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RNA 结合蛋白 RBM8A (Y14) 的耗竭导致人类细胞的细胞周期缺陷和细胞凋亡。

Depletion of RNA-binding protein RBM8A (Y14) causes cell cycle deficiency and apoptosis in human cells.

机构信息

Division of Advanced Medicine, Medical Research Institute, Kanazawa Medical University, Uchinada-machi, Kahoku-gun 920-0293, Japan.

出版信息

Exp Biol Med (Maywood). 2013 Aug 1;238(8):889-97. doi: 10.1177/1535370213494646.

Abstract

RBM8A (Y14) contains an RNA-binding motif and forms a tight heterodimer with Magoh. The heterodimer is known to be a member of the exon junction complex that forms on mRNA before export and it is required for mRNA metabolism processes such as splicing, mRNA export and nonsense-mediated mRNA decay. Recently, deficient cellular proliferation has been observed in RBM8A- or Magoh-depleted cells. These results prompted us to study the role of RBM8A in cell cycle progression of human tumour cells. The depletion of RBM8A in A549 cells resulted in poor cell survival and the accumulation of mitotic cells. After release from G1/S arrest induced by a double thymidine block, the RBM8A-silenced cells could not proceed to the next G1 phase beyond G2/M phase. Finally, the sub-G1 population increased and the apoptosis markers caspases 3/7 were activated. Silenced cells exhibited an increased frequency of multipolar or monopolar centrosomes, which may have caused the observed deficiency in cell cycle progression. Finally, silencing of either RBM8A or Magoh resulted in mutual downregulation of the other protein. These results illustrate that the RBM8A-Magoh mRNA binding complex is required for M phase progression and both proteins may be novel targets for anticancer therapy.

摘要

RBM8A(Y14)含有一个 RNA 结合基序,并与 Magoh 形成紧密的异二聚体。该异二聚体已知是在 mRNA 输出之前形成于 mRNA 上的外显子结合复合物的成员,并且它对于诸如剪接、mRNA 输出和无意义介导的 mRNA 衰变等 mRNA 代谢过程是必需的。最近,在 RBM8A 或 Magoh 耗尽的细胞中观察到细胞增殖不足。这些结果促使我们研究 RBM8A 在人肿瘤细胞细胞周期进程中的作用。在 A549 细胞中耗尽 RBM8A 导致细胞存活不良和有丝分裂细胞的积累。在双胸苷阻断诱导的 G1/S 期阻滞释放后,沉默 RBM8A 的细胞不能从 G2/M 期进入下一个 G1 期。最后,亚 G1 群体增加,凋亡标志物 caspase 3/7 被激活。沉默细胞表现出多极或单极中心体的频率增加,这可能导致观察到的细胞周期进程不足。最后,沉默 RBM8A 或 Magoh 中的任何一种都会导致另一种蛋白质的相互下调。这些结果表明,RBM8A-Magoh mRNA 结合复合物是 M 期进展所必需的,并且这两种蛋白质都可能成为癌症治疗的新靶点。

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