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首页> 外文期刊>Protein engineering design & selection: PEDS >A mixture of three engineered phosphotriesterases enables rapid detoxification of the entire spectrum of known threat nerve agents
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A mixture of three engineered phosphotriesterases enables rapid detoxification of the entire spectrum of known threat nerve agents

机译:三种工程化磷酸二氢酶的混合物能够快速排毒的已知威胁神经药物的整个光谱

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摘要

Nerve agents are organophosphates (OPs) that potently inhibit acetylcholinesterase, and their enzymatic detoxification has been a long-standing goal. Nerve agents vary widely in size, charge, hydrophobicity and the cleavable ester bond. A single enzyme is therefore unlikely to efficiently hydrolyze all agents. Here, we describe a mixture of three previously developed variants of the bacterial phosphotriesterase (Bd-PTE) that are highly stable and nearly sequence identical. This mixture enables effective detoxification of a broad spectrum of known threat agents-GA (tabun), GB (sarin), GD (soman), GF (cyclosarin), VX and Russian-VX. The potential for dimer dissociation and exchange that could inactivate Bd-PTE has minimal impact, and the three enzyme variants are as active in a mixture as they are individually. To our knowledge, this engineered enzyme 'cocktail' comprises the first solution for enzymatic detoxification of the entire range of threat nerve agents.
机译:神经毒剂是能有效抑制乙酰胆碱酯酶的有机磷酸盐(OPs),其酶解解毒一直是一个长期的目标。神经毒剂在大小、电荷、疏水性和可切割酯键方面存在很大差异。因此,单一酶不可能有效水解所有试剂。在此,我们描述了三种先前开发的细菌磷酸三酯酶(Bd-PTE)变体的混合物,它们高度稳定且几乎序列相同。这种混合物能够有效地解毒广谱已知的威胁剂GA(塔邦)、GB(沙林)、GD(梭曼)、GF(环沙林)、VX和俄罗斯VX。二聚体解离和交换可能使Bd PTE失活的可能性影响最小,三种酶变体在混合物中的活性与它们各自的活性一样。据我们所知,这种工程酶“鸡尾酒”是第一种酶解所有威胁神经毒剂的溶液。

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