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细胞色素P450超家族的进化:序列比对与药物遗传学

Evolution of the cytochrome P450 superfamily: sequence alignments and pharmacogenetics.

作者信息

Lewis D F, Watson E, Lake B G

机构信息

School of Biological Sciences, University of Surrey, Guildford, Surrey, GU2 5XH, UK.

出版信息

Mutat Res. 1998 Jun;410(3):245-70. doi: 10.1016/s1383-5742(97)00040-9.

Abstract

The evolution of the cytochrome P450 (CYP) superfamily is described, with particular reference to major events in the development of biological forms during geological time. It is noted that the currently accepted timescale for the elaboration of the P450 phylogenetic tree exhibits close parallels with the evolution of terrestrial biota. Indeed, the present human P450 complement of xenobiotic-metabolizing enzymes may have originated from coevolutionary 'warfare' between plants and animals during the Devonian period about 400 million years ago. A number of key correspondences between the evolution of P450 system and the course of biological development over time, point to a mechanistic molecular biology of evolution which is consistent with a steady increase in atmospheric oxygenation beginning over 2000 million years ago, whereas dietary changes during more recent geological time may provide one possible explanation for certain species differences in metabolism. Alignment between P450 protein sequences within the same family or subfamily, together with across-family comparisons, aid the rationalization of drug metabolism specificities for different P450 isoforms, and can assist in an understanding of genetic polymorphisms in P450-mediated oxidations at the molecular level. Moreover, the variation in P450 regulatory mechanisms and inducibilities between different mammalian species are likely to have important implications for current procedures of chemical safety evaluation, which rely on pure genetic strains of laboratory bred rodents for the testing of compounds destined for human exposure.

摘要

本文描述了细胞色素P450(CYP)超家族的进化过程,特别提及了地质时期生物形态发展中的重大事件。值得注意的是,目前公认的构建P450系统发育树的时间尺度与陆地生物群的进化过程密切相关。事实上,目前人类用于代谢外源性物质的P450酶系可能起源于约4亿年前泥盆纪时期动植物之间的协同进化“战争”。P450系统的进化与生物发展历程之间的一些关键对应关系,指向了一种进化的分子生物学机制,这与20多亿年前开始的大气氧合作用稳步增加相一致,而最近地质时期的饮食变化可能为某些物种代谢差异提供一种可能的解释。同一家族或亚家族内P450蛋白序列的比对,以及跨家族比较,有助于合理阐释不同P450同工型的药物代谢特异性,并有助于从分子水平理解P450介导氧化反应中的基因多态性。此外,不同哺乳动物物种之间P450调节机制和诱导性的差异,可能对当前的化学安全评估程序产生重要影响,这些程序依赖实验室培育的纯基因品系啮齿动物来测试拟用于人类接触的化合物。

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