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作为 A 型神经毒剂抑制的人乙酰胆碱酯酶的重激活剂的曼尼希酚的分子建模。

Molecular modeling of Mannich phenols as reactivators of human acetylcholinesterase inhibited by A-series nerve agents.

机构信息

Laboratory of Molecular Modeling Applied to Chemical and Biological Defense (LMCBD), Military Institute of Engineering, 22290-270, Rio de Janeiro, RJ, Brazil.

TNO Department CBRN Protection, Lange Kleiweg 137, 2288GJ, Rijswijk, the Netherlands.

出版信息

Chem Biol Interact. 2023 Sep 1;382:110622. doi: 10.1016/j.cbi.2023.110622. Epub 2023 Jul 12.

Abstract

The A-series is the most recent generation of chemical warfare nerve agents (CWA) which act directly on the inhibition of the human acetylcholinesterase (HssAChE) enzyme. These compounds lack accurate experimental data on their physicochemical properties, and there is no evidence that traditional antidotes effectively reactivate HssAChE inhibited by them. In the search for potential antidotes, we employed virtual screening, molecular docking, and molecular dynamics (MD) simulations for the theoretical assessment of the performance of a library of Mannich phenols as potential reactivators of HssAChE inhibited by the Novichok agents A-230, A-232, and A-234, in comparison with the commercial oximes pralidoxime (2-PAM), asoxime (HI-6), trimedoxime (TMB-4), and obidoxime. Following the near-attack conformation (NAC) approach, our results suggest that the compounds assessed would face difficulties in triggering the proposed nucleophilic in-line displacement mechanism. Despite this, it was observed that certain Mannich phenols presented similar or superior results to those obtained by reference oximes against A-232 and A-234 model, suggesting that these compounds can adopt more favourable conformations. Additional binding energy calculations confirmed the stability of the model/ligands complexes and the reactivating potential observed in the molecular docking and MD studies. Our findings indicate that the Mannich phenols could be alternative antidotes and that their efficacy should be evaluated experimentally against the A-series CWA.

摘要

A 系列是最新一代的化学战剂神经毒剂(CWA),直接作用于人类乙酰胆碱酯酶(HssAChE)的抑制。这些化合物缺乏关于其物理化学性质的准确实验数据,也没有证据表明传统解毒剂能有效地使它们抑制的 HssAChE 重新激活。在寻找潜在解毒剂的过程中,我们采用了虚拟筛选、分子对接和分子动力学(MD)模拟,对作为潜在 HssAChE 重激活剂的曼尼希酚库进行了理论评估,这些化合物是针对 A-230、A-232 和 A-234 等 Novichok 制剂抑制的,与商业肟类化合物如派拉肟(2-PAM)、阿索肟(HI-6)、三甲肟(TMB-4)和奥贝肟相比。根据近攻击构象(NAC)方法,我们的结果表明,所评估的化合物在触发所提议的亲核直线取代机制方面可能会遇到困难。尽管如此,我们观察到某些曼尼希酚类化合物对 A-232 和 A-234 模型的效果与参考肟类化合物相似或更好,这表明这些化合物可以采取更有利的构象。额外的结合能计算证实了模型/配体复合物的稳定性,以及分子对接和 MD 研究中观察到的重激活潜力。我们的研究结果表明,曼尼希酚类化合物可能是替代解毒剂,其对 A 系列 CWA 的疗效应进行实验评估。

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