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Global regulation of the interphase microtubule system by abundantly expressed Op18/stathmin

机译:充分表达的Op18 / stathmin对相间微管系统的全局调控

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Op18/stathmin (Op18), a conserved microtubule-depolymerizing and tubulin heterodimer-binding protein, is a major interphase regulator of tubulin monomer-polymer partitioning in diverse cell types in which Op18 is abundant. Here, we addressed the question of whether the microtubule regulatory function of Op18 includes regulation of tubulin heterodimer synthesis. We used two human cell model systems, K562 and Jurkat, combined with strategies for regulatable overexpression or depletion of Op18. Although Op18 depletion caused extensive overpolymerization and increased microtubule content in both cell types, we did not detect any alteration in polymer stability. Interestingly, however, we found that Op18 mediates positive regulation of tubulin heterodimer content in Jurkat cells, which was not observed in K562 cells. By analysis of cells treated with microtubule-poisoning drugs, we found that Jurkat cells regulate tubulin mRNA levels by a posttranscriptional mechanism similarly to normal primary cells, whereas this mechanism is nonfunctional in K562 cells. We present evidence that Op18 mediates posttranscriptional regulation of tubulin mRNA in Jurkat cells through the same basic autoregulatory mechanism as microtubule-poisoning drugs. This, combined with potent regulation of tubulin monomer-polymer partitioning, enables Op18 to exert global regulation of the microtubule system.
机译:Op18 / stathmin(Op18)是一种保守的微管解聚和微管蛋白异二聚体结合蛋白,是微管蛋白单体-聚合物分配在Op18丰富的多种细胞类型中的主要相间调节剂。在这里,我们解决了Op18的微管调控功能是否包括微管蛋白异二聚体合成调控的问题。我们使用了两种人类细胞模型系统,即K562和Jurkat,并结合了可调节的Op18过度表达或耗竭策略。尽管Op18耗竭导致两种细胞类型均发生大量过度聚合并增加了微管含量,但我们并未发现聚合物稳定性发生任何变化。然而,有趣的是,我们发现Op18介导Jurkat细胞中微管蛋白异二聚体含量的正调控,而在K562细胞中未观察到。通过对用微管中毒药物处理的细胞进行分析,我们发现Jurkat细胞通过转录后机制与正常原代细胞相似地调节微管蛋白mRNA水平,而该机制在K562细胞中不起作用。我们提供的证据表明,Op18通过与微管中毒药物相同的基本自动调节机制介导Jurkat细胞中微管蛋白mRNA的转录后调控。这与微管蛋白单体-聚合物分配的有效调节相结合,使Op18可以对微管系统进行全局调节。

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