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The role of protein plasticity in computational rationalization studies on regioselectivity in testosterone hydroxylation by cytochrome P450 BM3 mutants

机译:蛋白可塑性在细胞色素P450 BM3突变体睾酮羟基化区域选择性的计算合理化研究中的作用

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摘要

Recently, it was found that mutations in the binding cavity of drug-metabolizing Cytochrome P450 BM3 mutants can result in major changes in regioselectivity in testosterone (TES) hydroxylation. In the current work, we report the intrinsic reactivity of TES' C-H bonds and our attempts to rationalize experimentally observed changes in TES hydroxylation using a protein structure-based in silico approach, by setting up and employing a combined Molecular Dynamics (MD) and ligand docking approach to account for the flexibility and plasticity of BM3 mutants. Using this approach, about 100,000 TES binding poses were obtained per mutant. The predicted regioselectivity in TES hydroxylation by the mutants was found to be in disagreement with experiment. As revealed in a detailed structural analysis of the obtained docking poses, this disagreement is due to limitations in correctly scoring hydrogen-bonding and steric interactions with specific active-site residues, which could explain the experimentally observed trends in regioselectivity in TES hydroxylation.
机译:最近,发现在药物代谢细胞色素P450 BM3突变体的结合腔中发生突变可导致睾丸激素(TES)羟基化的区域选择性发生重大变化。在当前的工作中,我们报告了TES的CH键的内在反应性,并尝试通过建立并采用分子动力学(MD)和配体相结合的方法,使用基于蛋白质结构的计算机方法合理化实验观察到的TES羟基化变化对接方法来考虑BM3突变体的灵活性和可塑性。使用该方法,每个突变体获得约100,000个TES结合姿势。发现突变体对TES羟基化的预测的区域选择性与实验不一致。正如对获得的对接位姿的详细结构分析所揭示的,这种分歧是由于正确刻划与特定活性位点残基的氢键和空间相互作用的局限性所致,这可以解释实验观察到的TES羟基化区域选择性的趋势。

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