-5793(88)80834-2.

Abstract

We describe the use of classical and molecular genetic techniques to investigate the folding, stability, and enzymatic requirements of iso-1-cytochrome c from the yeast Saccharomyces cerevisiae. Interpretation of the defects associated with an extensive series of altered forms of iso-1-cytochrome c was facilitated by the recently resolved three dimensional structure of iso-1-cytochrome c [(1987) J. Mol. Biol. 199, 295-314], and by comparison with the phylogenetic series of eukaryotic cytochromes c. Residue replacements that abolish iso-1-cytochrome c function appear to do so by affecting either heme attachment or protein stability; no replacements that abolish electron transfer function without affecting protein structure were uncovered. Most nonfunctional forms retained at least partial covalent attachment to the heme moiety; heme attachment was abolished only by replacements of Cys19 and Cys22, which are required for thioether linkage, and His23, a heme ligand. Replacements were uncovered that retain function at varying levels, including replacements at evolutionarily conserved positions, some of which were structurally and functionally indistinguishable from wild type iso-1-cytochrome c.

摘要

我们描述了利用经典和分子遗传学技术来研究酿酒酵母中异 - 1 - 细胞色素c的折叠、稳定性及酶促反应要求。最近解析的异 - 1 - 细胞色素c的三维结构[(1987年)《分子生物学杂志》199卷,295 - 314页]以及与真核细胞色素c系统发育序列的比较,有助于阐释与一系列广泛的异 - 1 - 细胞色素c变体相关的缺陷。消除异 - 1 - 细胞色素c功能的残基替换似乎是通过影响血红素附着或蛋白质稳定性来实现的;未发现不影响蛋白质结构却消除电子传递功能的替换。大多数无功能形式仍至少部分与血红素部分保持共价连接;只有硫醚连接所需的Cys19和Cys22以及血红素配体His23的替换才会消除血红素附着。发现了一些在不同水平上保留功能的替换,包括在进化保守位置的替换,其中一些在结构和功能上与野生型异 - 1 - 细胞色素c无法区分。

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