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Direct Modulation of RNA Polymerase Core Functions by Basal Transcription Factors

机译:通过基础转录因子直接调节RNA聚合酶核心功能。

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摘要

Archaeal RNA polymerases (RNAPs) are recruited to promoters through the joint action of three basal transcription factors: TATA-binding protein, TFB (archaeal homolog of TFIIB), and TFE (archaeal homolog of TFIIE). Our results demonstrate several new insights into the mechanisms of TFB and TFE during the transcription cycle. (i) The N-terminal Zn ribbon of TFB displays a surprising degree of redundancy for the recruitment of RNAP during transcription initiation in the archaeal system. (ii) The B-finger domain of TFB participates in transcription initiation events by stimulating abortive and productive transcription in a recruitment-independent function. TFB thus combines physical recruitment of the RNAP with an active role in influencing the catalytic properties of RNAP during transcription initiation. (iii) TFB mutations are complemented by TFE, thereby demonstrating that both factors act synergistically during transcription initiation. (iv) An additional function of TFE is to dynamically alter the nucleic acid-binding properties of RNAP by stabilizing the initiation complex and destabilizing elongation complexes.
机译:通过三个基础转录因子(TATA结合蛋白,TFB(TFIIB的古细菌同源物)和TFE(TFIIE的古细菌同源物))的共同作用,将古细菌RNA聚合酶(RNAP)募集到启动子中。我们的结果证明了转录循环期间TFB和TFE机制的一些新见解。 (i)TFB的N末端Zn带显示出令人惊讶的冗余度,在古细菌系统转录启动过程中募集RNAP。 (ii)TFB的B-指结构域通过刺激不依赖募集的功能的流产和生产性转录而参与转录起始事件。因此,TFB将RNAP的物理募集与在转录起始过程中影响RNAP催化特性的积极作用结合在一起。 (iii)TFE补充了TFB突变,从而证明这两个因子在转录起始过程中起协同作用。 (iv)TFE的另一功能是通过稳定起始复合物和使延伸复合物不稳定来动态改变RNAP的核酸结合特性。

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