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Protein Arginine Methylation Facilitates Cotranscriptional Recruitment of Pre-mRNA Splicing Factors

机译:蛋白精氨酸甲基化促进前mRNA剪接因子的共转录招募。

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Cotranscriptional recruitment of pre-mRNA splicing factors to their genomic targets facilitates efficient and ordered assembly of a mature messenger ribonucleoprotein particle (mRNP). However, how the cotranscriptional recruitment of splicing factors is regulated remains largely unknown. Here, we demonstrate that protein arginine methylation plays a novel role in regulating this process in Saccharomyces cerevisiae. Our data show that Hmt1, the major type I arginine methyltransferase, methylates Snp1, a U1 small nuclear RNP (snRNP)-specific protein, and that the mammalian Snp1 homolog, U1-70K, is likewise arginine methylated. Genome-wide localization analysis reveals that the deletion of the HMT1 gene deregulates the recruitment of U1 snRNP and its associated components to intron-containing genes (ICGs). In the same context, splicing factors acting downstream of U1 snRNP addition bind to a reduced number of ICGs. Quantitative measurement of the abundance of spliced target transcripts shows that these changes in recruitment result in an increase in the splicing efficiency of developmentally regulated mRNAs. We also show that in the absence of either Hmt1 or of its catalytic activity, an association between Snp1 and the SR-like protein Npl3 is substantially increased. Together, these data support a model whereby arginine methylation modulates dynamic associations between SR-like protein and pre-mRNA splicing factor to promote target specificity in splicing.
机译:将前mRNA剪接因子共转录募集到其基因组靶标可促进成熟信使核糖核蛋白颗粒(mRNP)的高效有序组装。然而,剪接因子的共转录募集是如何调控的仍然是未知的。在这里,我们证明了精氨酸甲基化在调控酿酒酵母中的过程中起着新的作用。我们的数据显示,Hmt1是主要的I型精氨酸甲基转移酶,甲基化Snp1(一种U1小核RNP(snRNP)特异性蛋白),而哺乳动物的Snp1同源物U1-70K同样被精氨酸甲基化。全基因组范围内的定位分析表明, HMT1 基因的缺失使U1 snRNP及其相关成分向含内含子的基因(ICG)的募集失调。在同一上下文中,在U1 snRNP添加下游起作用的剪接因子与数量减少的ICG结合。剪接靶转录本的丰度的定量测量表明,募集中的这些变化导致发育调控的mRNA的剪接效率增加。我们还显示,在没有Hmt1或其催化活性的情况下,Snp1和SR样蛋白Npl3之间的关联会大大增加。这些数据共同支持一个模型,其中精氨酸甲基化调节SR样蛋白与pre-mRNA剪接因子之间的动态关联,从而促进剪接中的靶标特异性。

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