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通过分子模拟研究细胞色素 P450 活性部位的可塑性和多功能性。

Malleability and versatility of cytochrome P450 active sites studied by molecular simulations.

机构信息

Leiden-Amsterdam Centre for Drug Research, Division of Molecular and Computational Toxicology, The Netherlands.

出版信息

Curr Drug Metab. 2012 Feb;13(2):190-6. doi: 10.2174/138920012798918453.

Abstract

As the most important phase I drug metabolizing enzymes, the human Cytochromes P450 display an enormous versatility in the molecular structures of possible substrates. Individual isoforms may preferentially bind specific classes of molecules, but also within these classes, some isoforms show remarkable levels of promiscuity. In this work, we try to link this promiscuity to the versatility and malleability of the active site at the hand of examples from our own work. Mainly focusing on the flexibility of protein structures and the presence or absence of water molecules, we establish molecular reasons for observed promiscuity, determine the relevant factors to take into account when predicting binding poses and rationalize the role of individual interactions in the process of ligand binding. A high level of active site flexibility does not only allow for the binding of a large variety of substrates and inhibitors, but also appears to be important to facilitate ligand binding and unbinding.

摘要

作为最重要的 I 相药物代谢酶,人类细胞色素 P450 在可能的底物的分子结构中表现出巨大的多功能性。个别同工酶可能优先结合特定类别的分子,但即使在这些类别中,一些同工酶也表现出显著的混杂性。在这项工作中,我们试图通过我们自己工作中的例子将这种混杂性与活性位点的多功能性和可塑性联系起来。主要关注蛋白质结构的灵活性和水分子的存在与否,我们为观察到的混杂性确定分子原因,确定在预测结合构象时需要考虑的相关因素,并合理化在配体结合过程中各个相互作用的作用。高活性位点灵活性不仅允许结合各种不同的底物和抑制剂,而且似乎对于促进配体的结合和释放也很重要。

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