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首页> 外文期刊>Nucleic Acids Research >The mRNA degradation factor Xrn1 regulates transcription elongation in parallel to Ccr4
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The mRNA degradation factor Xrn1 regulates transcription elongation in parallel to Ccr4

机译:mRNA降解因子XRN1调节与CCR4平行的转录伸长率

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Co-transcriptional imprinting of mRNA by Rpb4 and Rpb7 subunits of RNA polymerase II (RNAPII) and by the Ccr4-Not complex conditions its post-transcriptional fate. In turn, mRNA degradation factors like Xrn1 are able to influence RNAPII-dependent transcription, making a feedback loop that contributes to mRNA homeostasis. In this work, we have used repressible yeast GAL genes to perform accurate measurements of transcription and mRNA degradation in a set of mutants. This genetic analysis uncovered a link from mRNA decay to transcription elongation. We combined this experimental approach with computational multi-agent modelling and tested different possibilities of Xrn1 and Ccr4 action in gene transcription. This double strategy brought us to conclude that both Xrn1-decaysome and Ccr4-Not regulate RNAPII elongation, and that they do it in parallel. We validated this conclusion measuring TFIIS genome-wide recruitment to elongating RNAPII. We found that xrn1 Delta and ccr4 Delta exhibited very different patterns of TFIIS versus RNAPII occupancy, which confirmed their distinct role in controlling transcription elongation. We also found that the relative influence of Xrn1 and Ccr4 is different in the genes encoding ribosomal proteins as compared to the rest of the genome.
机译:通过RNA聚合酶II(RNAPII)的RPB4和RPB7亚基的MRNA和CCR4 - 不复杂条件的共转录印迹其后转录命运。反过来,XRN1等mRNA降解因子能够影响RNAPII依赖性转录,使得有助于mRNA稳态的反馈环。在这项工作中,我们使用了可压缩酵母加仑基因在一组突变体中进行准确测量转录和mRNA劣化。该遗传分析未发现来自mRNA衰减到转录伸长的链接。我们将这种实验方法与计算多蛋白质建模的实验方法相结合,并测试了基因转录中XRN1和CCR4作用的不同可能性。这种双重策略使我们得出结论,XRN1-Decaysome和CCR4 - 不调节RNAPII伸长率,并且它们并行地进行。我们验证了该结论,测量了TFIIS基因组招生以伸长RNAPII。我们发现XRN1 Delta和CCR4 Delta表现出非常不同的TFII模式与RNAPII占用,这证实了它们在控制转录伸长率方面的不同作用。我们还发现,与基因组的其余部分相比,在编码核糖体蛋白的基因中,XRN1和CCR4的相对影响是不同的。

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