Key Laboratory of Biorheological Science and Technology, Ministry of Education, College of Bioengineering, Chongqing University, Chongqing 400044, China.
Curr Stem Cell Res Ther. 2012 Nov;7(6):400-6. doi: 10.2174/157488812804484666.
The alternative splicing of precursor mRNA is an essential mechanism for protein diversity. It plays important biological roles, such as proliferation, differentiation and development of cells. Furthermore, alternative splicing participates in the pathogenesis of diseases, including cancer. Thus, in-depth understanding of splicing regulation is of great significance. Regulation of alternative splicing is an extraordinary complicated process in which several signal molecules are at work. Besides the cis-elements and trans-factors, several lines of evidences suggest that other molecules, structures or process also regulate splicing, such as RNA structures, transcription and transcription factors, chromatin and protein. Meanwhile, increasing body of evidence shows that alternative splicing correlated closely to stem cell lineage differentiation. It means that there is a fundamental role for splicing in controlling regulatory program required for cell lineage differentiation. This review systematically sums up the regulation of alternative splicing and summarizes the splicing events during cell lineage differentiation of stem cells.
前体 mRNA 的选择性剪接是蛋白质多样性的重要机制。它在细胞的增殖、分化和发育等方面发挥着重要的生物学作用。此外,选择性剪接还参与了疾病的发病机制,包括癌症。因此,深入了解剪接调控具有重要意义。剪接调控是一个极其复杂的过程,其中有几个信号分子在起作用。除了顺式元件和反式因子外,还有几条证据表明,其他分子、结构或过程也调节剪接,如 RNA 结构、转录和转录因子、染色质和蛋白质。同时,越来越多的证据表明,选择性剪接与干细胞谱系分化密切相关。这意味着剪接在控制细胞谱系分化所需的调控程序中起着基础性作用。本综述系统总结了选择性剪接的调控,并总结了干细胞细胞谱系分化过程中的剪接事件。