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首页> 外文期刊>Molecular and Cellular Biology >Widespread Use of TATA Elements in the Core Promoters for RNA Polymerases III, II, and I in Fission Yeast
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Widespread Use of TATA Elements in the Core Promoters for RNA Polymerases III, II, and I in Fission Yeast

机译:在裂殖酵母中RNA聚合酶III,II和I的核心启动子中广泛使用TATA元素

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摘要

In addition to directing transcription initiation, core promoters integrate input from distal regulatory elements. Except for rare exceptions, it has been generally found that eukaryotic tRNA and rRNA genes do not contain TATA promoter elements and instead use protein-protein interactions to bring the TATA-binding protein (TBP), to the core promoter. Genomewide analysis revealed TATA elements in the core promoters of tRNA and 5S rRNA (Pol III), U1 to U5 snRNA (Pol II), and 37S rRNA (Pol I) genes in Schizosaccharomyces pombe. Using tRNA-dependent suppression and other in vivo assays, as well as in vitro transcription, we demonstrated an obligatory requirement for upstream TATA elements for tRNA and 5S rRNA expression in S. pombe. The Pol III initiation factor Brf is found in complexes with TFIIIC and Pol III in S. pombe, while TBP is not, consistent with independent recruitment of TBP by TATA. Template commitment assays are consistent with this and confirm that the mechanisms of transcription complex assembly and initiation by Pol III in S. pombe differ substantially from those in other model organisms. The results were extended to large-rRNA synthesis, as mutation of the TATA element in the Pol I promoter also abolishes rRNA expression in fission yeast. A survey of other organisms' genomes reveals that a substantial number of eukaryotes may use widespread TATAs for transcription. These results indicate the presence of TATA-unified transcription systems in contemporary eukaryotes and provide insight into the residual need for TBP by all three Pols in other eukaryotes despite a lack of TATA elements in their promoters.
机译:除了指导转录起始外,核心启动子还整合了远端调控元件的输入。除了极少数例外,通常发现真核tRNA和rRNA基因不包含TATA启动子元件,而是使用蛋白质-蛋白质相互作用将TATA结合蛋白(TBP)带到核心启动子。全基因组分析显示裂殖酵母(Schizosaccharomyces pombe)中tRNA和5S rRNA(Pol III),U1至U5 snRNA(Pol II)和37S rRNA(Pol I)核心启动子中的TATA元件。依赖抑制和其他体内测定以及体外转录,我们证明了上游TATA元素对 S中tRNA和5S rRNA表达的强制性要求。蓬贝。 Pol III起始因子Brf与 S中的TFIIIC和Pol III形成复合物。 pombe ,而TBP却不符合TATA对TBP的独立招募。模板承诺试验与此一致,并证实了转录复合物组装和由Pol III在 S中启动的机制。 pombe 与其他模型生物大不相同。结果扩展到大rRNA合成,因为Pol I启动子中TATA元件的突变也消除了裂变酵母中rRNA的表达。对其他生物的基因组进行的调查显示,大量真核生物可能使用广泛的TATA进行转录。这些结果表明在当代真核生物中存在TATA统一的转录系统,并提供了对其他真核生物中所有三个Pol剩余的TBP需求的洞察力,尽管启动子中缺少TATA元件。

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