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真核生物中半胱氨酸蛋白酶的进化

Evolution of cysteine proteinases in eukaryotes.

作者信息

Hughes A L

机构信息

Department of Biology, Pennsylvania State University, University Park 16802.

出版信息

Mol Phylogenet Evol. 1994 Dec;3(4):310-21. doi: 10.1006/mpev.1994.1038.

Abstract

Phylogenetic analyses of the major family of cysteine proteinases of eukaryotes revealed that this family has been characterized by numerous gene duplications, several of which occurred very early in eukaryote evolutionary history. For example, certain cysteine proteinases from plants and animals are homologous to each of the two cysteine proteinases of the protist Dictyostelium discoideum, indicating that these genes duplicated prior to the divergence of Dictyostelium, plants, and animals. All members of this gene family from metazoan parasites clustered in a well-defined subfamily with mammalian cathepsin B, whereas all those from protist parasites clustered outside this subfamily. Five members of this subfamily from Haemonchus contortus (a nematode parasite of sheep and other ruminants) evolved by gene duplications which were estimated to have occurred within the past 200 My. The proteins encoded by these five genes show a surprising number of residue charge differences from each other, particularly in helical regions in or near the substrate-binding cleft. Statistical analysis of DNA sequences showed that nonsynonymous nucleotide differences that cause amino acid residue charge changes have occurred in these regions at a greater rate than expected under random substitution, suggesting that these genes have diversified as a result of positive natural selection favoring such changes.

摘要

真核生物半胱氨酸蛋白酶主要家族的系统发育分析表明,该家族的特点是有大量基因复制,其中一些发生在真核生物进化历史的早期。例如,来自植物和动物的某些半胱氨酸蛋白酶与原生生物盘基网柄菌的两种半胱氨酸蛋白酶中的每一种都同源,这表明这些基因在盘基网柄菌、植物和动物分化之前就已经复制。后生动物寄生虫这个基因家族的所有成员都聚集在一个定义明确的亚家族中,与哺乳动物组织蛋白酶B在一起,而来自原生生物寄生虫的所有成员都聚集在这个亚家族之外。捻转血矛线虫(绵羊和其他反刍动物的一种线虫寄生虫)这个亚家族的五个成员是通过基因复制进化而来的,据估计这些复制发生在过去2亿年之内。这五个基因编码的蛋白质彼此之间在残基电荷上存在惊人数量的差异,特别是在底物结合裂隙内或附近的螺旋区域。对DNA序列的统计分析表明,导致氨基酸残基电荷变化的非同义核苷酸差异在这些区域发生的频率高于随机替换预期的频率,这表明这些基因由于有利于此类变化的正自然选择而多样化。

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