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首页> 外文期刊>Molecular and Cellular Biology >RNA Polymerase I Transcription Factors in Active Yeast rRNA Gene Promoters Enhance UV Damage Formation and Inhibit Repair
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RNA Polymerase I Transcription Factors in Active Yeast rRNA Gene Promoters Enhance UV Damage Formation and Inhibit Repair

机译:活性酵母rRNA基因启动子中的RNA聚合酶I转录因子增强UV损伤的形成并抑制修复

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UV photofootprinting and repair of pyrimidine dimers by photolyase was used to investigate chromatin structure, protein-DNA interactions, and DNA repair in the spacer and promoter of Saccharomyces cerevisiae rRNA genes. Saccharomyces cerevisiae contains about 150 copies of rRNA genes separated by nontranscribed spacers. Under exponential growth conditions about half of the genes are transcribed by RNA polymerase I (RNAP-I). Initiation of transcription requires the assembly of the upstream activating factor (UAF), the core factor (CF), TATA binding protein, and RNAP-I with Rrn3p on the upstream element and core promoter. We show that UV irradiation of wild-type cells and transcription factor mutants generates photofootprints in the promoter elements. The core footprint depends on UAF, while the UAF footprint was also detected in absence of the CFs. Fractionation of active and inactive promoters showed the core footprint mainly in the active fraction and similar UAF footprints in both fractions. DNA repair by photolyase was strongly inhibited in active promoters but efficient in inactive promoters. The data suggest that UAF is present in vivo in active and inactive promoters and that recruitment of CF and RNAP-I to active promoters generates a stable complex which inhibits repair.
机译:用紫外光足迹法和光裂解酶修复嘧啶二聚体,研究酿酒酵母rRNA基因的间隔区和启动子中的染色质结构,蛋白质-DNA相互作用以及DNA修复。酿酒酵母(Saccharomyces cerevisiae)包含约150个拷贝的rRNA基因,由非转录间隔区分隔。在指数生长条件下,大约一半的基因被RNA聚合酶I(RNAP-1)转录。转录的起始需要上游激活因子(UAF),核心因子(CF),TATA结合蛋白和RNAP-1的组装,上游元件和核心启动子上带有Rrn3p。我们显示,野生型细胞和转录因子突变体的紫外线辐射在启动子元件中产生光足迹。核心足迹取决于UAF,而在没有CF的情况下也可以检测到UAF足迹。活性和非活性启动子的分馏显示核心足迹主要在活性馏分中,而在两个馏分中相似的UAF足迹。通过光解酶进行的DNA修复在活性启动子中被强烈抑制,但在非活性启动子中有效。数据表明,UAF体内存在于有活性和无活性的启动子中,CF和RNAP-1募集到有活性的启动子会产生稳定的复合物,从而抑制修复。

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