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Quantitative prediction of AHAS inhibition by pyrimidinylsalicylate based herbicides

机译:嘧啶基水杨酸酯类除草剂对AHAS抑制的定量预测

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Acetohydroxyacid synthase (AHAS) inhibition by pyrimidylsalicylate based herbicides is studied within the framework of quantitative structure-activity relationship (QSAR) methodology. A general model for this family of herbicides is developed to predict molar pI50, i.e. the logarithm of the reciprocal molar concentration of herbicide required for 50% inhibition of the AHAS activity. The model, which involves only four descriptors: two geometric and two quantum chemical, accounting for the steric, electrostatic and hydrogen bonding interactions responsible for the binding of the herbicide to the enzyme; predicts the molar pI50 with a squared correlation coefficient of 0.89 and a standard deviation of 0.43. The training set includes 30 structures of substituted O-(4,6-dimethoxypyrimidin-2-yl) salicylic acids and thio analogs, covering a pI50 range from about 3 to 8 U. The model is validated with an external set of 13 structures not included in the training set.
机译:在定量结构-活性关系(QSAR)方法的框架内研究了基于嘧啶水杨酸酯的除草剂对乙酰羟酸合酶(AHAS)的抑制作用。建立了该除草剂家族的通用模型以预测摩尔pI 50,即50%抑制AHAS活性所需的除草剂倒数摩尔浓度的对数。该模型仅涉及四个描述子:两个几何学和两个量子化学,负责除草剂与酶的结合的空间,静电和氢键相互作用。预测摩尔pI50的平方相关系数为0.89,标准偏差为0.43。训练集包括30个取代的O-(4,6-二甲氧基嘧啶-2-基)水杨酸和硫代类似物的结构,涵盖的pI50范围约为3至8U。该模型通过外部13个结构验证包括在训练集中。

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