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对黑胫露尾甲电压敏感钠通道结构的洞察以及选择最佳拟除虫菊酯配体的尝试。

Insight into the Meligethes aeneus voltage-sensitive sodium channel structure and an attempt to select the best pyrethroid ligands.

作者信息

Obrępalska-Stęplowska Aleksandra, Czerwoniec Anna, Wieczorek Przemysław, Wrzesińska Barbara

机构信息

Interdepartmental Laboratory of Molecular Biology, Institute of Plant Protection - National Research Institute, Poznań, Poland.

Bioinformatics Laboratory, Institute of Molecular Biology and Biotechnology, Adam Mickiewicz University, Poznań, Poland.

出版信息

Pest Manag Sci. 2016 Jan;72(1):162-71. doi: 10.1002/ps.3984. Epub 2015 Feb 27.

Abstract

BACKGROUND

The voltage-sensitive sodium channel (VSSC) is a target for the pharmacological action of pyrethroids which are used in controlling pests, including those of agricultural importance. Among these is the pollen beetle (Meligethes aeneus F.) - the most serious pest of Brassica napus. Owing to the heavy use of pyrethroids, a widespread build-up of resistance has occurred. The main cause of pyrethroid insensitivity in M. aeneus is considered to be an increased oxidative metabolism; however, the additional mechanism of resistance associated with mutations in the VSSC might contribute to this phenomenon.

RESULTS

We generated a VSSC 3D model to study the docking affinities of pyrethroids to their target site within the channel. Our goal was to identify the pyrethroids for which docking affinity scores were high and not affected by potential mutations in the VSSC. We found that the docking scores of cypermethrin are hardly influenced by the appearance of point mutations. Additionally, tau-fluvalinate, deltamethrin and bifenthrin are VSSC ligands with high affinity scores.

CONCLUSIONS

Our docking models suggest that point mutations in the VSSC binding pocket might affect the stability of ligand interactions and change the pattern of ligand docking locations, which might have a potential effect on VSSC gating properties.

摘要

背景

电压敏感钠通道(VSSC)是拟除虫菊酯类药物作用的靶点,拟除虫菊酯用于控制害虫,包括具有农业重要性的害虫。其中有花粉甲虫(Meligethes aeneus F.)——甘蓝型油菜最严重的害虫。由于拟除虫菊酯的大量使用,已出现广泛的抗性增强现象。在花粉甲虫中,拟除虫菊酯不敏感的主要原因被认为是氧化代谢增加;然而,与VSSC突变相关的额外抗性机制可能导致了这种现象。

结果

我们生成了一个VSSC三维模型,以研究拟除虫菊酯类药物与其在通道内的靶点部位的对接亲和力。我们的目标是识别对接亲和力得分高且不受VSSC潜在突变影响的拟除虫菊酯类药物。我们发现,氯氰菊酯的对接得分几乎不受点突变出现的影响。此外,氟胺氰菊酯、溴氰菊酯和联苯菊酯是具有高亲和力得分的VSSC配体。

结论

我们的对接模型表明,VSSC结合口袋中的点突变可能影响配体相互作用的稳定性,并改变配体对接位置的模式,这可能对VSSC门控特性产生潜在影响。

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