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首页> 外文期刊>Journal of cell biology >Aurora A phosphorylation of TACC3/maskin is required for centrosome-dependent microtubule assembly in mitosis
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Aurora A phosphorylation of TACC3/maskin is required for centrosome-dependent microtubule assembly in mitosis

机译:极光A磷酸化的有丝分裂中依赖于中心体的微管组装需要TACC3 / maskin

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Centrosomes act as sites of microtubule growth, but little is known about how the number and stability of microtubules emanating from a centrosome are controlled during the cell cycle. We studied the role of the TACC3–XMAP215 complex in this process by using purified proteins and Xenopus laevis egg extracts. We show that TACC3 forms a one-to-one complex with and enhances the microtubule-stabilizing activity of XMAP215 in vitro. TACC3 enhances the number of microtubules emanating from mitotic centrosomes, and its targeting to centrosomes is regulated by Aurora A–dependent phosphorylation. We propose that Aurora A regulation of TACC3 activity defines a centrosome-specific mechanism for regulation of microtubule polymerization in mitosis.
机译:中心体充当微管生长的位点,但是对于如何控制在细胞周期期间从中心体发出的微管的数量和稳定性知之甚少。我们使用纯化的蛋白质和非洲爪蟾卵提取物研究了TACC3-XMAP215复合物在此过程中的作用。我们显示,TACC3与XMAP215在体外形成一对一的复合物并增强其微管稳定活性。 TACC3增强了有丝分裂中心体产生的微管数量,其靶向中心体的方式受到Aurora A依赖性磷酸化的调节。我们提出,TACC3活性的极光A调节定义了一种中心体特异性机制,用于调节有丝分裂中的微管聚合。

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