Design and synthesis of novel insecticidal 3-isothiazolols as potential antagonists of insect GABA receptors†

IF 2.5 3区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY
Zihang Ye, Congwei Zhou, Minghong Jiang, Xiaogang Luo, Fengshou Wu, Zhiqiang Xu, Qi Sun and Genyan Liu
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Abstract

The ionotropic γ-aminobutyric acid (GABA) receptor (iGABAR) is an important target of agricultural insecticides. Our previous studies indicated that competitive antagonists (CAs) of iGABARs have potential to be insecticides with a novel mechanism of action, and 3-isothiazolol might be used as a basic scaffold of iGABAR CA for further structural modification. Here, we designed and synthesized a novel series of 4-(3-pyrrolidinyl/4-piperidinyl)-3-isothiazolol (5-SPI) analogs with various aromatic substituents at the 5-position of the isothiazole ring. These target 5-SPIs exhibited good insecticidal activity against Drosophila melanogaster and Spodoptera litura, especially 9j and 15g, with 100% and >85% mortality against D. Melanogaster at 100 mg L−1 and with nearly 95% and >80% mortality against S. litura at 100 mg kg−1 diet, respectively. Pesticide-likeness and toxicity predictions revealed that compounds 9j and 15g were well within the reasonable range of pesticide-likeness properties and may be non-toxic to honey bees and humans. Molecular docking studies indicated that the hydroxyl group of the isothiazole ring of 9j and 15g could form hydrogen bonds with R53 and S118 of the D. Melanogaster iGABAR model, respectively, and the amino group of the nitrogen heterocyclic substituent could form a hydrogen bond with E146. These interactions might be significant for the binding of target 5-SPIs with insect iGABARs. The findings of the present study might provide useful information for further designing and developing novel iGABAR-targeting insecticides.

Abstract Image

作为昆虫 GABA 受体潜在拮抗剂的新型杀虫 3-Isothiazolols 的设计与合成
离子型γ-氨基丁酸(GABA)受体(iGABAR)是农用杀虫剂的一个重要靶标。我们以前的研究表明,iGABARs 的竞争性拮抗剂(CAs)有可能成为具有新作用机制的杀虫剂,3-异噻唑啉酮可作为 iGABAR CA 的基本支架,用于进一步的结构修饰。在此,我们设计并合成了一系列新型 4-(3-吡咯烷基/4-哌啶基)-3-异噻唑啉酮(5-SPI)类似物,这些类似物在异噻唑环的 5 位上具有不同的芳香取代基。这些目标 5-SPI 对黑腹果蝇和斑翅蚜具有良好的杀虫活性,尤其是 9j 和 15g,在 100 毫克/升的剂量下,对黑腹果蝇的致死率分别为 100%和 85%;在 100 毫克/千克食物的剂量下,对斑翅蚜的致死率分别接近 95%和 80%。农药亲和性和毒性预测表明,化合物 9j 和 15g 的农药亲和性处于合理范围,可能对蜜蜂和人类无毒。分子对接研究表明,9j 和 15g 中异噻唑环的羟基可分别与黑腹滨蝽 iGABAR 模型的 R53 和 S118 形成氢键,氮杂环取代基的氨基可与 E146 形成氢键。这些相互作用可能对目标 5-SPI 与昆虫 iGABAR 的结合具有重要意义。本研究的发现可为进一步设计和开发新型 iGABAR 靶向杀虫剂提供有用信息。
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来源期刊
New Journal of Chemistry
New Journal of Chemistry 化学-化学综合
CiteScore
5.30
自引率
6.10%
发文量
1832
审稿时长
2 months
期刊介绍: A journal for new directions in chemistry
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