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基于与CYP102比对的CYP3A4分子建模:确定假定活性位点残基与CYP3A特异性化学物质之间的关键相互作用。

Molecular modelling of CYP3A4 from an alignment with CYP102: identification of key interactions between putative active site residues and CYP3A-specific chemicals.

作者信息

Lewis D F, Eddershaw P J, Goldfarb P S, Tarbit M H

机构信息

Molecular Toxicology Group, School of Biological Sciences, University of Surrey, Guildford, UK.

出版信息

Xenobiotica. 1996 Oct;26(10):1067-86. doi: 10.3109/00498259609167423.

Abstract
  1. A structural model of CYP3A4 is reported on the basis of a novel amino acid sequence alignment between the CYP3 family and CYP102, a bacterial P450 of known crystal structure. 2. Construction of the CYP3A4 model from CYP102 is facilitated by the relatively high sequence homology between the two protein (52% homology; 27% identity) with many conservative amino acid changes, yielding a structure of low internal energy. 3. A considerable number of specific substrates, and some specific inhibitors, are shown to occupy the putative CYP3A4 active site via interactions with the same amino acid residues in almost all cases investigated. 4. The CYP3A4 model rationalizes the known positions of metabolism for many substrates of this major human P450 such that the route of metabolism in novel development compounds can be predicted.
摘要
  1. 基于细胞色素P450 3A4(CYP3A4)家族与细胞色素P450 102(CYP102,一种已知晶体结构的细菌P450)之间新的氨基酸序列比对,报道了CYP3A4的结构模型。2. 由于这两种蛋白质之间相对较高的序列同源性(52%同源性;27%同一性)以及许多保守的氨基酸变化,使得从CYP102构建CYP3A4模型变得容易,从而产生了低内能的结构。3. 在几乎所有研究的案例中,大量的特异性底物和一些特异性抑制剂通过与相同的氨基酸残基相互作用,显示占据了假定的CYP3A4活性位点。4. CYP3A4模型使这种主要人类P450的许多底物的已知代谢位置合理化,从而可以预测新开发化合物的代谢途径。

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