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A ubiquitous beta-tubulin disrupts microtubule assembly and inhibits cell proliferation

机译:普遍存在的β-微管蛋白破坏微管组装并抑制细胞增殖

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摘要

Vertebrate tubulin is encoded by a multigene family that produces distinct gene products, or isotypes, of both the alpha- and beta-tubulin subunits. The isotype sequences are conserved across species supporting the hypothesis that different isotypes subserve different functions. To date, however, most studies have demonstrated that tubulin isotypes are freely interchangeable and coassemble into all classes of microtubules. We now report that, in contrast to other isotypes, overexpression of a mouse class V beta-tubulin cDNA in mammalian cells produces a strong, dose-dependent disruption of microtubule organization, increased microtubule fragmentation, and a concomitant reduction in cellular microtubule polymer levels. These changes also disrupt mitotic spindle assembly and block cell proliferation. Consistent with diminished microtubule assembly, there is an increased tolerance for the microtubule stabilizing drug, paclitaxel, which is able to reverse many of the effects of class V beta-tubulin overexpression. Moreover, transfected cells selected in paclitaxel exhibit increased expression of class V beta-tubulin, indicating that this isotype is responsible for the drug resistance. The results show that class V beta-tubulin is functionally distinct from other tubulin isotypes and imparts unique properties on the microtubules into which it incorporates.
机译:脊椎动物微管蛋白由多基因家族编码,该多基因家族可产生α-和β-微管蛋白亚基的独特基因产物或同种型。同种型序列在物种间是保守的,支持不同亚型具有不同功能的假设。然而,迄今为止,大多数研究已证明微管蛋白同种型可自由互换并共同装配在所有类型的微管中。我们现在报告,与其他同种型相反,在哺乳动物细胞中小鼠V类β-微管蛋白cDNA的过表达产生了强烈的,剂量依赖性的微管组织破坏,微管片段化增加以及细胞微管聚合物水平随之降低的现象。这些变化还会破坏有丝分裂纺锤体组装并阻断细胞增殖。与减少的微管组装一致,对微管稳定药紫杉醇的耐受性增加,它能够逆转许多V类β-微管蛋白过表达的作用。此外,在紫杉醇中选择的转染细胞显示出V类β-微管蛋白的表达增加,表明该同种型引起耐药性。结果表明,V类β-微管蛋白在功能上不同于其他微管蛋白同种型,并在其所结合的微管中赋予独特的特性。

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