School of Life Sciences, Gwangju Institute of Science and Technology, Gwangju 500-712, Korea.
JiangSu Key Laboratory of Neuroregeneration, Nantong University, Nantong 226019, China.
Cells. 2020 Apr 10;9(4):936. doi: 10.3390/cells9040936.
The ratio control of 4R-Tau/3R-Tau by alternative splicing of Tau exon 10 is important for maintaining brain functions. In this study, we show that hnRNP A1 knockdown induces inclusion of endogenous Tau exon 10, conversely, overexpression of hnRNP A1 promotes exon 10 skipping of Tau. In addition, hnRNP A1 inhibits splicing of intron 9, but not intron 10. Furthermore, hnRNP A1 directly interacts with the 3' splice site of exon 10 to regulate its functions in alternative splicing. Finally, gene ontology analysis demonstrates that hnRNP A1-induced splicing and gene expression targets a subset of genes with neuronal function.
通过 Tau 外显子 10 的选择性剪接来控制 4R-Tau/3R-Tau 的比例对于维持大脑功能很重要。在这项研究中,我们发现 hnRNP A1 的敲低诱导内源性 Tau 外显子 10 的包含,相反,hnRNP A1 的过表达促进 Tau 外显子 10 的跳过。此外,hnRNP A1 抑制内含子 9 的剪接,但不抑制内含子 10 的剪接。此外,hnRNP A1 直接与外显子 10 的 3' 剪接位点相互作用,以调节其在选择性剪接中的功能。最后,基因本体分析表明,hnRNP A1 诱导的剪接和基因表达作用于具有神经元功能的基因子集。