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Comparative docking studies of CYP1b1 and its PCG-associated mutant forms

机译:CYP1b1及其PCG相关突变体形式的比较对接研究

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摘要

Molecular docking has been used to compare and contrast the binding modes of oestradiol with the wild-type and some disease-associated mutant forms of the human CYP1b1 protein. The receptor structures used for docking were derived from molecular dynamics simulations of homology-modelled structures. Earlier studies involving molecular dynamics and principal component analysis indicated that mutations could have a disruptive effect on function, by destabilizing the native properties of the functionally important regions, especially those of the haem-binding and substrate-binding regions, which constitute the site of catalytic activity of the enzyme. In order to gain more insights into the possible differences in substrate-binding and catalysis between the wild-type and mutant proteins, molecular docking studies were carried out. Mutants showed altered protein-ligand interactions compared with the wild-type as a consequence of changes in the geometry of the substrate-binding region and in the position of haem relative to the active site. An important difference in ligand-protein interactions between the wild-type and mutants is the presence of stacking interaction with phenyl residues in the wild-type, which is either completely absent or considerably weaker in mutants. The present study revealed essential differences in the interactions between ligand and protein in wild-type and disease mutants, and helped in understanding the deleterious nature of disease mutations at the level of molecular function.
机译:分子对接已用于比较和对比雌二醇与人CYP1b1蛋白的野生型和某些与疾病相关的突变体形式的结合方式。用于对接的受体结构源自同源建模结构的分子动力学模拟。较早的涉及分子动力学和主成分分析的研究表明,突变可能通过破坏功能重要区域(尤其是血红素结合区和底物结合区的天然属性)的稳定性而破坏其功能,后者构成催化位点酶的活性。为了更深入地了解野生型和突变型蛋白之间底物结合和催化作用的可能差异,进行了分子对接研究。与底物结合区域的几何形状和血红素相对于活性位点的位置变化相比,突变体显示出与野生型相比蛋白质-配体相互作用发生了变化。野生型和突变体之间的配体-蛋白质相互作用的一个重要区别是,与野生型中的苯基残基的堆积相互作用的存在,突变体中完全不存在或弱得多。本研究揭示了野生型和疾病突变体中配体与蛋白质之间相互作用的本质差异,并有助于在分子功能水平上理解疾病突变的有害性质。

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