利用分子对接研究 5-N-芳基氨基甲酰基-6-(get)芳基-4-甲基-1,2,3,6-四氢嘧啶-2-硫酮系列中环氧化酶 1 和 2 的 "结构-镇痛活性 "关系

N. Buzmakova, K. V. Аndryukov, T. M. Zamaraeva, I. P. Rudakova, K. V. Podchezertseva, A. S. Goman, E. V. Avdeeva, N. V. Slepova, N. V. Dozmorova
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To identify the dependence \"structure – analgesic activity\" using the method of molecular docking for cyclooxygenase type 1 and type 2 in the series of 5-N-arylaminocarbonyl-6-(get)aryl-4-methyl-1,2,3,6-tetrahydropyrimidine-2-thions.Materials and methods. 19 compounds 5-N-arylaminocarbonyl-6-(get)aryl-4-methyl-1,2,3,6-tetrahydropyrimidine-2-thions are objects of research The study of the interaction of tetrahydropyridine derivatives with COX 1 and 2 was carried out by the method of molecular docking by the AutoDock 4 program using scoring functions.Results and discussion. Molecular docking of 5-N-arylaminocarbonyl-6-(get)aryl-4-methyl-1,2,3,6-tetrahydropyrimidine-2-thions (I–XIX) with COX 1 and 2 is described. Quantitative studies of the \"structure – analgesic activity\" in the studied series of compounds of the dependence of experimental values of analgesic activity (ААex.) on scoring functions (BeCOX1, KiCOX1, BeCOX2, KiCOX2) and physico-chemical descriptors (log Ppred., рКаpred., рКvpred.) were performed. By checking on an independent sample of 5 compounds, equation No. 3 (ААpred. 3 = 32,6215 – 4,4894 × Becox1 + 0,0066 × Kicox1 + 3,6032 × log Ppred. (R = 0,854, F = 9,01, S = 7,73, Q2LOO = 0,53) was found, with a high value of the correlation coefficient of the predicted values ААex. with experimental values (Rpred. = 0,878) and a minimum forecast error (Spred. = 6,74).Conclusion. The \"structure-activity\" models for predicting analgesic activity in a series of 5-N-arylaminocarbonyl-6-(get)aryl-4-methyl-1,2,3,6-tetrahydropyrimidine-2-thions are obtained. 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To identify the dependence \\\"structure – analgesic activity\\\" using the method of molecular docking for cyclooxygenase type 1 and type 2 in the series of 5-N-arylaminocarbonyl-6-(get)aryl-4-methyl-1,2,3,6-tetrahydropyrimidine-2-thions.Materials and methods. 19 compounds 5-N-arylaminocarbonyl-6-(get)aryl-4-methyl-1,2,3,6-tetrahydropyrimidine-2-thions are objects of research The study of the interaction of tetrahydropyridine derivatives with COX 1 and 2 was carried out by the method of molecular docking by the AutoDock 4 program using scoring functions.Results and discussion. Molecular docking of 5-N-arylaminocarbonyl-6-(get)aryl-4-methyl-1,2,3,6-tetrahydropyrimidine-2-thions (I–XIX) with COX 1 and 2 is described. 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引用次数: 0

