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Pcf11 orchestrates transcription termination pathways in yeast

机译:Pcf11协调酵母中的转录终止途径

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摘要

In Saccharomyces cerevisiae, short noncoding RNA (ncRNA) generated by RNA polymerase II (Pol II) are terminated by the NRD complex consisting of Nrd1, Nab3, and Sen1. We now show that Pcf11, a component of the cleavage and polyadenylation complex (CPAC), is also generally required for NRD-dependent transcription termination through the action of its C-terminal domain (CTD)-interacting domain (CID). Pcf11 localizes downstream from Nrd1 on NRD terminators, and its recruitment depends on Nrd1. Furthermore, mutation of the Pcf11 CID results in Nrd1 retention on chromatin, delayed degradation of ncRNA, and restricted Pol II CTD Ser2 phosphorylation and Sen1-Pol II interaction. Finally, the pcf11-13 and sen1-1 mutant phenotypes are very similar, as both accumulate RNA: DNA hybrids and display Pol II pausing downstream from NRD terminators. We predict a mechanism by which the exchange of Nrd1 and Pcf11 on chromatin facilitates Pol II pausing and CTD Ser2-P phosphorylation. This in turn promotes Sen1 activity that is required for NRD-dependent transcription termination in vivo.
机译:在啤酒酵母中,由RNA聚合酶II(Pol II)生成的短非编码RNA(ncRNA)由Nrd1,Nab3和Sen1组成的NRD复合体终止。我们现在显示Pcf11,裂解和聚腺苷酸化复合物(CPAC)的组成部分,通常也需要NRD依赖性转录终止通过其C末端域(CTD)相互作用域(CID)的作用。 Pcf11位于Nrd1下游的NRD终止子上,其募集取决于Nrd1。此外,Pcf11 CID的突变会导致Nrd1在染色质上保留,延迟ncRNA降解,并限制Pol II CTD Ser2磷酸化和Sen1-Pol II相互作用。最后,pcf11-13和sen1-1突变表型非常相似,因为它们都积累了RNA:DNA杂种,并在NRD终止子的下游显示了停顿的Pol II。我们预测一种机制,通过该机制,染色质上的Nrd1和Pcf11交换可促进Pol II暂停和CTD Ser2-P磷酸化。反过来,这会促进体内NRD依赖性转录终止所需的Sen1活性。

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