School of life Sciences, Gwangju Institute of Science and Technology, Gwangju 500-712, Korea.
Institute of Molecular Genetics "Luigi Luca Cavalli-Sforza", National Research Council, Via Abbiategrasso 207, 27100 Pavia, Italy.
Cells. 2021 Mar 19;10(3):679. doi: 10.3390/cells10030679.
Alternative splicing (AS) is an important posttranscriptional regulatory process. Damaged or unnecessary cells need to be removed though apoptosis to maintain physiological processes. Caspase-2 pre-mRNA produces pro-apoptotic long mRNA and anti-apoptotic short mRNA isoforms through AS. How AS of Caspase-2 is regulated remains unclear. In the present study, we identified a novel regulatory protein SRSF9 for AS of Caspase-2 cassette exon 9. Knock-down (KD) of SRSF9 increased inclusion of cassette exon and on the other hand, overexpression of SRSF9 decreased inclusion of this exon. Deletion mutagenesis demonstrated that exon 9, parts of intron 9, exon 8 and exon 10 were not required for the role of SRSF9 in Caspase-2 AS. However, deletion and substitution mutation analysis revealed that AGGAG sequence located at exon 10 provided functional target for SRSF9. In addition, RNA-pulldown mediated immunoblotting analysis showed that SRSF9 interacted with this sequence. Gene ontology analysis of RNA-seq from SRSF9 KD cells demonstrates that SRSF9 could regulate AS of a subset of apoptosis related genes. Collectively, our results reveal a basis for regulation of Caspase-2 AS.
可变剪接 (AS) 是一种重要的转录后调控过程。通过细胞凋亡去除受损或不必要的细胞以维持生理过程。Caspase-2 前体 mRNA 通过 AS 产生促凋亡的长 mRNA 和抗凋亡的短 mRNA 异构体。Caspase-2 的 AS 如何受到调控尚不清楚。在本研究中,我们鉴定了一种 Caspase-2 盒外显子 9 可变剪接的新型调节蛋白 SRSF9。SRSF9 的敲低 (KD) 增加了盒外显子的包含,另一方面,SRSF9 的过表达减少了该外显子的包含。缺失突变分析表明,外显子 9、部分内含子 9、外显子 8 和外显子 10 对于 SRSF9 在 Caspase-2 AS 中的作用不是必需的。然而,缺失和取代突变分析表明,位于外显子 10 的 AGGAG 序列为 SRSF9 提供了功能靶标。此外,RNA 下拉介导的免疫印迹分析表明 SRSF9 与该序列相互作用。SRSF9 KD 细胞的 RNA-seq 进行的基因本体分析表明,SRSF9 可以调节一组与凋亡相关的基因的 AS。总之,我们的研究结果揭示了 Caspase-2 AS 调控的基础。