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Rational Design and Screening Study of Novel Lead Compound Based on Acetohydroxyacid Synthase Structure

机译:基于乙酰羟酸合酶结构的新型先导化合物的合理设计与筛选研究

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摘要

Acetohydroxyacid synthase (AHAS) is a key target and has extensive application in the process of herbicide discovery. However, the problem of weed resistance is gradually serious with long-term excessive use of commercial AHAS-inhibiting herbicides, and so, it is urgent to develop novel herbicides. In this study, a virtual screening was performed based on the active site of AHAS. Then, the hit-10 compound with the IC_(50) value of 47.41 mg/L was selected as lead compound based on the biological testing. Subsequently, the optimization design and syntheses of lead compound were carried out according to the analyzing results of mechanism and receptor-/ligand-binding mode. Three novel 5-substituted benzyl-1,3,4-thiadiazol-2-carbamic acid phenyl ester derivatives were designed and synthesized. Bioactive assay results of the three target compounds showed that all of them displayed the higher inhibition than lead compound to AHAS, with the IC_(50) values in the 23.54-32.05 mg/L range, and the inhibition rates were increased by 30-50%. Finally, we also analyzed the possible inhibitory mechanism of the three target compounds based on the molecular docking between AHAS and target compounds. This study would provide a novel chemical structure for the discovery of novel AHAS herbicides.
机译:乙酰羟酸合酶(AHAS)是关键目标,在除草剂发现过程中具有广泛的应用。然而,随着长期过量使用商业上抑制AHAS的除草剂,抗杂草性的问题逐渐变得严重,因此,迫切需要开发新的除草剂。在这项研究中,基于AHAS的活性位点进行了虚拟筛选。然后,基于生物学测试,选择IC_(50)值为47.41 mg / L的hit-10化合物作为先导化合物。随后,根据机理和受体/配体结合方式的分析结果,进行了前导化合物的优化设计和合成。设计并合成了三种新颖的5-取代的苄基-1,3,4-噻二唑-2-氨基甲酸苯酯衍生物。三种目标化合物的生物活性测定结果表明,它们均显示出比铅化合物更高的对AHAS的抑制作用,IC_(50)值在23.54-32.05 mg / L范围内,抑制率提高了30-50 %。最后,我们还基于AHAS与目标化合物之间的分子对接分析了这三种目标化合物的可能抑制机制。该研究将为发现新型AHAS除草剂提供一种新颖的化学结构。

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