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细胞色素P450与物种特异性

Cytochrome P450 and the individuality of species.

作者信息

Nelson D R

机构信息

Department of Biochemistry, University of Tennessee, Memphis, Tennessee, 38163, USA.

出版信息

Arch Biochem Biophys. 1999 Sep 1;369(1):1-10. doi: 10.1006/abbi.1999.1352.

Abstract

The P450 superfamily is expanding rapidly on many fronts. Arabidopsis genomic sequencing is producing about 2 to 3 novel P450s per week, with some clusters containing 9-14 genes. Bacterial genomes also carry surprises, such as the 20 P450s found in Mycobacterium tuberculosis and the 7 in Bacillus subtilis. The race to finish the human genome has already identified the majority of human P450s, some by expressed sequence tags only. The rapid discovery of new genes is being complemented by detailed analysis of our human genes to identify and characterize the complete set of human P450 polymorphisms and disease-causing mutations, one aspect of our "chemical individuality." Phylogenetic trees are included for plant, fungal, animal, and bacterial P450s. Emphasis is given to the higher order nomenclature of P450 clans, as a tool to see the larger picture of P450 evolution. Arabidopsis is the current record holder in P450 genes, with 186 named genes and a prediction of 350 in the total genome to be completed next year. The biosynthesis of cholesterol in bacteria is discussed in relation to CYP51 as a lanosterol 14 alpha-demethylase. This enzyme may have been the first eukaryotic P450.

摘要

细胞色素P450超家族正在许多方面迅速扩展。拟南芥基因组测序每周能产生约2至3个新的细胞色素P450,有些基因簇包含9至14个基因。细菌基因组也带来了惊喜,比如在结核分枝杆菌中发现了20个细胞色素P450,在枯草芽孢杆菌中发现了7个。完成人类基因组测序的竞争已经确定了大多数人类细胞色素P450,有些仅通过表达序列标签确定。新基因的快速发现得到了对人类基因详细分析的补充,以识别和表征人类细胞色素P450多态性和致病突变的完整集合,这是我们“化学个性”的一个方面。文中给出了植物、真菌、动物和细菌细胞色素P450的系统发育树。重点介绍了细胞色素P450家族的高级命名法,作为了解细胞色素P450进化全貌的一种工具。拟南芥是目前细胞色素P450基因的记录保持者,有186个已命名基因,预计明年完成的全基因组中将有350个。文中讨论了细菌中胆固醇的生物合成与作为羊毛甾醇14α-脱甲基酶的CYP51的关系。这种酶可能是第一个真核细胞色素P450。

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