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首页> 外文期刊>Cancer research: The official organ of the American Association for Cancer Research, Inc >Aurora B-mediated phosphorylation of RASSF1A maintains proper cytokinesis by recruiting Syntaxin16 to the midzone and midbody.
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Aurora B-mediated phosphorylation of RASSF1A maintains proper cytokinesis by recruiting Syntaxin16 to the midzone and midbody.

机译:Aurora B介导的RASSF1A磷酸化通过将Syntaxin16募集到中区和中体来维持适当的胞质分裂。

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Aurora B is critically involved in ensuring proper cytokinesis and maintaining genomic stability. The tumor suppressor RASSF1A regulates cell cycle progression by regulating mitotic progression, G(1)-S transition, and microtubule stability. We previously reported that both Aurora A and Aurora B phosphorylate RASSF1A, and showed that phosphorylation of RASSF1A by Aurora A blocks the inhibitory function of RASSF1A toward anaphase-promoting complex-Cdc20. However, the role of Aurora B-mediated RASSF1A phosphorylation remains unknown. Here, we show that phosphorylation of RASSF1A on Ser203 by Aurora B during late mitosis has a critical role in regulating cytokinesis. Notably, RASSF1A interacts with Syntaxin16, a member of the t-SNARE family, at the midzone and midbody during late mitosis. Aurora B is required for this interaction and for the subsequent recruitment of Syntaxin16 to the midzone and midbody, a prerequisite for the successful completion of cytokinesis. Furthermore, Aurora B depletion results in a failure of Syntaxin16 to properly localize to the midzone and midbody, a mislocalization that was prevented by overexpression of the phosphomimetic RASSF1A (S203D) mutant. Finally, either depletion of Syntaxin16 or expression of the nonphosphorylatable RASSF1A (S203A) mutant results in cytokinesis defects. Our findings implicate Aurora B-mediated phosphorylation of RASSF1A in the regulation of cytokinesis.
机译:Aurora B在确保适当的胞质分裂和维持基因组稳定性方面至关重要。肿瘤抑制因子RASSF1A通过调节有丝分裂进程,G(1)-S过渡和微管稳定性来调节细胞周期进程。先前我们报道了Aurora A和Aurora B都使RASSF1A磷酸化,并显示Aurora A对RASSF1A的磷酸化阻止了RASSF1A对后期促进复合物Cdc20的抑制作用。但是,极光B介导的RASSF1A磷酸化的作用仍然未知。在这里,我们显示在有丝分裂后期,Aurora B对Ser203上RASSF1A的磷酸化在调节胞质分裂中起关键作用。值得注意的是,RASSF1A在晚期有丝分裂期间与t-SNARE家族成员Syntaxin16相互作用。这种交互作用以及随后将Syntaxin16募集到中区和中体时需要Aurora B,这是成功完成胞质分裂的前提。此外,极光B耗竭导致Syntaxin16无法正确定位到中部区域和中体,而过磷酸化模拟RASSF1A(S203D)突变体可以防止这种错误定位。最后,Syntaxin16的耗竭或不可磷酸化的RASSF1A(S203A)突变体的表达导致胞质分裂缺陷。我们的发现暗示在胞质分裂的调节中Aurora B介导的RASSF1A磷酸化。

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