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首页> 外文期刊>Clinical Pharmacology and Therapeutics >Novel nerve-agent antidote design based on crystallographic and mass spectrometric analyses of tabun-conjugated acetylcholinesterase in complex with antidotes.
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Novel nerve-agent antidote design based on crystallographic and mass spectrometric analyses of tabun-conjugated acetylcholinesterase in complex with antidotes.

机译:新型的神经毒剂解毒剂设计,基于结合了解毒剂的塔博恩偶联乙酰胆碱酯酶的晶体学和质谱分析。

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摘要

Organophosphorus compound-based nerve agents inhibit the essential enzyme acetylcholinesterase (AChE) causing acute toxicity and death. Clinical treatment of nerve-agent poisoning is to use oxime-based antidotes to reactivate the inhibited AChE. However, the nerve agent tabun is resistant to oximes. To design improved oximes, crystal structures of a tabun-conjugated AChE in complex with different oximes are needed to guide the structural modifications of known antidotes. However, this type of structure is extremely challenging to obtain because both deamidation of the tabun conjugate and reactivation of AChE occur during crystallographic experiments. Here we report, for the first time, the crystal structures of Ortho-7 and HLo-7 in complex with AChE that is conjugated to an intact tabun. These structures were determined by our new strategy of combining crystallographic and mass spectrometric analyses of AChE crystals. The results explain the relative reactivation potencies of the two oximes and offer insights into improving known medical antidotes.
机译:基于有机磷化合物的神经毒剂抑制必需的酶乙酰胆碱酯酶(AChE),导致急性毒性和死亡。神经毒剂中毒的临床治疗方法是使用基于肟的解毒剂重新激活受抑制的AChE。但是,神经毒药塔邦对肟具有抗性。为了设计改进的肟,需要与不同的肟复合的禁忌烟碱共轭乙酰胆碱酯酶的晶体结构,以指导已知解毒剂的结构修饰。但是,要获得这种类型的结构极具挑战性,因为在结晶学实验中会同时发生塔布恩偶联物的脱酰胺作用和AChE的重新活化。在这里,我们首次报道了与完整的塔布恩共轭的AChE与Ortho-7和HLo-7的晶体结构。这些结构是由我们结合AChE晶体的晶体学和质谱分析的新策略确定的。结果解释了两种肟的相对再活化潜能,并为改善已知的解毒剂提供了见识。

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