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Class V β-tubulin alters dynamic instability and?stimulates microtubule detachment from?centrosomes

机译:V族β-小管蛋白改变了动态不稳定性,刺激了来自何处的微管脱离

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摘要

A multigene family produces tubulin isotypes that are expressed in a tissue-specific manner, but the role of these isotypes in microtubule assembly and function is unclear. Recently we showed that overexpression or depletion of β5-tubulin, a minor isotype with wide tissue distribution, inhibits cell division. We now report that elevated β5-tubulin causes uninterrupted episodes of microtubule shortening and increased shortening rates. Conversely, depletion of β5-tubulin reduces shortening rates and causes very short excursions of growth and shortening. A tubulin conformation-sensitive antibody indicated that the uninterrupted shortening can be explained by a relative absence of stabilized patches along the microtubules that contain tubulin in an assembly-competent conformation and normally act to restore microtubule growth. In addition to these changes in dynamic instability, overexpression of β5-tubulin causes fragmentation that results from microtubule detachment from centrosomes, and it is this activity that best explains the effects of β5 on cell division. Paclitaxel inhibits microtubule detachment, increases the number of assembly-competent tubulin patches, and inhibits microtubule shortening, thus providing an explanation for why the drug can counteract the phenotypic effects of β5 overexpression. On the basis of these observations, we propose that cells can use β5-tubulin expression to adjust the behavior of the microtubule cytoskeleton.
机译:多烯家族产生以组织特异性方式表达的微管蛋白同种型,但是这些同种型在微管组件和功能中的作用尚不清楚。最近,我们表明,β5-微管蛋白的过度表达或耗尽,一种具有宽组织分布的少量同种型,抑制细胞分裂。现在我们报告升高的β5-肾小瓣素导致不间断的微管缩短和增加缩短速率。相反,β5-微管蛋白的耗竭降低了缩短速率,并导致生长和缩短的短途突出。管蛋白构象敏感抗体表明,不间断的缩短可以通过沿着含有组装态化构象的微管蛋白的微管的相对不存在稳定的斑块来解释,并且通常是为了恢复微管生长。除了这些动态不稳定性的变化外,β5-微管蛋白的过度表达导致来自离心体的微管脱离产生的碎裂,并且该活性最能解释β5对细胞分裂的影响。紫杉醇抑制微管脱离,增加组装态管蛋白贴片的数量,并抑制微管缩短,从而为为什么药物可以抵消β5过表达的表型效应的解释。在这些观察结果的基础上,我们提出了细胞可以使用β5-微管蛋白的表达来调节微管细胞骨架的行为。

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