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昆虫γ-氨基丁酸受体与异噁唑啉类杀虫剂:相对于 [³H]氟虫腈、[³H]-4'-乙炔基-4-正丙基双环[2.2.2]辛-2-烯酸酯和[³H]阿维菌素结合位点的毒理学特征。

Insect γ-aminobutyric acid receptors and isoxazoline insecticides: toxicological profiles relative to the binding sites of [³H]fluralaner, [³H]-4'-ethynyl-4-n-propylbicycloorthobenzoate, and [³H]avermectin.

机构信息

Environmental Chemistry and Toxicology Laboratory, Department of Environmental Science, Policy, and Management, University of California , Berkeley, California 94720-3112, United States.

出版信息

J Agric Food Chem. 2014 Feb 5;62(5):1019-24. doi: 10.1021/jf4050809. Epub 2014 Jan 24.

Abstract

Isoxazoline insecticides, such as fluralaner (formerly A1443), are noncompetitive γ-aminobutyric acid (GABA) receptor (GABA-R) antagonists with selective toxicity for insects versus mammals. The isoxazoline target in house fly ( Musca domestica ) brain has subnanomolar affinity for [³H]fluralaner and a unique pattern of sensitivity to isoxazolines and avermectin B(1a) (AVE) but not to fipronil and α-endosulfan. Inhibitor specificity profiles for 15 isoxazolines examined with Musca GABA-R and [³H]fluralaner, [³H]-4'-ethynyl-4-n-propylbicycloorthobenzoate ([³H]EBOB), and [³H]AVE binding follow the same structure-activity trends although without high correlation. The 3 most potent of the 15 isoxazolines tested in Musca [³H]fluralaner, [³H]EBOB, and [³H]AVE binding assays and in honeybee (Apis mellifera) brain [³H]fluralaner assays are generally those most toxic to Musca and four agricultural pests. Fluralaner does not inhibit [³H]EBOB binding to the human GABA-R recombinant β₃ homopentamer, which is highly sensitive to all of the commercial GABAergic insecticides. The unique isoxazoline binding site may resurrect the GABA-R as a major insecticide target.

摘要

异噁唑啉类杀虫剂,如氟虫腈(前体 A1443),是一种非竞争性γ-氨基丁酸(GABA)受体(GABA-R)拮抗剂,对昆虫具有选择性毒性,而对哺乳动物则毒性较低。家蝇(Musca domestica)脑中的异噁唑啉靶标对[³H]氟虫腈具有亚纳摩尔亲和力,对异噁唑啉和埃玛菌素 B(1a)(AVE)的敏感性具有独特的模式,但对氟虫腈和α-硫丹则不敏感。用 Musca GABA-R 和 [³H]氟虫腈、[³H]-4'-炔基-4-正丙基双环邻苯二甲酸酯 ([³H]EBOB) 和 [³H]AVE 结合研究了 15 种异噁唑啉的抑制剂特异性谱,尽管没有高度相关性,但遵循相同的结构-活性趋势。在 Musca [³H]氟虫腈、[³H]EBOB 和 [³H]AVE 结合测定以及蜜蜂(Apis mellifera)脑中[³H]氟虫腈测定中测试的 15 种异噁唑啉中最有效的 3 种通常对 Musca 和 4 种农业害虫最具毒性。氟虫腈不抑制[³H]EBOB 与人 GABA-R 重组β₃ 五聚体结合,而后者对所有商业 GABA 能杀虫剂均高度敏感。独特的异噁唑啉结合位点可能使 GABA-R 重新成为主要的杀虫剂靶标。

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