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首页> 外文期刊>Journal of neurogenetics >Ion channels as insecticide targets
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Ion channels as insecticide targets

机译:离子通道作为杀虫剂靶标

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Ion channels remain the primary target of most of the small molecule insecticides. This review examines how the subunit composition of heterologously expressed receptors determines their insecticide-specific pharmacology and how the pharmacology of expressed receptors differs from those found in the insect nervous system. We find that the insecticide-specific pharmacology of some receptors, like that containing subunits of the Rdl encoded GABA receptor, can be reconstituted with very few of the naturally occurring subunits expressed. In contrast, workers have struggled even to express functional insect nicotinic acetylcholine receptors (nAChRs), and work has therefore often relied upon the expression of vertebrate receptor subunits in their place. We also examine the extent to which insecticide-resistance-associated mutations, such as those in the para encoded voltage-gated sodium channel, can reveal details of insecticide-binding sites and mode of action. In particular, we examine whether mutations are present in the insecticide-binding site and/or at sites that allosterically affect the drug preferred conformation of the receptor. We also discuss the ryanodine receptor as a target for the recently developed diamides. Finally, we examine the lethality of the genes encoding these receptor subunits and discuss how this might determine the degree of conservation of the resistance-associated mutations found.
机译:离子通道仍然是大多数小分子杀虫剂的主要目标。本文探讨了异源表达受体的亚基组成如何决定其杀虫剂特异性药理学,以及表达受体的药理学与昆虫神经系统中发现的受体有何不同。我们发现,某些受体的杀虫剂特异性药理学,如含有Rdl编码的GABA受体亚基的受体,可以用很少的天然亚基表达来重组。相比之下,工人们甚至难以表达功能性昆虫烟碱乙酰胆碱受体(nAChRs),因此工作往往依赖于脊椎动物受体亚基的表达。我们还研究了杀虫剂耐药性相关突变的程度,例如para编码的电压门控钠通道中的突变,可以揭示杀虫剂结合位点和作用方式的细节。特别是,我们检查在杀虫剂结合位点和/或变构影响受体的药物优选构象的位点是否存在突变。我们还讨论了ryanodine受体作为最近开发的二酰胺的靶标。最后,我们检查了编码这些受体亚基的基因的致死率,并讨论了这如何确定所发现的抗性相关突变的保守程度。

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