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A structure-based design of new C2- and C13-substituted taxanes: Tubulin binding affinities and extended quantitative structure-activity relationships using comparative binding energy (COMBINE) analysis

机译:新的C2和C13取代的紫杉烷类的基于结构的设计:微管蛋白结合亲和力和使用比较结合能(COMBINE)分析的扩展定量构效关系

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摘要

Ten novel taxanes bearing modifications at the C2 and C13 positions of the baccatin core have been synthesized and their binding affinities for mammalian tubulin have been experimentally measured. The design strategy was guided by (i) calculation of interaction energy maps with carbon, nitrogen and oxygen probes within the taxane-binding site of β-tubulin, and (ii) the prospective use of a structure-based QSAR (COMBINE) model derived from an earlier series comprising 47 congeneric taxanes. The tubulin-binding affinity displayed by one of the new compounds (CTX63) proved to be higher than that of docetaxel, and an updated COMBINE model provided a good correlation between the experimental binding free energies and a set of weighted residue-based ligand-receptor interaction energies for 54 out of the 57 compounds studied. The remaining three outliers from the original training series have in common a large unfavourable entropic contribution to the binding free energy that we attribute to taxane preorganization in aqueous solution in a conformation different from that compatible with tubulin binding. Support for this proposal was obtained from solution NMR experiments and molecular dynamics simulations in explicit water. Our results shed additional light on the determinants of tubulin-binding affinity for this important class of antitumour agents and pave the way for further rational structural modifications. © The Royal Society of Chemistry 2013.
机译:已经合成了十个在浆果赤霉素核心的C2和C13位置带有修饰的新型紫杉烷,并已通过实验测量了它们对哺乳动物微管蛋白的结合亲和力。该设计策略的指导思想是:(i)计算β-微管蛋白的紫杉烷结合位点内与碳,氮和氧探针的相互作用能图,以及(ii)预期使用基于结构的QSAR(COMBINE)模型包括47种同类紫杉烷的较早系列中的产物。一种新化合物(CTX63)表现出的微管蛋白结合亲和力证明高于多西他赛,并且更新的COMBINE模型在实验结合自由能与一组加权的基于残基的配体受体之间提供了良好的相关性所研究的57种化合物中有54种具有相互作用能。原始训练系列中的其余三个异常值对熵结合能的熵贡献很大,我们将其归因于紫杉烷在水溶液中的预组织,其构象不同于微管蛋白的结合。该提案的支持来自溶液NMR实验和显式水中的分子动力学模拟。我们的研究结果进一步揭示了对这一重要类抗肿瘤药的微管蛋白结合亲和力的决定因素,并为进一步合理的结构修饰铺平了道路。 ©皇家化学学会,2013年。

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