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RNA polymerase II elongation factors Spt4p and Spt5p play roles in transcription elongation by RNA polymerase I and rRNA processing

机译:RNA聚合酶II延伸因子Spt4p和Spt5p在RNA聚合酶I和rRNA加工的转录延伸中发挥作用

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摘要

Previous investigations into the mechanisms that control RNA Polymerase (Pol) I transcription have primarily focused on the process of transcription initiation, thus little is known regarding postinitiation steps in the transcription cycle. Spt4p and Spt5p are conserved throughout eukaryotes, and they affect elongation by Pol II. We have found that these two proteins copurify with Pol I and associate with the rDNA in vivo. Disruption of the gene for Spt4p resulted in a modest decrease in growth and rRNA synthesis rates at the permissive temperature, 30°C. Furthermore, biochemical and EM analyses showed clear defects in rRNA processing. These data suggest that Spt4p, Spt5p, and, potentially, other regulators of Pol I transcription elongation play important roles in coupling rRNA transcription to its processing and ribosome assembly.
机译:以前对控制RNA聚合酶(Pol)I转录机制的研究主要集中在转录起始过程,因此对转录循环中的后起始步骤知之甚少。 Spt4p和Spt5p在整个真核生物中都是保守的,它们会影响Pol II的延伸。我们发现这两种蛋白质与Pol I共纯化并在体内与rDNA缔合。 Spt4p基因的破坏导致在30°C的允许温度下生长和rRNA合成速率的适度下降。此外,生化和EM分析显示rRNA加工过程中存在明显缺陷。这些数据表明,Spt4p,Spt5p以及可能的其他Pol I转录延长调节因子在将rRNA转录与其加工和核糖体组装偶联中起重要作用。

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