摘要
背景:γ-氨基丁酸(GABA)受体在昆虫的快速抑制神经传递中起着核心作用。针对昆虫GABA门控氯离子通道的几种杀虫剂被开发。重要耐狄氏剂GABA受体亚基(RDL)已被用来研究动作使用放射性药剂的网站,电生理和定点致突变性缝线。尽管这一重要的亚基容易形成功能强大的同源受体的表达时,剪接和RNA A-to-I编辑可以生成多种形式的受体。 方法:我们回顾了对天然和重组昆虫GABA门控氯离子通道的研究,它们与配体的orthosteric和变构位点相互作用和相互作用杀虫剂。由于GABA受体调节剂作用于L -谷氨酸门控氯通道,包括一些比较。 结果:在GABA的行动门控氯离子通道polychlorocycloalkanes、烷基酚、大环内酯类、苯基异恶唑啉,和metadiamides,描述和一个机制对这些杀虫剂类成员函数处理。讨论导致耐药性的突变,因为它们在开发现场诊断试验中很重要。有关的毒性问题针对GABA门控氯离子通道的杀虫剂也被处理。 概述了针对昆虫GABA门控氯离子通道的所有主要杀虫剂种类,提高了我们对这些重要受体及其杀虫剂结合位点的了解。然而,这本地GABA受体亚基组成仍然未知,研究阐明这是必要的。另外,确切的作用位点,最近推出的异恶唑啉和元二将B对利益的追求。
关键词: polychlorocycloalkanes、烷基酚、大环内酯类、苯基异恶唑啉,,metadiamides,杀虫剂,抗性,毒性,GABA受体。
Current Medicinal Chemistry
Title:Mechanisms of Action, Resistance and Toxicity of Insecticides Targeting GABA Receptors
Volume: 24 Issue: 27
关键词: polychlorocycloalkanes、烷基酚、大环内酯类、苯基异恶唑啉,,metadiamides,杀虫剂,抗性,毒性,GABA受体。
摘要: Background: γ-Aminobutyric acid (GABA) receptors play a central role in fast inhibitory neurotransmission in insects. Several classes of insecticides targeting insect GABA-gated chloride channels have been developed. The important resistant to dieldrin GABA receptor subunit (RDL) has been used to investigate insecticide sites of action using radioligands, electrophysiology and site-directed mutagenesis. Although this important subunit readily forms robust functional homomeric receptors when expressed, alternative splicing and RNA A-to-I editing can generate diverse forms of the receptor.
Methods: We have reviewed studies on native and recombinant insect GABA-gated chloride channels, their interactions with ligands acting at orthosteric and allosteric sites and their interactions with insecticides. Since some GABA receptor modulators act on L-glutamate-gated chloride channels, some comparisons are included.
Results: The actions on GABA-gated chloride channels of polychlorocycloalkanes, cyclodienes, macrocyclic lactones, phenylpyrazoles, isoxazolines, and metadiamides are described and the mechanisms of action of members of these insecticide classes are addressed. Mutations that lead to resistance are discussed as they can be important in developing field diagnostic tests. Toxicity issues relating to insecticides targeting GABA-gated chloride channels are also addressed.
An overview of all major insecticide classes targeting insect GABA-gated chloride channels has enhanced our understanding of these important receptors and their insecticide binding sites. However, the subunit composition of native GABA receptors remains unknown and studies to clarify this are needed. Also, the precise sites of action of the recently introduced isoxazolines and meta-diamides will be of interest to pursue.
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Cite this article as:
Mechanisms of Action, Resistance and Toxicity of Insecticides Targeting GABA Receptors, Current Medicinal Chemistry 2017; 24 (27) . https://dx.doi.org/10.2174/0929867324666170613075736
DOI https://dx.doi.org/10.2174/0929867324666170613075736 |
Print ISSN 0929-8673 |
Publisher Name Bentham Science Publisher |
Online ISSN 1875-533X |
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