Derry W B, Wilson L, Khan I A, Luduena R F, Jordan M A
Department of Molecular, Cellular, and Developmental Biology, University of California, Santa Barbara 93106, USA.
Biochemistry. 1997 Mar 25;36(12):3554-62. doi: 10.1021/bi962724m.
Substoichiometric binding of taxol to tubulin in microtubules potently suppresses microtubule dynamics, which appears to be the most sensitive antiproliferative mechanism of taxol. To determine whether the beta-tubulin isotype composition of a microtubule can modulate sensitivity to taxol, we measured the effects of substoichiometric ratios of taxol bound to tubulin in microtubules on the dynamics of microtubules composed of purified alphabeta(II)-, alphabeta(III)-, or alphabeta(IV)-tubulin isotypes and compared the results with the effects of taxol on microtubules assembled from unfractionated tubulin. Substoichiometric ratios of bound taxol in microtubules assembled from purified beta-tubulin isotypes or unfractionated tubulin potently suppressed the shortening rates and the lengths shortened per shortening event. Correlation of the suppression of the shortening rate with the stoichiometry of bound taxol revealed that microtubules composed of purified alphabeta(II)-, alphabeta(III)-, and alphabeta(IV)-tubulin were, respectively, 1.6-, 7.4-, and 7.2-fold less sensitive to the effects of bound taxol than microtubules assembled from unfractionated tubulin. These results indicate that taxol differentially modulates microtubule dynamics depending upon the beta-tubulin isotype composition. The results are consistent with recent studies correlating taxol resistance in tumor cells with increased levels of beta(III0- and beta(IV)-tubulin expression and suggest that altered cellular expression of beta-tubulin isotypes can be an important mechanism by which tumor cells develop resistance to taxol.
紫杉醇与微管中微管蛋白的亚化学计量结合有力地抑制了微管动力学,这似乎是紫杉醇最敏感的抗增殖机制。为了确定微管的β-微管蛋白亚型组成是否能调节对紫杉醇的敏感性,我们测量了微管中与微管蛋白结合的亚化学计量比例的紫杉醇对由纯化的αβ(II)-、αβ(III)-或αβ(IV)-微管蛋白亚型组成的微管动力学的影响,并将结果与紫杉醇对由未分级微管蛋白组装的微管的影响进行比较。由纯化的β-微管蛋白亚型或未分级微管蛋白组装的微管中结合紫杉醇的亚化学计量比例有力地抑制了缩短速率和每次缩短事件缩短的长度。缩短速率的抑制与结合紫杉醇的化学计量之间的相关性表明,由纯化的αβ(II)-、αβ(III)-和αβ(IV)-微管蛋白组成的微管对结合紫杉醇的作用的敏感性分别比由未分级微管蛋白组装的微管低1.6倍、7.4倍和7.2倍。这些结果表明,紫杉醇根据β-微管蛋白亚型组成差异调节微管动力学。这些结果与最近将肿瘤细胞中紫杉醇耐药性与β(III)-和β(IV)-微管蛋白表达水平升高相关联的研究一致,并表明β-微管蛋白亚型的细胞表达改变可能是肿瘤细胞对紫杉醇产生耐药性的重要机制。