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MODELLING OF P450 ACTIVE SITE BASED ON CONSENSUS 3D STRUCTURES

机译:基于共识3D结构的P450活动站点建模

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P450 enzymes constitute a large superfamily of haem-thiolate proteins involved in the metabolism of numerous substrates such as drugs, carcinogens and sex hormones. Description of the structure of cytochrome P450 active sites is a key element to design better drugs. However, to date there are less than 150 known structures of P450 proteins. The generation of biologically meaningful 3D patterns or motifs from the simultaneous alignment of several P450 structures is a way of overcoming that lack of data. In order to address this problem, we investigated the simultaneous structural alignments of these proteins. Our new method is based on the comparison of sets of homologue proteins the 3D structures of which are known. Proteins are aligned according to the position of their haem groups. Then, from that multiple alignment, a consensus 3D template is produced providing information concerning atom and chemical group positions as well as cavity location. Experiments on human CYP17 show that these templates contain biologically significant patterns and highlight residues involved in catalytic reactions. Moreover, our 3D templates prove consistent with models of CYP17 active sites generated independently. Therefore, these 3D templates could be exploited for drug design.
机译:P450酶构成了血红素硫醇盐蛋白的大型超家族,涉及许多底物(例如药物,致癌物和性激素)的代谢。细胞色素P450活性位点结构的描述是设计更好药物的关键要素。但是,迄今为止,已知的P450蛋白结构少于150种。从多个P450结构的同时对齐产生生物学上有意义的3D模式或图案是一种克服数据不足的方法。为了解决这个问题,我们研究了这些蛋白质的同时结构比对。我们的新方法基于对3D结构已知的同源蛋白集合的比较。蛋白质根据其血红素基团的位置排列。然后,从该多重比对中,生成了一个共识3D模板,该模板提供了有关原子和化学基团位置以及空穴位置的信息。对人CYP17的实验表明,这些模板包含生物学上显着的模式,并突出了参与催化反应的残基。此外,我们的3D模板证明与独立生成的CYP17活性位点的模型一致。因此,可以将这些3D模板用于药物设计。

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