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人细胞色素P450的预测三维结构:对底物特异性的影响。

A predicted three-dimensional structure of human cytochrome P450: implications for substrate specificity.

作者信息

Zvelebil M J, Wolf C R, Sternberg M J

机构信息

Biomolecular Modelling Laboratory, Imperial Cancer Research Fund, Lincoln's Inn Fields, London, UK.

出版信息

Protein Eng. 1991 Feb;4(3):271-82. doi: 10.1093/protein/4.3.271.

Abstract

A three-dimensional structure for human cytochrome P450IA1 was predicted based on the crystal coordinates of cytochrome P450cam from Pseudomonas putida. As there was only 15% residue identity between the two enzymes, additional information was used to establish an accurate sequence alignment that is a prerequisite for model building. Twelve representative eukaryotic sequences were aligned and a net prediction of secondary structure was matched against the known alpha-helices and beta-sheets of P450cam. The cam secondary structure provided a fixed main-chain framework onto which loops of appropriate length from the human P450IA1 structure were added. The model-built structure of the human cytochrome conformed to the requirements for the segregation of polar and nonpolar residues between the core and the surface. The first 44 residues of human cytochrome P450 could not be built into the model and sequence analysis suggested that residues 1-26 formed a single membrane-spanning segment. Examination of the sequences of cytochrome P450s from distinct gene families suggested specific residues that could account for the differences in substrate specificity. A major substrate for P450IA1, 3-methyl-cholanthrene, was fitted into the proposed active site and this planar aromatic molecule could be accommodated into the available cavity. Residues that are likely to interact with the haem were identified. The sequence similarity between 59 eukaryotic enzymes was represented as a dendrogram that in general clustered according to gene family. Until a crystallographic structure is available, this model-building study identifies potential residues in cytochrome P450s important in the function of these enzymes and these residues are candidates for site-directed mutagenesis.

摘要

基于恶臭假单胞菌细胞色素P450cam的晶体坐标,预测了人细胞色素P450IA1的三维结构。由于这两种酶之间只有15%的残基一致性,因此使用了额外的信息来建立准确的序列比对,这是构建模型的先决条件。对12条代表性真核生物序列进行了比对,并将二级结构的净预测结果与P450cam已知的α螺旋和β折叠进行了匹配。P450cam的二级结构提供了一个固定的主链框架,在该框架上添加了来自人P450IA1结构的适当长度的环。构建的人细胞色素模型结构符合核心与表面之间极性和非极性残基分离的要求。人细胞色素P450的前44个残基无法构建到模型中,序列分析表明,第1-26位残基形成了一个单一的跨膜片段。对不同基因家族的细胞色素P450序列进行检查,发现了一些可能解释底物特异性差异的特定残基。将P450IA1的一种主要底物3-甲基胆蒽放入所提出的活性位点,这种平面芳香分子可以容纳在可用的腔内。确定了可能与血红素相互作用的残基。59种真核生物酶之间的序列相似性以树状图表示,总体上是根据基因家族聚类的。在获得晶体结构之前,这项模型构建研究确定了细胞色素P450中对这些酶功能重要的潜在残基,这些残基是定点诱变的候选对象。

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