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首页> 外文期刊>The Journal of biological chemistry >Structural Basis of Transcription Initiation by Bacterial RNA Polymerase Holoenzyme
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Structural Basis of Transcription Initiation by Bacterial RNA Polymerase Holoenzyme

机译:细菌RNA聚合酶全酶转录起始的结构基础

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摘要

The bacterial RNA polymerase (RNAP) holoenzyme containing σ factor initiates transcription at specific promoter sites by de novo RNA priming, the first step of RNA synthesis where RNAP accepts two initiating ribonucleoside triphosphates (iNTPs) and performs the first phosphodiester bond formation. We present the structure of de novo transcription initiation complex that reveals unique contacts of the iNTPs bound at the transcription start site with the template DNA and also with RNAP and demonstrate the importance of these contacts for transcription initiation. To get further insight into the mechanism of RNA priming, we determined the structure of initially transcribing complex of RNAP holoenzyme with 6-mer RNA, obtained by in crystallo transcription approach. The structure highlights RNAP-RNA contacts that stabilize the short RNA transcript in the active site and demonstrates that the RNA 5′-end displaces σ region 3.2 from its position near the active site, which likely plays a key role in σ ejection during the initiation-to-elongation transition. Given the structural conservation of the RNAP active site, the mechanism of de novo RNA priming appears to be conserved in all cellular RNAPs.
机译:含有σ因子的细菌RNA聚合酶(RNAP)全酶通过De Novo RNA引发在特定启动子位点的转录,RNA合成的第一步骤,其中RNAP接受两个引发核糖核苷三磷酸三磷酸(INTP)并进行第一磷酸二酯键形成。我们介绍了de novo转录起始复合体的结构,揭示了在转录开始网站上与模板DNA相结合的独特触点,也与RNAP一起证明了这些接触的转录开始的重要性。为了进一步了解RNA引发的机制,我们确定了通过晶体转录方法获得的6-MER RNA的RNAP全酶初始转录的结构。该结构突出显示RNAP-RNA触点,其稳定活性位点中的短RNA转录物,并证明RNA 5'-末端从其在活性位点附近的位置取代σ区3.2,这可能在启动期间在σ喷射中发挥关键作用 - 伸长过渡。鉴于RNAP活性位点的结构保护,DE Novo RNA引发的机制似乎在所有细胞rnaps中被保守。

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