Area of Pharmacology, Department of Biomedical Sciences and "Unidad Asociada IQM-CSIC", School of Medicine and Health Sciences, University of Alcalá, 28805, Alcalá de Henares, Madrid, Spain.
Institute of Theoretical Chemistry, University of Vienna, Währinger Str. 17, 1090, Vienna, Austria.
J Comput Aided Mol Des. 2019 Jul;33(7):627-644. doi: 10.1007/s10822-019-00208-w. Epub 2019 May 31.
Many natural products target mammalian tubulin but only a few can form a covalent bond and hence irreversibly affect microtubule function. Among them, zampanolide (ZMP) and taccalonolide AJ (TAJ) stand out, not only because they are very potent antitumor agents but also because the adducts they form with β-tubulin have been structurally characterized in atomic detail. By applying model building techniques, molecular orbital calculations, molecular dynamics simulations and hybrid QM/MM methods, we have gained insight into the 1,2- and 1,4-addition reactions of His229 and Asp226 to ZMP and TAJ, respectively, in the taxane-binding site of β-tubulin. The experimentally inaccessible precovalent complexes strongly suggest a water-mediated proton shuttle mechanism for ZMP adduct formation and a direct nucleophilic attack by the carboxylate of Asp226 on C22 of the C22R,C23R epoxide in TAJ. The M-loop, which is crucially important for interprotofilament interactions, is structured into a short helix in both types of complexes, mostly as a consequence of the fixation of the phenol ring of Tyr283 and the guanidinium of Arg284. As a side benefit, we obtained evidence supporting the existence of a commonly neglected intramolecular disulfide bond between Cys241 and Cys356 in β-tubulin that contributes to protein compactness and is absent in the β isotype associated with resistance to taxanes and other drugs.
许多天然产物以哺乳动物微管蛋白为靶点,但只有少数能够形成共价键,从而不可逆地影响微管功能。其中,zampanolide(ZMP)和 taccalonolide AJ(TAJ)尤为突出,不仅因为它们是非常有效的抗肿瘤药物,还因为它们与β-微管蛋白形成的加合物已在原子细节上得到结构表征。通过应用建模技术、分子轨道计算、分子动力学模拟和混合 QM/MM 方法,我们深入了解了 His229 和 Asp226 分别与 ZMP 和 TAJ 在β-微管蛋白 taxane 结合位点的 1,2-和 1,4-加成反应。实验中无法获得的预共价复合物强烈表明 ZMP 加合物形成的质子转移机制是通过水分子介导的,而 TAJ 中 Asp226 的羧基对 C22R,C23R 环氧化物的直接亲核攻击。M 环对于原纤维间相互作用至关重要,在这两种类型的复合物中都被构象成一个短螺旋,这主要是由于 Tyr283 的酚环和 Arg284 的胍基的固定。作为一个附带的好处,我们获得了支持β-微管蛋白中通常被忽视的 Cys241 和 Cys356 之间的分子内二硫键存在的证据,该二硫键有助于蛋白质的紧凑性,并且在与 taxanes 和其他药物耐药相关的β 同工型中不存在。