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埃坡霉素 A 与β-微管蛋白及其突变体 Arg282Gln 和 Thr274Ile 结合的结构机制研究

Structural insight into the mechanism of epothilone A bound to beta-tubulin and its mutants at Arg282Gln and Thr274Ile.

机构信息

Key Laboratory of Education Ministry for Medicinal Chemistry of Natural Resource, College of Chemical Science and Technology, Yunnan University, Kunming 650091, PR China.

出版信息

J Biomol Struct Dyn. 2012;30(5):559-73. doi: 10.1080/07391102.2012.687522. Epub 2012 Jun 25.

Abstract

Epothilone A (EpoA) is under investigation as an antitumor agent. To provide better understanding of the activity of EpoA against cancers, by theoretical studies such as using docking method, molecular dynamics simulation and density functional theory calculations, we identify several key residues located on β-tubulin as the active sites to establish an active pocket responsible for interaction with EpoA. Eight residues (Arg276, Asp224, Asp26, His227, Glu27, Glu22, Thr274, and Met363) are identified as the active sites to form the active pocket on β-tubulin. The interaction energy is predicted to be -121.3 kJ/mol between EpoA and β-tubulin. In the mutant of β-tubulin at Thr274Ile, three residues (Arg359, Glu27, and His227) are identified as the active sites for the binding of EpoA. In the mutant of β-tubulin at Arg282Gln, three residues (Arg276, Lys19, and His227) serve as the active sites. The interaction energy is reduced to -77.2 kJ/mol between EpoA and Arg282Gln mutant and to -50.2 kJ/mol between EpoA and Thr274Ile mutant. The strong interaction with β-tubulin is significant to EpoA's activity against cancer cells. When β-tubulin is mutated either at Arg282Gln or at Thr274Ile, the decreased strength of interaction explains the activity reduced for EpoA. Therefore, this work shows that the structural basis of the active pocket plays an important role in regulating the activity for EpoA with a Taxol-like mechanism of action to be promoted as an antitumor agent.

摘要

埃坡霉素 A(EpoA)作为一种抗肿瘤药物正在进行研究。为了更好地了解 EpoA 对癌症的活性,我们通过理论研究,如使用对接方法、分子动力学模拟和密度泛函理论计算,确定了位于β-微管蛋白上的几个关键残基作为活性位点,建立了一个活性口袋,负责与 EpoA 相互作用。确定了 8 个残基(Arg276、Asp224、Asp26、His227、Glu27、Glu22、Thr274 和 Met363)为β-微管蛋白上的活性位点,形成了负责与 EpoA 相互作用的活性口袋。EpoA 与β-微管蛋白之间的相互作用能预测为-121.3 kJ/mol。在 Thr274Ile 突变的β-微管蛋白中,确定了 3 个残基(Arg359、Glu27 和 His227)为 EpoA 结合的活性位点。在 Arg282Gln 突变的β-微管蛋白中,确定了 3 个残基(Arg276、Lys19 和 His227)为活性位点。EpoA 与 Arg282Gln 突变体之间的相互作用能降低到-77.2 kJ/mol,与 Thr274Ile 突变体之间的相互作用能降低到-50.2 kJ/mol。与β-微管蛋白的强相互作用对 EpoA 抑制癌细胞活性具有重要意义。当β-微管蛋白在 Arg282Gln 或 Thr274Ile 处发生突变时,相互作用强度的降低解释了 EpoA 活性的降低。因此,这项工作表明,活性口袋的结构基础在调节 EpoA 的活性中起着重要作用,其作用机制类似于紫杉醇,有望成为一种抗肿瘤药物。

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