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首页> 外文期刊>Journal of Biomolecular Structure and Dynamics >Asymmetric biodegradation of the nerve agents Sarin and VX by human dUTPase: chemometrics, molecular docking and hybrid QM/MM calculations
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Asymmetric biodegradation of the nerve agents Sarin and VX by human dUTPase: chemometrics, molecular docking and hybrid QM/MM calculations

机译:人抑制的神经药物和Vx的不对称生物降解:化学测定学,分子对接和杂交QM / mm计算

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摘要

Organophosphorus compounds (OP) nerve agents are among the most toxic chemical substances known. Their toxicity is due to their ability to bind to acetylcholinesterase. Currently, some enzymes, such as phosphotriesterase, human serum paraoxonase 1 and diisopropyl fluorophosphatase, capable of degrading OP, have been characterized. Regarding the importance of bioremediation methods for detoxication of OP, this work aims to study the interaction modes between the human human deoxyuridine triphosphate nucleotidohydrolase (dUTPase) and Sarin and VX, considering their R-p and S-p enantiomers, to evaluate the asymmetric catalysis of those compounds. In previous work, this enzyme has shown good potential to degrade phosphotriesters, and based on this characteristic, we have applied the human dUTPase to the OP degradation. Molecular docking, chemometrics and mixed quantum and molecular mechanics calculations have been employed, showing a good interaction between dUTPase and OP. Two possible reaction mechanisms were tested, and according to our theoretical results, the catalytic degradation of OP by dUTPase can take place via both mechanisms, beyond being stereoselective, that is, dUTPase cleaves one enantiomer preferentially in relation to other. Chemometric techniques provided excellent assistance for performing this theoretical investigation. The dUTPase study shows importance by the fact of it being a human enzyme.Communicated by Ramaswamy H. Sarma
机译:有机磷化合物(OP)神经剂是已知的最有毒的化学物质之一。它们的毒性是由于它们能够与乙酰胆碱酯酶结合。目前,已经表征了一些能够降解OP的磷酸二酯酶,人血清氧化酶1和二异丙基氟磷酸酶等酶。关于OP解毒方法的重要性,考虑到其R-P和S-P对映体,研究人体脱氧嘌呤三磷酸三磷酸核苷酸酶(抑制酶)和SARIN和VX之间的相互作用模式。评估这些化合物的不对称催化。在以前的工作中,这种酶已经显示出良好的潜力,以降解光幻纤维,并且基于这种特性,我们将人的抑制酶应用于op降解。采用分子对接,化学计量学和混合量子和分子力学计算,显示致命酶和OP之间的良好相互作用。测试了两种可能的反应机制,并根据我们的理论结果,通过utepase的催化降解可以通过两个机制发生,除了立体选择,即utPase优先与其他对映体粘连。化学计量技术为执行这种理论调查提供了很好的帮助。 Dutpase的研究表明它是由ramaswamy H. Sarma成为人类enzyme的事实的重要性

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