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Involvement of S. cerevisiae Rpb4 in subset of pathways related to transcription elongation

机译:对与转录伸长率有关的途径的群体中的S.Cerevisiae rpb4参与

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Yeast Rpb4, a subunit of RNA pol II is not essential for viability but is involved in multiple cellular phenotypes such as temperature sensitivity, enhanced pseudohyphal morphology, and decreased sporulation. Both in vivo and in vitro studies strongly support involvement of Rpb4 in transcription initiation, while its role in transcription elongation is not entirely consistent. Here we show that Rpb4 is not required for recruitment of RNA pol II on the coding region of YLR454w, a representative long gene. Yet we find strong genetic interaction of rpb4{increment} with mutants in many transcription elongation factors such as Paf1, Spt4, Dst1, Elp3 and Rpb9. We demonstrate that, Rpb4 interacts functionally with Paf1 to affect the transcription elongation of the FKS1 gene. Our results suggest that while Rpb4 is not required for general transcription elongation, it could support transcription elongation for specific of class of genes by interaction with other elongation factors.
机译:酵母RPB4,RNA POL II的亚基对活力不是必需的,但参与多种细胞表型,例如温度敏感性,增强的假鼠形态和孢子率下降。 体内和体外研究都强烈地支持RPB4在转录开始中的涉及,而其在转录伸长中的作用并不完全一致。 在这里,我们表明RPB4不需要募集在代表性长基因的YLR454W编码区上的RNA POL II。 然而,我们发现RPB4 {递增}的强遗传相互作用在许多转录伸长因子(如PAF1,SPT4,DST1,ELP3和RPB9)中的突变体相互作用。 我们证明,RPB4在功能上与PAF1相互作用以影响FKS1基因的转录伸长。 我们的研究结果表明,虽然一般转录伸长率不需要RPB4,但它可以通过与其他伸长因子相互作用来支持特定基因类别的转录伸长率。

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