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Structural basis for the regulation of tubulin by vinblastine

机译:长春碱调节微管蛋白的结构基础

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Vinblastine is one of several tubulin-targeting Vinca alkaloids that have been responsible for many chemotherapeutic successes since their introduction in the clinic as antitumour drugs(1). In contrast with the two other classes of small tubulin-binding molecules (Taxol(2) and colchicine(3)), the binding site of vinblastine is largely unknown and the molecular mechanism of this drug has remained elusive. Here we report the X-ray structure of vinblastine bound to tubulin in a complex with the RB3 protein stathmin-like domain (RB3-SLD). Vinblastine introduces a wedge at the interface of two tubulin molecules and thus interferes with tubulin assembly. Together with electron microscopical and biochemical data, the structure explains vinblastine-induced tubulin self-association into spiral aggregates at the expense of microtubule growth(4). It also shows that vinblastine and the amino-terminal part of RB3-SLD binding sites share a hydrophobic groove on the alpha-tubulin surface that is located at an intermolecular contact in microtubules. This is an attractive target for drugs designed to perturb microtubule dynamics by interfacial interference, for which tubulin seems ideally suited because of its propensity to self-associate.
机译:长春碱是几种靶向微管蛋白的长春花生物碱之一,自从其作为抗肿瘤药物进入临床以来,已经在化学疗法中取得了许多成功(1)。与其他两类小微管蛋白结合分子(Taxol(2)和秋水仙碱(3))相反,长春碱的结合位点很大程度上未知,该药物的分子机制仍然不清楚。在这里,我们报道了长春碱与微管蛋白结合的X射线结构,该微管蛋白与RB3蛋白质类脂蛋白样结构域(RB3-SLD)形成复合体。长春花碱在两个微管蛋白分子的界面处引入楔形,从而干扰微管蛋白的组装。结合电子显微镜和生化数据,该结构解释了长春碱诱导的微管蛋白自缔合成螺旋状聚集体,却以微管的生长为代价(4)。它还显示长春碱和RB3-SLD结合位点的氨基末端部分在位于微管内分子间接触的α-微管蛋白表面上共有一个疏水槽。这是设计用于通过界面干扰干扰微管动力学的药物的有吸引力的靶标,微管蛋白因其具有自缔合的倾向而似乎非常适合于微管动力学。

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