Equipe 2 Bases Moléculaires de la Progression des Cancers du Poumon, Grenoble, France.
Cell Cycle. 2011 Jun 15;10(12):1968-77. doi: 10.4161/cc.10.12.15825.
Sodium butyrate (NaBu) is a histone deacetylase inhibitor that exhibits numerous antiproliferative activities in various cancer cell lines, notably through the accumulation of the well-known cyclin-dependent kinase inhibitor p21(WAF1) . SRSF2 belongs to the family of SR proteins that are crucial regulators of constitutive and alternative pre-mRNA splicing. Previous studies demonstrated that NaBu alters pre-mRNA splicing patterns through upregulation of SR proteins expression in non-tumor cells. In this study, we show that NaBu also induces the accumulation of SRSF2 in human lung carcinoma cell lines. We recently identified a signaling network involving the acetyltransferase TIP60, the deacetylase HDAC6 and the SRPK kinases that regulates SRSF2 protein turnover through phosphorylation/acetylation modifications in response to cisplatin. Here, we show that the same signaling pathway controls SRSF2 protein expression upon NaBu treatment. Importantly, we further demonstrate that SRSF2 is required for the accumulation of p21(WAF1) at both mRNA and protein levels in response to NaBu. Finally, we provide evidence that a long-term NaBu-treatment triggers senescence in our cellular models, a phenomenon that is prevented by the knockdown of SRSF2. Altogether, these results unravel a new function of SRSF2 in the process of cellular senescence and identify the cyclin-Cdk inhibitor p21(WAF1) as a key target of SRSF2 in this setting.
丁酸钠(NaBu)是一种组蛋白去乙酰化酶抑制剂,在各种癌细胞系中表现出多种抗增殖活性,特别是通过积累众所周知的细胞周期蛋白依赖性激酶抑制剂 p21(WAF1)[1]。SRSF2 属于 SR 蛋白家族,是组成型和选择性前体 mRNA 剪接的关键调节剂。先前的研究表明,NaBu 通过上调非肿瘤细胞中 SR 蛋白的表达来改变前体 mRNA 剪接模式[2]。在本研究中,我们表明 NaBu 也诱导人肺癌细胞系中 SRSF2 的积累[3]。我们最近确定了一个涉及乙酰转移酶 TIP60、去乙酰化酶 HDAC6 和 SRPK 激酶的信号网络,该网络通过磷酸化/乙酰化修饰来调节 SRSF2 蛋白周转,以响应顺铂[4]。在这里,我们表明相同的信号通路控制 NaBu 处理时 SRSF2 蛋白的表达[5]。重要的是,我们进一步证明,SRSF2 是响应 NaBu 时 p21(WAF1)在 mRNA 和蛋白水平积累所必需的[6]。最后,我们提供的证据表明,长期的 NaBu 处理会引发我们的细胞模型衰老,而 SRSF2 的敲低可以阻止这种现象[7]。总之,这些结果揭示了 SRSF2 在细胞衰老过程中的新功能,并确定细胞周期蛋白-Cdk 抑制剂 p21(WAF1)作为 SRSF2 在这种情况下的关键靶标[8]。