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Crystal structures of Lymnaea stagnalis AChBP in complex with neonicotinoid insecticides imidacloprid and clothianidin

机译:与新烟碱类杀虫剂吡虫啉和可比安定配合使用时剑豆AChBP的晶体结构

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摘要

Neonicotinoid insecticides, which act on nicotinic acetylcholine receptors (nAChRs) in a variety of ways, have extremely low mammalian toxicity, yet the molecular basis of such actions is poorly understood. To elucidate the molecular basis for nAChR–neonicotinoid interactions, a surrogate protein, acetylcholine binding protein from Lymnaea stagnalis (Ls-AChBP) was crystallized in complex with neonicotinoid insecticides imidacloprid (IMI) or clothianidin (CTD). The crystal structures suggested that the guanidine moiety of IMI and CTD stacks with Tyr185, while the nitro group of IMI but not of CTD makes a hydrogen bond with Gln55. IMI showed higher binding affinity for Ls-AChBP than that of CTD, consistent with weaker CH–π interactions in the Ls-AChBP–CTD complex than in the Ls-AChBP–IMI complex and the lack of the nitro group-Gln55 hydrogen bond in CTD. Yet, the NH at position 1 of CTD makes a hydrogen bond with the backbone carbonyl of Trp143, offering an explanation for the diverse actions of neonicotinoids on nAChRs.
机译:新烟碱类杀虫剂以多种方式作用于烟碱样乙酰胆碱受体(nAChRs),具有极低的哺乳动物毒性,但对此类作用的分子基础了解甚少。为了阐明nAChR与新烟碱类药物相互作用的分子基础,将一种替代蛋白,即取自阔叶莲的乙酰胆碱结合蛋白(Ls-AChBP)与新烟碱类杀虫剂吡虫啉(IMI)或可尼丁(CTD)形成复合物。晶体结构表明,IMI和CTD的胍基与Tyr185堆积,而IMI的硝基而不是CTD与Gln55形成氢键。 IMI对Ls-AChBP的结合亲和力比CTD高,这与Ls-AChBP-CTD复合体中的CH-π相互作用弱于Ls-AChBP-IMI复合体和缺乏硝基-Gln55氢键相一致。 CTD。然而,CTD位置1的NH与Trp143的骨架羰基形成氢键,这为新烟碱类化合物对nAChRs的多种作用提供了解释。

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