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A 3D-QSAR Study on the Antitrypanosomal and Cytotoxic Activities of Steroid Alkaloids by Comparative Molecular Field Analysis

机译:3D-QSAR通过比较分子场分析研究类固醇生物碱的抗胰蛋白酶和细胞毒活性

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摘要

As part of our research for new leads against human African trypanosomiasis (HAT), we report on a 3D-QSAR study for antitrypanosomal activity and cytotoxicity of aminosteroid-type alkaloids recently isolated from the African medicinal plant Holarrhena africana A. DC. (Apocynaceae), some of which are strong trypanocides against Trypanosoma brucei rhodesiense (Tbr), with low toxicity against mammalian cells. Fully optimized 3D molecular models of seventeen congeneric Holarrhena alkaloids were subjected to a comparative molecular field analysis (CoMFA). CoMFA models were obtained for both, the anti-Tbr and cytotoxic activity data. Model performance was assessed in terms of statistical characteristics (R2, Q2, and P2 for partial least squares (PLS) regression, internal cross-validation (leave-one-out), and external predictions (test set), respectively, as well as the corresponding standard deviation error in prediction (SDEP) and F-values). With R2 = 0.99, Q2 = 0.83 and P2 = 0.79 for anti-Tbr activity and R2 = 0.94, Q2 = 0.64, P2 = 0.59 for cytotoxicity against L6 rat skeletal myoblasts, both models were of good internal and external predictive power. The regression coefficients of the models representing the most prominent steric and electrostatic effects on anti-Tbr and for L6 cytotoxic activity were translated into contour maps and analyzed visually, allowing suggestions for possible modification of the aminosteroids to further increase the antitrypanosomal potency and selectivity. Very interestingly, the 3D-QSAR model established with the Holarrhena alkaloids also applied to the antitrypanosomal activity of two aminocycloartane-type compounds recently isolated by our group from Buxus sempervirens L. (Buxaceae), which indicates that these structurally similar natural products share a common structure–activity relationship (SAR) and, possibly, mechanism of action with the Holarrhena steroids. This 3D-QSAR study has thus resulted in plausible structural explanations of the antitrypanosomal activity and selectivity of aminosteroid- and aminocycloartane-type alkaloids as an interesting new class of trypanocides and may represent a starting point for lead optimization.
机译:作为我们针对人类非洲锥虫病(HAT)的新线索的研究的一部分,我们报告了一项3D-QSAR研究,该研究针对最近从非洲药用植物非洲整草(Holarrhena africana A. DC)分离出的氨基类固醇型生物碱的抗锥虫活性和细胞毒性。 (Apocynaceae),其中一些是对布氏锥虫(Trypanosoma brucei rhodesiense)(Tbr)的强力锥虫病,对哺乳动物细胞的毒性低。对17个同类Holarrhena生物碱的完全优化3D分子模型进行了比较分子场分析(CoMFA)。获得针对抗Tbr和细胞毒性活性数据的CoMFA模型。根据统计特征(R 2 ,Q 2 和P 2 用于偏最小二乘(PLS)回归,内部交叉验证(留一法)和外部预测(测试集),以及相应的预测标准偏差(SDEP)和F值。 R 2 = 0.99,Q 2 = 0.83,P 2 = 0.79的抗Tbr活性和R 2 对L6大鼠骨骼肌成肌细胞的细胞毒性> 0.94,Q 2 = 0.64,P 2 = 0.59,两个模型均具有良好的内部和外部预测能力。将代表对抗 Tbr 和L6细胞毒性活性最重要的空间和静电作用的模型的回归系数转换成等高线图并进行可视分析,从而为进一步修饰氨基类固醇提供了建议抗锥虫的效力和选择性。非常有趣的是,用 Holarrhena 生物碱建立的3D-QSAR模型也适用于我们小组最近从短生小生虫(Luxus sempervirens L.)分离的两种氨基环烷烷型化合物的抗胰锥虫活性。 Buxaceae),这表明这些结构相似的天然产物具有共同的构效关系(SAR),并可能具有与 Holarrhena 类固醇的作用机理。因此,这项3D-QSAR研究得出了抗锥虫活性和氨基类固醇和氨基环烷烷型生物碱作为有趣的新型锥虫新类的选择性的合理的结构解释,并且可能代表了铅优化的起点。

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