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首页> 外文期刊>Molecular biology of the cell >RNA Interference Knockdown of hU2AF35 Impairs Cell Cycle Progression and Modulates Alternative Splicing of Cdc25 Transcripts
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RNA Interference Knockdown of hU2AF35 Impairs Cell Cycle Progression and Modulates Alternative Splicing of Cdc25 Transcripts

机译:hU2AF35的RNA干扰敲低会损害细胞周期进程并调节Cdc25转录本的选择性剪接。

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摘要

U2AF is a heterodimeric splicing factor composed of a large (U2AF65) and a small (U2AF35) subunit. In humans, alternative splicing generates two U2AF35 variants, U2AF35a and U2AF35b. Here, we used RNA interference to specifically ablate the expression of each isoform in HeLa cells. Our results show that knockdown of the major U2AF35a isoform reduced cell viability and impaired mitotic progression, leading to accumulation of cells in prometaphase. Microarray analysis revealed that knockdown of U2AF35a affected the expression level of ~500 mRNAs, from which >90% were underrepresented relative to the control. Among mRNAs underrepresented in U2AF35a-depleted cells we identified an essential cell cycle gene, Cdc27, for which there was an increase in the ratio between unspliced and spliced RNA and a significant reduction in protein level. Furthermore, we show that depletion of either U2AF35a or U2AF35b altered the ratios of alternatively spliced isoforms of Cdc25B and Cdc25C transcripts. Taken together our results demonstrate that U2AF35a is essential for HeLa cell division and suggest a novel role for both U2AF35 protein isoforms as regulators of alternative splicing of a specific subset of genes.
机译:U2AF是由大(U2AF 65 )和小(U2AF 35 )亚基组成的异二聚体剪接因子。在人类中,选择性剪接会生成两个U2AF 35 变体,即U2AF 35 a和U2AF 35 b。在这里,我们使用RNA干扰特异性地消融HeLa细胞中每个同种型的表达。我们的结果表明,敲除主要的U2AF 35 同工型会降低细胞活力并损害有丝分裂进程,从而导致前中期细胞蓄积。芯片分析显示,敲除U2AF 35 a影响〜500 mRNA的表达水平,相对于对照,其表达量不足90%。在缺失U2AF 35 a的细胞中低表达的mRNA中,我们确定了必需的细胞周期基因Cdc27,其未剪接和剪接RNA的比例增加,蛋白质水平显着降低。此外,我们表明,U2AF 35 a或U2AF 35 b的耗竭会改变Cdc25B和Cdc25C转录本的可变剪接同工型的比率。总之,我们的结果表明,U2AF 35 a对于HeLa细胞分裂必不可少,并暗示了U2AF 35 蛋白质同工型作为特定子集的选择性剪接调节剂的新作用。基因。

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