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RNA Polymerase II Mutations Conferring Defects in Poly(A) Site Cleavage and Termination in Saccharomyces cerevisiae

机译:RNA聚合酶II突变赋予缺陷在酿酒酵母中的poly(A)位点切割和终止。

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摘要

Transcription termination by RNA polymerase (Pol) II is an essential but poorly understood process. In eukaryotic nuclei, the 3′ ends of mRNAs are generated by cleavage and polyadenylation, and the same sequence elements that specify that process are required for downstream release of the polymerase from the DNA. Although Pol II is known to bind proteins required for both events, few studies have focused on Pol II mutations as a means to uncover the mechanisms that couple polyadenylation and termination. We performed a genetic screen in the yeast Saccharomyces cerevisiae to isolate mutations in the N-terminal half of , the second largest Pol II subunit, that conferred either a decreased or increased response to a well-characterized poly(A) site. Most of the mutant alleles encoded substitutions affecting either surface residues or conserved active site amino acids at positions important for termination by other RNA polymerases. Reverse transcription polymerase chain reaction experiments revealed that transcript cleavage at the poly(A) site was impaired in both classes of increased readthrough mutants. Transcription into downstream sequences beyond where termination normally occurs was also probed. Although most of the tested readthrough mutants showed a reduction in termination concomitant with the reduced poly(A) usage, these processes were uncoupled in at least one mutant strain. Several alleles were found to be similar or identical to published mutants associated with defective TFIIF function. Tests of these and additional mutations known to impair −TFIIF interactions revealed similar decreased readthrough phenotypes, suggesting that TFIIF may have a role in 3′ end formation and termination.
机译:RNA聚合酶(Pol)II终止转录是必不可少的,但尚不清楚。在真核中,mRNA的3'端是通过切割和聚腺苷酸化作用产生的,而从DNA下游释放聚合酶所需的顺序序列元素也相同。尽管已知Pol II结合了这两个事件所需的蛋白质,但很少有研究集中在Pol II突变上,以揭示偶联多腺苷酸化和终止的机制。我们在酿酒酵母中进行了基因筛选,以分离第二大Pol II亚基N端一半的突变,从而赋予对特征明确的poly(A)位点的响应减少或增加。大多数突变等位基因在对其他RNA聚合酶终止重要的位置上编码影响表面残基或保守的活性位点氨基酸的取代。逆转录聚合酶链反应实验表明,在这两类增加的通读突变体中,poly(A)位点的转录切割均受到损害。还探查了转录成下游序列的范围,该序列超出通常发生终止的位置。尽管大多数测试的通读突变体显示终止减少与减少的poly(A)伴随使用,但这些过程在至少一个突变体菌株中不偶联。发现几个等位基因与与缺陷TFIIF功能相关的已发表突变相似或相同。对这些已知会削弱-TFIIF相互作用的突变以及其他突变的测试表明,相似的降低的阅读表型,这表明TFIIF可能在3'末端形成和终止中起作用。

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