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The Preferable Binding Pose of Canonical Butyrylcholinesterase Substrates Is Unproductive for Echothiophate

机译:典型的丁酰胆碱酯酶底物的优选结合姿势对Echothiophate无效。

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摘要

In this paper, we, for the first time, describe the interaction between the butyrylcholinesterase enzyme and echothiophate, a popular model compound and an analogue of the chemical warfare agents VX and VR, at the atomistic level. Competition between the two echothiophate conformations in the active site was found using molecular modeling techniques. The first one is close to the mode of binding of the substrates of choline series (butyrylcholine and butyrylthiocholine) and is inhibitory, since it is unable to react with the enzyme. The second one is characterized by a significantly worse estimated binding affinity and is reactive. Thus, echothiophate combines the features of two types of inhibitors: competitive and suicidal. This observation will help clarify the kinetic reaction scheme in order to accurately assess the kinetic constants, which is especially important when designing new butyrylcholinesterase variants capable of full-cycle hydrolysis of organophosphorus compounds.
机译:在本文中,我们首次在原子水平上描述了丁酰胆碱酯酶和回声硫代磷酸酯(一种流行的模型化合物以及化学战剂VX和VR的类似物)之间的相互作用。使用分子建模技术发现了活性位点中两个超声硫代磷酸酯构象之间的竞争。第一个与胆碱系列底物(丁酰胆碱和丁酰硫代胆碱)的结合方式接近,并且具有抑制性,因为它无法与酶反应。第二个特征是估计的结合亲和力明显差并且是反应性的。因此,硫代硫酸盐结合了两种抑制剂的特征:竞争性和自杀性。该观察结果将有助于阐明动力学反应方案,以便准确评估动力学常数,这在设计能够有机磷化合物全循环水解的新丁酰胆碱酯酶变体时尤其重要。

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