Modulation of RNA polymerase core functions by basal transcription factor TFB/TFIIB.

Finn Werner, Simone Wiesler, Sven Nottebaum, Robert O J Weinzierl
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引用次数: 7

Abstract

The archaeal basal transcriptional machinery consists of TBP (TATA-binding protein), TFB (transcription factor B; a homologue of eukaryotic TFIIB) and an RNA polymerase that is structurally very similar to eukaryotic RNA polymerase II. This constellation of factors is sufficient to assemble specifically on a TATA box-containing promoter and to initiate transcription at a specific start site. We have used this system to study the functional interaction between basal transcription factors and RNA polymerase, with special emphasis on the post-recruitment function of TFB. A bioinformatics analysis of the B-finger of archaeal TFB and eukaryotic TFIIB reveals that this structure undergoes rapid and apparently systematic evolution in archaeal and eukaryotic evolutionary domains. We provide a detailed analysis of these changes and discuss their possible functional implications.

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基础转录因子TFB/TFIIB对RNA聚合酶核心功能的调控。
古细菌的基础转录机制包括TBP (tata结合蛋白)、TFB(转录因子B;真核生物TFIIB的同源物)和一种结构上与真核生物RNA聚合酶II非常相似的RNA聚合酶。这组因子足以在TATA盒启动子上特异性组装,并在特定起始位点启动转录。我们利用该系统研究了基础转录因子与RNA聚合酶之间的功能相互作用,特别强调了TFB的招募后功能。对古生菌TFB和真核生物TFIIB b指的生物信息学分析表明,该结构在古生菌和真核生物进化域经历了快速而明显的系统进化。我们对这些变化进行了详细的分析,并讨论了它们可能的功能含义。
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