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A Novel Intra-U1 snRNP Cross-Regulation Mechanism: Alternative Splicing Switch Links U1C and U1-70K Expression

机译:一种新型的U1内部snRNP交叉调节机制:可变剪接开关链接U1C和U1-70K表达

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摘要

The U1 small nuclear ribonucleoprotein (snRNP)-specific U1C protein participates in 5′ splice site recognition and regulation of pre-mRNA splicing. Based on an RNA-Seq analysis in HeLa cells after U1C knockdown, we found a conserved, intra-U1 snRNP cross-regulation that links U1C and U1-70K expression through alternative splicing and U1 snRNP assembly. To investigate the underlying regulatory mechanism, we combined mutational minigene analysis, in vivo splice-site blocking by antisense morpholinos, and in vitro binding experiments. Alternative splicing of U1-70K pre-mRNA creates the normal (exons 7–8) and a non-productive mRNA isoform, whose balance is determined by U1C protein levels. The non-productive isoform is generated through a U1C-dependent alternative 3′ splice site, which requires an adjacent cluster of regulatory 5′ splice sites and binding of intact U1 snRNPs. As a result of nonsense-mediated decay (NMD) of the non-productive isoform, U1-70K mRNA and protein levels are down-regulated, and U1C incorporation into the U1 snRNP is impaired. U1-70K/U1C-deficient particles are assembled, shifting the alternative splicing balance back towards productive U1-70K splicing, and restoring assembly of intact U1 snRNPs. Taken together, we established a novel feedback regulation that controls U1-70K/U1C homeostasis and ensures correct U1 snRNP assembly and function.
机译:U1小核糖核蛋白(snRNP)特异性U1C蛋白参与5'剪接位点识别和前mRNA剪接的调控。基于U1C敲低后HeLa细胞中的RNA-Seq分析,我们发现了一个保守的U1内部snRNP交叉调节,该交叉调节通过替代剪接和U1 snRNP组装将U1C和U1-70K表达联系起来。为了研究潜在的调控机制,我们结合了突变小基因分析,反义吗啉代的体内剪接位点阻断和体外结合实验。 U1-70K pre-mRNA的可变剪接产生正常的(第7-8号外显子)和非生产性的mRNA亚型,其平衡取决于U1C蛋白水平。非生产性同工型是通过依赖于U1C的替代3'剪接位点生成的,它需要相邻的5'剪接位点簇和完整的U1 snRNP的结合。由于非生产型亚型的无义介导的衰变(NMD),U1-70K mRNA和蛋白质水平被下调,U1C掺入U1 snRNP的能力受到损害。组装U1-70K / U1C不足的粒子,将替代的拼接平衡转移回富有成效的U1-70K拼接,并恢复完整的U1 snRNP的组装。综上所述,我们建立了一种新颖的反馈调节器,可控制U1-70K / U1C稳态,并确保正确的U1 snRNP组装和功能。

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