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首页> 外文期刊>Pesticide Biochemistry and Physiology >Structure-activity relationship of imidazothiadiazole analogs for the binding to the ecdysone receptor of insect cells
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Structure-activity relationship of imidazothiadiazole analogs for the binding to the ecdysone receptor of insect cells

机译:咪唑并噻二唑类似物与昆虫细胞的蜕皮激素受体结合的构效关系

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摘要

Diacylhydrazines are the first non-steroidal ecdysone agonists, and five compounds are used as insecticides in agriculture. After the discovery of diacylhydrazine-type compounds, numerous non-steroidal structures were reported as ecdysone agonists. Among various ecdysone agonists, imidazothiadiazoles are reported to be very potent in vitro; however, the experimental detail for the structure identification and bioassays are not stated in the paper (Holmwood and Schindler, Bioorg. Med. Chem. 17, 40644070, 2009). In our present study, we synthesized 18 imidazothiadiazole-type compounds and confirmed the chemical structures by spectrometric analyses. The binding activity of the synthesized compounds to the ecdysone receptor was evaluated in terms of the concentration required for 50% inhibition of [H-3]ponasterone A incorporation [IC50 (M)] into lepidopteran (Sf-9), coleopteran (BCRL-Lepd-SL1), and dipteran (NIAS-AeAl2) cells. 6-(2-Chloropheny1)-2-(trifluoromethypimidazo[2,1-61 [1,3,41-thiadiazol-5-yl)acrylamide analogs with CONHR (secondary amide) were very potent against Sf-9 cells, but further alkylation (tertiary amide: CONR2) decreased the activity dramatically. Additionally, a primary amide analog (-CONH2) was inactive. The activity also decreased 150-fold by the saturation of olefin region of the acrylamide moiety. In addition, various substituents were introduced at the 2-position of the imidazothiadiazole ring to disclose the physicochemical properties of the substituents which are important for receptor binding. The activity increased by 7500-fold with the introduction of the CF2CF2CF3 group compared to the unsubstituted compound against Sf-9 cells. Quantitative structure-activity relationship analysis for these substituents indicated that hydrophobic and electron-withdrawing groups were favorable for binding. Some of the compounds with strong receptor binding activity showed good larvicidal activity against Spodoptera litura. In contrast, the binding affinity of imidazothiadiazole analogs was low or not observed against dipteran and coleopteran cells. (C) 2014 Elsevier Inc. All rights reserved.
机译:二酰基肼是第一种非甾体蜕皮激素激动剂,有五种化合物在农业中用作杀虫剂。发现二酰基肼类化合物后,据报道许多非甾体结构为蜕皮激素激动剂。据报道,在各种蜕皮激素激动剂中,咪唑并噻二唑在体外非常有效。然而,该论文没有说明用于结构鉴定和生物测定的实验细节(Holmwood and Schindler,Bioorg。Med。Chem。17,40644070,2009)。在本研究中,我们合成了18种咪唑并噻二唑类化合物,并通过光谱分析证实了其化学结构。根据抑制[H-3] ponasterone A掺入[IC50(M)]鳞翅目(Sf-9),鞘翅目(BCRL-)所需的浓度来评估合成化合物与蜕皮激素受体的结合活性。 Lepd-SL1)和二萜(NIAS-AeAl2)细胞。带有CONHR(仲酰胺)的6-(2-氯苯并1)-2-(三氟甲基吡唑并[2,1-61 [1,3,41-噻二唑-5-基]丙烯酰胺)类似物对Sf-9细胞非常有效,但进一步烷基化(叔酰胺:CONR2)大大降低了活性。另外,伯酰胺类似物(-CONH2)没有活性。通过丙烯酰胺部分的烯烃区域的饱和,活性也降低了150倍。另外,在咪唑并噻二唑环的2-位引入了各种取代基,以揭示这些取代基的物理化学性质对受体结合很重要。与未取代的化合物相比,CF2CF2CF3基团的引入使活性增加了7500倍。这些取代基的定量构效关系分析表明,疏水基团和吸电子基团有利于结合。一些具有强受体结合活性的化合物对斜纹夜蛾具有良好的杀幼虫活性。相反,咪唑并噻二唑类似物对二萜和鞘翅目细胞的结合亲和力低或未观察到。 (C)2014 Elsevier Inc.保留所有权利。

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