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Nerve Agent Hydrolysis Activity Designed into a Human Drug Metabolism Enzyme

机译:设计成人类药物代谢酶的神经药水解活性

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摘要

Organophosphorus (OP) nerve agents are potent suicide inhibitors of the essential neurotransmitter-regulating enzyme acetylcholinesterase. Due to their acute toxicity, there is significant interest in developing effective countermeasures to OP poisoning. Here we impart nerve agent hydrolysis activity into the human drug metabolism enzyme carboxylesterase 1. Using crystal structures of the target enzyme in complex with nerve agent as a guide, a pair of histidine and glutamic acid residues were designed proximal to the enzyme's native catalytic triad. The resultant variant protein demonstrated significantly increased rates of reactivation following exposure to sarin, soman, and cyclosarin. Importantly, the addition of these residues did not alter the high affinity binding of nerve agents to this protein. Thus, using two amino acid substitutions, a novel enzyme was created that efficiently converted a group of hemisubstrates, compounds that can start but not complete a reaction cycle, into bona fide substrates. Such approaches may lead to novel countermeasures for nerve agent poisoning.
机译:有机磷(OP)神经毒剂是必需的神经递质调节酶乙酰胆碱酯酶的有效自杀抑制剂。由于它们的急性毒性,因此对开发有效的OP中毒对策有着极大的兴趣。在这里,我们将神经毒剂的水解活性赋予人类药物代谢酶羧酸酯酶1。以目标酶的晶体结构与神经毒剂配合为指导,在该酶的天然催化三联体附近设计了一对组氨酸和谷氨酸残基。暴露于沙林蛋白,梭曼蛋白和环沙林蛋白后,所得变异蛋白表现出显着提高的再活化速率。重要的是,添加这些残基不会改变神经毒剂对该蛋白的高亲和力结合。因此,使用两个氨基酸取代,创建了一种新型酶,该酶可以将一组半底物有效地转化为真正的底物,这些半底物可以启动但无法完成反应周期。这种方法可能导致神经毒剂中毒的新对策。

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