Saijo Saki, Kuwano Yuki, Masuda Kiyoshi, Nishikawa Tatsuya, Rokutan Kazuhito, Nishida Kensei
Department of Pathophysiology, Institute of Biomedical Sciences, Tokushima University Graduate School.
J Med Invest. 2016;63(3-4):219-26. doi: 10.2152/jmi.63.219.
Serine/arginine-rich splicing factors (SRSFs) play wide-ranging roles in gene expression through post-transcriptional regulation as well as pre-mRNA splicing. SRSF7 was highly expressed in colon cancer tissues, and its knockdown inhibited cell growth in colon cancer cells (HCT116) in association with altered expression of 4,499 genes. The Ingenuity Pathway Analysis revealed that cell cycle-related canonical pathways were ranked as the highly enriched category in the affected genes. Western blotting confirmed that p21, a master regulator in cell cycle, was increased without any induction of p53 in SRSF7 knockdown cells. Furthermore, cyclin-dependent kinase 2 and retinoblastoma protein were remained in the hypophosphorylated state. In addition, the SRSF7 knockdown-induced cell growth inhibition was observed in p53-null HCT116 cells, suggesting that p53-independent pathways were involved in the SRSF7 knockdown-induced cell growth inhibition. The reduction of SRSF7 stabilized cyclin-dependent kinase inhibitor 1A (CDKN1A) mRNA without any activation of the CDKN1A promoter. Interestingly, SRSF7 knockdown also blocked p21 degradation. These results suggest that the reduction of SRSF7 post-transcriptionally regulates p21 induction at the multistep processes. Thus, the present findings disclose a novel, important role of SRSF7 in cell proliferation through regulating p21 levels. J. Med. Invest. 63: 219-226, August, 2016.
富含丝氨酸/精氨酸的剪接因子(SRSFs)通过转录后调控以及前体mRNA剪接在基因表达中发挥广泛作用。SRSF7在结肠癌组织中高表达,其敲低抑制了结肠癌细胞(HCT116)的细胞生长,并与4499个基因的表达改变有关。 Ingenuity通路分析显示,细胞周期相关的经典通路在受影响的基因中被列为高度富集的类别。蛋白质印迹证实,细胞周期的主要调节因子p21在SRSF7敲低的细胞中增加,而没有p53的任何诱导。此外,细胞周期蛋白依赖性激酶2和视网膜母细胞瘤蛋白保持低磷酸化状态。此外,在p53缺失的HCT116细胞中观察到SRSF7敲低诱导的细胞生长抑制,表明p53非依赖性途径参与了SRSF7敲低诱导的细胞生长抑制。SRSF7的减少稳定了细胞周期蛋白依赖性激酶抑制剂1A(CDKN1A)mRNA,而没有CDKN1A启动子的任何激活。有趣的是,SRSF7敲低也阻断了p21的降解。这些结果表明,SRSF7的减少在多步骤过程中转录后调节p21的诱导。因此,本研究结果揭示了SRSF7通过调节p21水平在细胞增殖中的新的重要作用。《医学研究杂志》63: 219 - 226,2016年8月。