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首页> 外文期刊>Journal of Molecular Structure >Structure activity relationships (SAR) study to design and synthesize new tubulin inhibitors with enhanced anti-tubulin activity: In silico and in vitro analysis
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Structure activity relationships (SAR) study to design and synthesize new tubulin inhibitors with enhanced anti-tubulin activity: In silico and in vitro analysis

机译:结构活性关系(SAR)研究和合成具有增强抗微管蛋白活性的新微管蛋白抑制剂:在硅和体外分析中

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摘要

Tubulysin family of natural products is a class of highly cytotoxic tetrapeptides that induce apoptosis by arresting the mitosis of a cell. In this article, we have analysed 49 reported tubulysin derivatives with known IC50 values to develop two and three-dimensional quantitative structure-activity relationships (2D and 3D QSAR) to explore the critical structural framework required for anti-tubulin activity. In the 2D technique, hologram QSAR (HQSAR models were generated by examining different combinations of the field parameters, number of components, and fragment sizes. Reliability of the best HQSAR model was validated by obtaining optimum values for statistical parameters such as cross-validated (q(2) = 0.92) and correlation (r(2) = 0.93) coefficients. Further, 3D-QSAR models were generated via CoMFA and CoMSIA methods. In CoMFA, using the Gast-Huck charge assigning method, the best correlation values for q(2) and r(2) coefficients were found to be 0.59 and 0.93, respectively. Whereas in CoMSIA, by considering field contribution parameters such as steric, electrostatic, hydrophobic interactions, and hydrogen bond acceptor ability, a fine model was generated with best cross-validated (q(2) = 0.58) and correlation (r(2) = 0.94) coefficients values. Tubulysin M is one of the most potent anticancer agents known with an excellent IC50 of 0.02 nM to kill cancer cells. In the present study, tubulysin M co-crystallised with tubulin protein (PDB ID: 4ZOL) was used for molecular docking studies to analyze the drug-protein interactions. The results of QSAR and molecular docking studies were compiled and through in silico studies, structure activity relationships (SAR) were established. The in silico SAR results were utilized to design novel third generation tubulysin derivatives, which are easy to synthesize when compared to complex natural tubulysin derivatives. One of the third generation derivatives, Tub_01, was chemically synthesized and found to have an excellent anticancer activity against cervical cancer cell line (HeLa) with IC50 of 9.4 nM and 88.6 nM for different incubation time. (C) 2020 Elsevier B.V. All rights reserved.
机译:微管溶素家族的天然产物是一类高度细胞毒性的四肽,通过阻止细胞有丝分裂诱导细胞凋亡。在本文中,我们分析了49种已知IC50值的微管溶素衍生物,以建立二维和三维定量结构-活性关系(2D和3D QSAR),探索抗微管蛋白活性所需的关键结构框架。在2D技术中,全息图QSAR(HQSAR)模型是通过检查场参数、组分数量和碎片大小的不同组合生成的。最佳HQSAR模型的可靠性是通过获得交叉验证(q(2)=0.92)和相关(r(2)=0.93)系数等统计参数的最佳值来验证的。此外,通过CoMFA和CoMSIA方法生成3D-QSAR模型。在CoMFA中,使用Gast-Huck电荷分配方法,发现q(2)和r(2)系数的最佳相关值分别为0.59和0.93。而在CoMSIA中,通过考虑空间、静电、疏水相互作用和氢键受体能力等场贡献参数,生成了具有最佳交叉验证(q(2)=0.58)和相关性(r(2)=0.94)系数值的精细模型。微管溶素M是已知的最有效的抗癌药物之一,其IC50为0.02 nM,可以杀死癌细胞。在本研究中,微管溶素M与微管蛋白(PDB ID:4ZOL)共结晶用于分子对接研究,以分析药物-蛋白质相互作用。对QSAR和分子对接研究的结果进行了汇编,并通过电子研究建立了结构-活性关系(SAR)。利用电子合成孔径雷达(in-silico-SAR)的结果设计了新的第三代微管溶素衍生物,与复杂的天然微管溶素衍生物相比,该衍生物易于合成。化学合成了第三代衍生物之一Tub_01,发现其对宫颈癌细胞系(HeLa)具有优异的抗癌活性,在不同的培养时间下IC50分别为9.4 nM和88.6 nM。(C) 2020爱思唯尔B.V.版权所有。

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