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Predictive 3D modelling of the interactions of pyrethroids with the voltage-gated sodium channels of ticks and mites

机译:拟除虫菊酯与tick和螨的电压门控钠通道相互作用的预测性3D建模

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摘要

BACKGROUND: The pyrethroid insecticides are a very successful group of compounds that target invertebrate voltage-gated sodium channels and are widely used in the control of insects, ticks and mites. It is well established that some pyrethroids are good insecticides whereas others are more effective as acaricides. This species specificity is advantageous for controlling particular pest(s) in the presence of another non-target invertebrate, for example controlling the Varroa mite in honeybee colonies. RESULTS: We applied in silico techniques to compare the voltage-gated sodium channels of insects versus ticks and mites and their interactions with a range of pyrethroids and DDT analogues. We identified a single amino acid difference within the pyrethroid binding pocket of ticks/mites that may have significant impact on the effectiveness of pyrethroids as acaricides. Other individual amino acid differences within the binding pocket in distinct tick and mite species may provide a basis for future acaricidal selectivity. CONCLUSIONS: Three-dimensional modelling of the pyrethroid/DDT receptor site has led to a new hypothesis to explain the preferential binding of acaricidal pyrethroids to the sodium channels of ticks/mites. This is important for understanding pyrethroid selectivity and the potential effects of mutations that can give rise to resistance to pyrethroids in commercially-important pest species.
机译:背景:拟除虫菊酯类杀虫剂是非常成功的一组化合物,它们的目标是无脊椎动物的电压门控钠通道,并广泛用于控制昆虫,壁虱和螨虫。众所周知,一些拟除虫菊酯是良好的杀虫剂,而另一些则更有效。这种物种特异性对于在存在另一种非目标无脊椎动物的情况下控制特定害虫是有利的,例如在蜜蜂群落中控制螨虫。结果:我们采用计算机技术比较了昆虫,tick和螨的电压门控钠通道及其与一系列拟除虫菊酯和DDT类似物的相互作用。我们在tick /螨的拟除虫菊酯结合口袋中鉴定出单个氨基酸差异,这可能对拟除虫菊酯作为杀螨剂的有效性产生重大影响。在不同的tick和螨物种中,结合袋内的其他单个氨基酸差异可能为将来的杀螨选择性提供基础。结论:拟除虫菊酯/ DDT受体位点的三维模型导致了一个新的假说,以解释杀螨除虫菊酯与tick / mites钠通道的优先结合。这对于理解拟除虫菊酯的选择性以及可能引起商业上重要害虫物种对拟除虫菊酯的抗性的突变的潜在影响非常重要。

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