摘要

引言分子建模方法目前在科学界非常流行。药理作用的价值取决于药物对生物靶点的亲和力。分子对接可以评估所研究化合物与分子靶标活性中心的亲和力。环氧化酶(COX)在促炎细胞因子的级联合成过程中起着关键作用,因此在疼痛中也起着关键作用。在 5-N-arylaminocarbonyl-6-(get)aryl-4-methyl-1,2,3,6-tetrahydropyrimidine-2-thions 系列化合物中,利用分子对接法确定环氧化酶 1 型和 2 型的 "结构-镇痛活性 "依赖关系。以 19 个 5-N-芳氨羰基-6-(get)芳基-4-甲基-1,2,3,6-四氢嘧啶-2-硫酮化合物为研究对象,通过 AutoDock 4 程序,利用评分函数,采用分子对接的方法研究了四氢吡啶衍生物与 COX 1 和 COX 2 的相互作用。介绍了 5-N-芳氨羰基-6-(get)芳基-4-甲基-1,2,3,6-四氢嘧啶-2-硫酮(I-XIX)与 COX 1 和 2 的分子对接。对所研究系列化合物的 "结构-镇痛活性 "进行了定量研究,研究了镇痛活性实验值(ААex.)对评分函数(BeCOX1、KiCOX1、BeCOX2、KiCOX2)和物理化学描述符(log Ppred.、рКаpred.、рКvpred.)的依赖性。通过对 5 个化合物独立样本的检验,公式 3(ААpred.3 = 32,6215 - 4,4894 × Becox1 + 0,0066 × Kicox1 + 3,6032 × log Ppred. (R = 0,854, F = 9,01, S = 7,73, Q2LOO = 0,53),预测值ААex.与实验值的相关系数很高 (Rpred. = 0,878) ,预测误差最小 (Spred. = 6,74)。获得了预测一系列 5-N-芳基氨基羰基-6-(get)芳基-4-甲基-1,2,3,6-四氢嘧啶-2-硫酮镇痛活性的 "结构-活性 "模型。在独立样本上测试模型时获得的相关系数(R)值证实了生物活性的预测结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation of the «Structure – analgesic activity» Relationship Using Molecular Docking for Cyclooxygenases 1 and 2 in the Series 5-N-arylaminocarbonyl-6-(get)aryl-4-methyl-1,2,3,6-tetrahydropyrimidine-2-thiones
Introduction. Molecular modeling methods are very popular in the scientific community at the present time. The value of the pharmacological action depends on the affinity of the substance to the biological target. Molecular docking makes it possible to assess the degree of affinity of the studied compound with the active center of the molecular target. The enzyme cyclooxygenase (COX) plays a key role in the cascade of synthesis of proinflammatory cytokines and, as a consequence, in pain.Aim. To identify the dependence "structure – analgesic activity" using the method of molecular docking for cyclooxygenase type 1 and type 2 in the series of 5-N-arylaminocarbonyl-6-(get)aryl-4-methyl-1,2,3,6-tetrahydropyrimidine-2-thions.Materials and methods. 19 compounds 5-N-arylaminocarbonyl-6-(get)aryl-4-methyl-1,2,3,6-tetrahydropyrimidine-2-thions are objects of research The study of the interaction of tetrahydropyridine derivatives with COX 1 and 2 was carried out by the method of molecular docking by the AutoDock 4 program using scoring functions.Results and discussion. Molecular docking of 5-N-arylaminocarbonyl-6-(get)aryl-4-methyl-1,2,3,6-tetrahydropyrimidine-2-thions (I–XIX) with COX 1 and 2 is described. Quantitative studies of the "structure – analgesic activity" in the studied series of compounds of the dependence of experimental values of analgesic activity (ААex.) on scoring functions (BeCOX1, KiCOX1, BeCOX2, KiCOX2) and physico-chemical descriptors (log Ppred., рКаpred., рКvpred.) were performed. By checking on an independent sample of 5 compounds, equation No. 3 (ААpred. 3 = 32,6215 – 4,4894 × Becox1 + 0,0066 × Kicox1 + 3,6032 × log Ppred. (R = 0,854, F = 9,01, S = 7,73, Q2LOO = 0,53) was found, with a high value of the correlation coefficient of the predicted values ААex. with experimental values (Rpred. = 0,878) and a minimum forecast error (Spred. = 6,74).Conclusion. The "structure-activity" models for predicting analgesic activity in a series of 5-N-arylaminocarbonyl-6-(get)aryl-4-methyl-1,2,3,6-tetrahydropyrimidine-2-thions are obtained. The result of the prediction of biological activity is confirmed by the values of the correlation coefficient (R) obtained when testing models on independent samples.
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