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Analysis of Gene Induction and Arrest Site Transcription in Yeast with Mutations in the Transcription Elongation Machinery

机译:酵母中转录延伸机制突变的基因诱导和逮捕位点转录分析

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摘要

In vitro, transcript elongation by RNA polymerase II is impeded by DNA sequences, DNA-bound proteins, and small ligands. Transcription elongation factor SII (TFIIS) assists RNA polymerase II to transcribe through these obstacles. There is however, little direct evidence that SII-responsive arrest sites function in living cells nor that SII facilitates readthrough in vivo. Saccharomyces cerevisiae strains lacking elongation factor SII and/or containing a point mutation in the second largest subunit of RNA polymerase II, which slows the enzyme’s RNA elongation rate, grow slowly and have defects in mRNA metabolism, particularly in the presence of nucleotide- depleting drugs. Here we have examined transcriptional induction in strains lacking SII or containing the slow polymerase mutation. Both mutants and a combined double mutant were defective in induction of GAL1 and ENA1. This was not due to an increase in mRNA degradation and was independent of any drug treatment, although treatment with the nucleotide-depleting drug 6-azauracil exacerbated the effect preferentially in the mutants. These data are consistent with mutants in the Elongator complex, which show slow inductive responses. When a potent in vitro arrest site was transcribed in these strains, there was no perceptible effect upon mRNA accumulation. These data suggest that an alternative elongation surveillance mechanism exists in vivo to overcome arrest.
机译:在体外,DNA序列,DNA结合蛋白和小的配体阻碍了RNA聚合酶II的转录延长。转录延伸因子SII(TFIIS)协助RNA聚合酶II通过这些障碍进行转录。但是,几乎没有直接证据表明SII响应的阻滞位点在活细胞中起作用,也没有SII促进体内的通读。酿酒酵母菌株缺乏延伸因子SII和/或在RNA聚合酶II的第二大亚基中含有点突变,从而减慢了酶的RNA延伸速率,生长缓慢且在mRNA代谢中存在缺陷,特别是在存在核苷酸耗竭药物的情况下。在这里,我们检查了缺乏SII或含有慢聚合酶突变的菌株中的转录诱导。突变体和组合的双重突变体在诱导GAL1和ENA1方面均存在缺陷。这不是由于mRNA降解的增加,并且与任何药物治疗无关,尽管使用核苷酸耗尽药物6-氮杂尿嘧啶的治疗在突变体中优先加剧了这种作用。这些数据与Elongator复合物中的突变体一致,后者显示出缓慢的诱导反应。当在这些菌株中转录有效的体外停滞位点时,对mRNA的积累没有明显的影响。这些数据表明体内存在另一种延伸监测机制以克服停滞。

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  • 年(卷),期 -1(276),15
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  • 页码 11531–11538
  • 总页数 18
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