一类新的除草剂取代DHP衍生物的合成、分子对接及广泛的构效关系

Akansha Agrwal, A. Verma, Neelam Chantola, S. Verma, V. Kasana
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引用次数: 3

摘要

摘要以硼酸为催化剂,在无溶剂条件下合成了22个二氢吡啶(DHP)衍生物。经FTIR、1HNMR和13CNMR分析证实。利用人工神经网络(相关系数R2) 0.8611,平均标准误差0.19)和比较分子场分析(CoMFA)(相关系数R2 0.713,平均标准误差0.27)对合成的所有衍生物进行定量构效关系分析。利用“AUTODOCK VINA”软件对从“RCSB蛋白数据库”中获取的“乙酰羟基酸合酶蛋白受体(PDB代码1YHZ)”进行分子对接活性测试。对接实验表明,合成的DHP衍生物与结合能显著的蛋白受体具有良好的相互作用。对合成的衍生物进行了萌发前除草活性筛选,计算了IC50值,并与丁草胺进行了活性比较,结果表明,合成的衍生物均具有显著的除草活性。对合成的化合物进行了羽化后除草活性的筛选,并将DHPs的除草活性与penoxulum进行了比较。所有合成的化合物均表现出良好至中等的活性。因此,取代的DHP衍生物可能是潜在的除草剂。图形抽象
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Synthesis, molecular docking and extensive structure activity relationship of substituted DHP derivatives: a new class of herbicides
Abstract In the present study, twenty-two derivatives of dihydropyridine (DHP) have been synthesized using the Boric acid catalyst in solventless conditions. The synthesis was confirmed by FTIR analysis, 1HNMR, and 13CNMR analysis. The quantitative structure-activity relationship for all the synthesized derivatives was performed using an artificial neural network with correlation coefficient (R2) 0.8611, mean standard error 0.19, and Comparative molecular field analysis (CoMFA) with correlation coefficient (R2) 0.713, mean standard error 0.27. The molecular docking activity of synthesized compounds was tested using “AUTODOCK VINA” against “Acetohydroxyacid synthase protein receptors (PDB code 1YHZ)” acquired from the “RCSB Protein Data Bank”. Docking experiments demonstrated favorable interaction among synthesized DHP derivatives and protein receptors with significant binding energy values. These synthesized derivatives have been screened for their pre-emergence herbicidal bioassay against weed species Echinochola crus galli, and the IC50 value were calculated and activity was compared with Butachlor, significant activity was exhibited by all the derivatives. All the synthesized compounds were also screened for their post emergence herbicidal activity against Echinochola crus galli, and the activity of DHPs were compared with penoxulum. All the synthesized compounds show good to moderate activity. Thus, it is concluded that substituted DHP derivatives may be developed as potential herbicides. Graphical Abstract
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