首页> 美国卫生研究院文献>Molecular and Cellular Biology >Impaired Core Promoter Recognition Caused by Novel Yeast TAF145 Mutations Can Be Restored by Creating a Canonical TATA Element within the Promoter Region of the TUB2 Gene
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Impaired Core Promoter Recognition Caused by Novel Yeast TAF145 Mutations Can Be Restored by Creating a Canonical TATA Element within the Promoter Region of the TUB2 Gene

机译:新型酵母TAF145突变引起的核心启动子识别受损可通过在TUB2基因启动子区域内创建典型TATA元件来恢复

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摘要

The general transcription factor TFIID, which is composed of TATA-binding protein (TBP) and an array of TBP-associated factors (TAFs), has been shown to play a crucial role in recognition of the core promoters of eukaryotic genes. We isolated Saccharomyces cerevisiae yeast TAF145 (yTAF145) temperature-sensitive mutants in which transcription of a specific subset of genes was impaired at restrictive temperatures. The set of genes affected in these mutants overlapped with but was not identical to the set of genes affected by a previously reported yTAF145 mutant (W.-C. Shen and M. R. Green, Cell 90:615–624, 1997). To identify sequences which rendered transcription yTAF145 dependent, we conducted deletion analysis of the TUB2 promoter using a novel mini-CLN2 hybrid gene reporter system. The results showed that the yTAF145 mutations we isolated impaired core promoter recognition but did not affect activation by any of the transcriptional activators we tested. These observations are consistent with the reported yTAF145 dependence of the CLN2 core promoter in the mutant isolated by Shen and Green, although the CLN2 core promoter functioned normally in the mutants we report here. These results suggest that different promoters require different yTAF145 functions for efficient transcription. Interestingly, insertion of a canonical TATA element into the TATA-less TUB2 promoter rescued impaired transcription in the yTAF145 mutants we studied. It therefore appears that strong binding of TBP to the core promoter can alleviate the requirement for at least one yTAF145 function.
机译:由TATA结合蛋白(TBP)和一系列TBP相关因子(TAFs)组成的通用转录因子TFIID已显示出在识别真核基因核心启动子中的关键作用。我们分离了酿酒酵母酵母TAF145(yTAF145)温度敏感突变体,其中特定基因子集的转录在限制性温度下受损。在这些突变体中受影响的基因组与先前报道的yTAF145突变体影响的基因组重叠但不相同(W.-C. Shen和M. R. Green,Cell 90:615-624,1997)。为了鉴定赋予yTAF145转录依赖性的序列,我们使用新型mini-CLN2杂种基因报告系统对TUB2启动子进行了缺失分析。结果表明,我们分离出的yTAF145突变削弱了核心启动子的识别,但并未影响我们测试的任何转录激活因子的激活。这些观察结果与Shen和Green分离的突变体中CLN2核心启动子的yTAF145依赖性报道相符,尽管CLN2核心启动子在我们在此报告的突变体中正常运行。这些结果表明,不同的启动子需要不同的yTAF145功能才能有效转录。有趣的是,将经典的TATA元件插入无TATA的TUB2启动子中可以挽救我们研究的yTAF145突变体中受损的转录。因此,看来TBP与核心启动子的强结合可以减轻对至少一种yTAF145功能的需求。

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