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通过整合分子对接、比较分子力场分析(CoMFA)、比较分子相似性指数分析(CoMSIA)和密度泛函理论(DFT)计算,基于嘧啶基苯甲酸酯作为乙酰羟酸合酶抑制剂的生物活性构象分析进行合理设计。

Rational design based on bioactive conformation analysis of pyrimidinylbenzoates as acetohydroxyacid synthase inhibitors by integrating molecular docking, CoMFA, CoMSIA, and DFT calculations.

作者信息

He Yan-Zhen, Li Yuan-Xiang, Zhu Xiao-Lei, Xi Zhen, Niu Congwei, Wan Jian, Zhang Li, Yang Guang-Fu

机构信息

Key Laboratory of Pesticide & Chemical Biology, Ministry of Education, College of Chemistry, Central China Normal University, Wuhan, Hubei, P.R. China.

出版信息

J Chem Inf Model. 2007 Nov-Dec;47(6):2335-44. doi: 10.1021/ci7002297. Epub 2007 Sep 22.

Abstract

Pyrimidinylthiobenzoates constitute an important kind of herbicides targeting acetohydroxyacid synthase (AHAS, EC 2.2.1.6), which catalyze the first common step in branched-chain amino acid biosynthesis. Due to the symmetry of 4,6-dimethoxypyrimidyl, there are two kinds of conformation of pyrimidinylthiobenzoates: one's phenyl is left-extending (named conformation-L); the other's phenyl is right-extending (named conformation-R). On the basis of the assumption that 3D quantitative structure-activity relationship (QSAR) models derived from the bioactive conformation should give the best result, a strategy of density-functional-theory-based 3D-QSAR was proposed to identify the bioactive conformation of pyrimidinylthiobenzoates by integrating the techniques of molecular docking, comparative molecular field analysis (CoMFA), comparative molecular similarity indices analysis (CoMSIA), and density functional theory calculation. The combination of three criteria of q2, r2, and r2pred obtained from CoMFA and CoMSIA analyses clearly indicated that conformation-R rather than conformation-L might be the bioactive conformation for pyrimidinylthiobenzoates. A further comparison between the two binding modes indicated that pyrimidinylthiobenzoates and sulfonylureas have very similar binding sites, such as Trp586, Arg380, and Pro192. However, Lys251 formed H bonds with sulfonylureas rather than pyrimidinylthiobenzoates. In addition, the orientation of phenyl groups of the two classes of compounds in the binding pocket were revealed to be opposite, which explained why the mutation of Pro192 displayed different sensitivity to sulfonylureas and pyrimidinylthiobenzoates. On the basis of the understanding of interactions between pyrimidinyl-thiobenzoates and AHAS, we designed and synthesized six 8-(4,6-dimethoxypyrimidin-2-yloxy)-4-methylphthalazin-1-one derivatives according to the 3D-QSAR models. The excellent correlation between the tested Ki values against wild-type A. thaliana acetohydroxyacid synthase and the predicted IC50 values demonstrated the high reliability of the established 3D-QSAR models. To our knowledge, this is the first report highlighting the binding mode of herbicidal pyrimidinylthiobenzoates, which consisted of the reported results of herbicide resistance.

摘要

嘧啶基硫代苯甲酸酯是一类重要的除草剂,其作用靶点为乙酰羟酸合酶(AHAS,EC 2.2.1.6),该酶催化支链氨基酸生物合成的第一步共同反应。由于4,6 - 二甲氧基嘧啶基的对称性,嘧啶基硫代苯甲酸酯存在两种构象:一种是苯基向左延伸(命名为构象 - L);另一种是苯基向右延伸(命名为构象 - R)。基于从生物活性构象导出的三维定量构效关系(QSAR)模型应能给出最佳结果这一假设,提出了一种基于密度泛函理论的三维QSAR策略,通过整合分子对接、比较分子场分析(CoMFA)、比较分子相似性指数分析(CoMSIA)和密度泛函理论计算等技术来确定嘧啶基硫代苯甲酸酯的生物活性构象。从CoMFA和CoMSIA分析获得的q2、r2和r2pred这三个标准的组合清楚地表明,构象 - R而非构象 - L可能是嘧啶基硫代苯甲酸酯的生物活性构象。两种结合模式的进一步比较表明,嘧啶基硫代苯甲酸酯和磺酰脲类具有非常相似的结合位点,如Trp586、Arg380和Pro192。然而,Lys251与磺酰脲类形成氢键,而不与嘧啶基硫代苯甲酸酯形成氢键。此外,两类化合物在结合口袋中苯基的取向相反,这解释了为什么Pro192的突变对磺酰脲类和嘧啶基硫代苯甲酸酯表现出不同 的敏感性。基于对嘧啶基硫代苯甲酸酯与AHAS之间相互作用的理解,我们根据三维QSAR模型设计并合成了六种8 -(4,6 - 二甲氧基嘧啶 - 2 - 基氧基)- 4 - 甲基酞嗪 - 1 - 酮衍生物。针对野生型拟南芥乙酰羟酸合酶测试的Ki值与预测的IC50值之间具有良好的相关性,证明了所建立的三维QSAR模型具有高度可靠性。据我们所知,这是首次突出显示除草性嘧啶基硫代苯甲酸酯结合模式的报告,其中包括除草剂抗性的报告结果。

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