Dye R B, Fink S P, Williams R C
Department of Molecular Biology, Vanderbilt University, Nashville, Tennessee 37235.
J Biol Chem. 1993 Apr 5;268(10):6847-50.
When microtubules, ordinarily quite rigid structures, are treated in vitro with the anti-tumor drug taxol, they rapidly develop a wavy appearance and become strikingly flexible. A quantitative measure of their flexibility, the reciprocal statistical length, lambda, increases by an order of magnitude when taxol is bound. Subsequent addition of either of the microtubule-associated proteins MAP-2 or tau causes the flexibility to disappear. It can be restored again by removing the microtubule-associated protein. These results show that taxol changes microtubular structure substantially, probably by weakening the interactions between protofilaments, and that microtubule-associated proteins reverse these effects, possibly by bridging protofilaments. This structural change and the accompanying flexibility may contribute importantly to taxol's cytotoxic activity.
微管通常是相当刚性的结构,当在体外使用抗肿瘤药物紫杉醇进行处理时,它们会迅速呈现出波浪状外观并变得异常柔韧。衡量其柔韧性的一个量化指标——倒数统计长度λ,在紫杉醇结合时会增加一个数量级。随后添加微管相关蛋白MAP-2或tau中的任何一种,都会使柔韧性消失。去除微管相关蛋白后,柔韧性又可恢复。这些结果表明,紫杉醇可能通过削弱原纤维之间的相互作用,从而显著改变微管结构,并且微管相关蛋白可能通过连接原纤维来逆转这些效应。这种结构变化以及随之而来的柔韧性可能对紫杉醇的细胞毒性活性有重要贡献。