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Unique Neonicotinoid Binding Conformations Conferring Selective Receptor Interactions

机译:独特的新烟碱类结合构象,赋予选择性受体相互作用。

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Neonicotinoid agonists selectively act on the insect nicotinic acetylcholine receptor (nAChR). The molecular basis for this specificity is deciphered by comparisons of two acetylcholine binding proteins (AChBPs) with distinct pharmacological profiles that serve as structural homologues for the nAChR subtypes. Aplysia AChBP has high neonicotinoid sensitivity, whereas Lymnaea AChBP has low neonicotinoid sensitivity, pharmacologies reminiscent of insect and vertebrate nAChR subtypes, respectively. The ligand-receptor interactions for these AChBPs were established by chemical and structural neurobiology approaches. Neonicotinoids and nicotinoids bind in a single conformation with Aplysia AChBP, wherein the electronegative nitro or cyano pharmacophore of the neonicotinoid faces in a reversed orientation relative to the cationic nicotinoid functionality. For Lymnaea AChBP, the neonicotinoids have two binding conformations in this vertebrate receptor model, which are completely inverted relative to each other, whereas nicotinoids are nestled in only one conserved conformation. Therefore, the unique binding conformations of nicotinic agonists determine the selective receptor interactions.
机译:新烟碱类激动剂选择性地作用于昆虫的烟碱型乙酰胆碱受体(nAChR)。通过比较具有不同药理学特征的两种乙酰胆碱结合蛋白(AChBP),可以解释这种特异性的分子基础,所述药理学特征可以作为nAChR亚型的结构同源物。海藻AChBP具有较高的新烟碱敏感性,而Lymnaea AChBP具有较低的新烟碱敏感性,其药理作用分别让人联想到昆虫和脊椎动物的nAChR亚型。这些AChBP的配体-受体相互作用是通过化学和结构神经生物学方法建立的。新烟碱和烟碱与海藻AChBP以单一构象结合,其中新烟碱的负电硝基或氰基药效团相对于阳离子烟碱官能团的方向相反。对于Lymnaea AChBP,新烟碱在该脊椎动物受体模型中具有两个结合构象,它们相对于彼此完全颠倒,而烟碱样物仅嵌套在一个保守的构象中。因此,烟碱激动剂的独特结合构象决定了选择性受体相互作用。

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