Key Laboratory of Pesticide Chemistry and Application, Ministry of Agriculture, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing 100193, China.
J Agric Food Chem. 2010 Dec 22;58(24):12817-21. doi: 10.1021/jf1032284. Epub 2010 Nov 29.
In biological systems, bivalent ligands often possess increased functional affinity for their receptors compared with monovalent ligands. On the basis of the structure of acetylcholinesterase (AChE), a series of novel carbamate heterodimetic derivatives were designed and synthesized with the aim of increasing the potency toward AChE inhibition. The AChE inhibitory ability of all the novel compounds was tested using AChE obtained from the brain of the housefly. The bioassay results showed that compounds 6j, 6k, 6m, 6n, 6p, and 6q had increased inhibitory activities in comparison with parent phenyl N-methylcarbamate (MH) at the concentration of 100 mg/L. Among them, the most potent AChE inhibitor of these compounds was 6q (IC(50) = 12 μM), which showed 62-fold greater AChE inhibitory activity than that of MH and 12-fold greater activity than metolcarb (MT), which suggested that the 3-nitrophenoxy moiety of compound 6q was able to interact with the aromatic amino acid residues lining the gorge and the phenyl N-methylcarbamate moiety was able to interact with the catalytic sites of AChE, simultaneously. The insecticidal activities of compounds 6j, 6k, 6m, 6n, 6p, and 6q were further evaluated. Consistent with the result in vitro bioassay, those compounds demonstrated better activities against Lipaphis erysimi than parent compound MH at the concentration of 300 mg/L, and compound 6q showed the best insecticidal activity, causing 98% mortality after 24 h of treatment.
在生物体系中,二价配体通常比单价配体对其受体具有更高的功能亲和力。基于乙酰胆碱酯酶 (AChE) 的结构,设计并合成了一系列新型氨基甲酸酯杂二聚衍生物,旨在提高对 AChE 抑制的效力。使用家蝇脑中获得的 AChE 测试了所有新型化合物的 AChE 抑制能力。生物测定结果表明,与母体苯基 N-甲基氨基甲酸酯 (MH) 相比,化合物 6j、6k、6m、6n、6p 和 6q 在 100mg/L 浓度下具有增强的抑制活性。其中,这些化合物中最有效的 AChE 抑制剂是 6q(IC50=12μM),其对 AChE 的抑制活性比 MH 高 62 倍,比 MT 高 12 倍,这表明化合物 6q 的 3-硝基苯氧基部分能够与峡谷中排列的芳香族氨基酸残基相互作用,而苯基 N-甲基氨基甲酸酯部分能够与 AChE 的催化部位相互作用。进一步评价了化合物 6j、6k、6m、6n、6p 和 6q 的杀虫活性。与体外生物测定结果一致,这些化合物在 300mg/L 浓度下对李蚜比母体化合物 MH 表现出更好的活性,化合物 6q 表现出最好的杀虫活性,处理 24 小时后死亡率达到 98%。