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Promoter-Specific Shifts in Transcription Initiation Conferred by Yeast TFIIB Mutations Are Determined by the Sequence in the Immediate Vicinity of the Start Sites

机译:酵母TFIIB突变引起的转录启动子的特定于启动子的变化是由起始位点附近的序列决定的

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摘要

The general transcription factor IIB (TFIIB) is required for transcription of class II genes by RNA polymerase II. Previous studies demonstrated that mutations in the Saccharomyces cerevisiae SUA7 gene, which encodes TFIIB, can alter transcription initiation patterns in vivo. To further delineate the functional domain and residues of TFIIB involved in transcription start site utilization, a genetic selection was used to isolate S. cerevisiae TFIIB mutants exhibiting downstream shifts in transcription initiation in vivo. Both dominant and recessive mutations conferring downstream shifts were identified at multiple positions within a highly conserved homology block in the N-terminal region of the protein. The TFIIB mutations conferred downstream shifts in transcription initiation at the ADH1 and CYC1 promoters, whereas no significant shifts were observed at the HIS3 promoter. Analysis of a series of ADH1-HIS3 hybrid promoters and variant ADH1 and HIS3 promoters containing insertions, deletions, or site-directed base substitutions revealed that the feature that renders a promoter sensitive to TFIIB mutations is the sequence in the immediate vicinity of the normal start sites. We discuss these results in light of possible models for the mechanism of start site utilization by S. cerevisiae RNA polymerase II and the role played by TFIIB.
机译:RNA聚合酶II转录II类基因需要通用转录因子IIB(TFIIB)。先前的研究表明,编码TFIIB的啤酒酵母SUA7基因中的突变可以改变体内的转录起始模式。为了进一步描述转录起始位点利用中涉及的TFIIB的功能结构域和残基,使用遗传选择来分离酿酒酵母TFIIB突变体,其在体内转录起始中表现出下游的转变。赋予下游转移的显性和隐性突变都在该蛋白质N端区域的高度保守的同源性区块内的多个位置被鉴定。 TFIIB突变在ADH1和CYC1启动子上赋予转录起始下游变化,而在HIS3启动子上未观察到显着变化。对一系列ADH1-HIS3杂合启动子以及包含插入,缺失或定点碱基取代的ADH1和HIS3变异启动子的分析显示,使启动子对TFIIB突变敏感的特征是紧邻正常起始序列的序列网站。我们根据酿酒酵母RNA聚合酶II起始位点利用的机制和TFIIB发挥的作用的可能模型来讨论这些结果。

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