首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >SKIP counteracts p53-mediated apoptosis via selective regulation of p21Cip1 mRNA splicing.
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SKIP counteracts p53-mediated apoptosis via selective regulation of p21Cip1 mRNA splicing.

机译:SKIP通过选择性调节p21Cip1 mRNA剪接来抵消p53介导的细胞凋亡。

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摘要

The Ski-interacting protein SKIP/SNW1 functions as both a splicing factor and a transcriptional coactivator for induced genes. We showed previously that transcription elongation factors such as SKIP are dispensable in cells subjected to DNA damage stress. However, we report here that SKIP is critical for both basal and stress-induced expression of the cell cycle arrest factor p21(Cip1). RNAi chromatin immunoprecipitation (RNAi-ChIP) and RNA immunoprecipitation (RNA-IP) experiments indicate that SKIP is not required for transcription elongation of the gene under stress, but instead is critical for splicing and p21(Cip1) protein expression. SKIP interacts with the 3' splice site recognition factor U2AF65 and recruits it to the p21(Cip1) gene and mRNA. Remarkably, SKIP is not required for splicing or loading of U2AF65 at other investigated p53-induced targets, including the proapoptotic gene PUMA. Consequently, depletion of SKIP induces a rapid down-regulation of p21(Cip1) and predisposes cells to undergo p53-mediated apoptosis, which is greatly enhanced by chemotherapeutic DNA damage agents. ChIP experiments reveal that SKIP is recruited to the p21(Cip1), and not PUMA, gene promoters, indicating that p21(Cip1) gene-specific splicing is predominantly cotranscriptional. The SKIP-associated factors DHX8 and Prp19 are also selectively required for p21(Cip1) expression under stress. Together, these studies define a new step that controls cancer cell apoptosis.
机译:滑雪互动蛋白SKIP / SNW1既是剪接因子,又是诱导基因的转录共激活因子。先前我们证明了转录延长因子(如SKIP)在遭受DNA损伤应激的细胞中是可有可无的。但是,我们在这里报告SKIP对于细胞周期停滞因子p21(Cip1)的基础表达和应激诱导表达都至关重要。 RNAi染色质免疫沉淀(RNAi-ChIP)和RNA免疫沉淀(RNA-IP)实验表明,在压力下该基因的转录延伸不需要SKIP,但是SKIP对于剪接和p21(Cip1)蛋白表达至关重要。 SKIP与3'剪接位点识别因子U2AF65相互作用,并将其募集到p21(Cip1)基因和mRNA。值得注意的是,将U2AF65剪接或装载到其他受研究的p53诱导的靶标上(包括促凋亡基因PUMA)不需要SKIP。因此,SKIP的消耗会诱导p21(Cip1)的快速下调,并使细胞易于经历p53介导的细胞凋亡,而化疗DNA损伤剂会大大增强这种凋亡。 ChIP实验表明,SKIP被募集到p21(Cip1),而不是PUMA基因启动子,这表明p21(Cip1)基因特异性剪接主要是共转录的。与SKIP相关的因子DHX8和Prp19也是p21(Cip1)在压力下表达的选择性选择。这些研究共同定义了控制癌细胞凋亡的新步骤。

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