Bae Brian, Feklistov Andrey, Lass-Napiorkowska Agnieszka, Landick Robert, Darst Seth A
Laboratory for Molecular Biophysics, The Rockefeller University, New York, United States.
Edward A. Doisy Department of Biochemistry and Molecular Biology, Saint Louis University School of Medicine, St Louis, United States.
Elife. 2015 Sep 8;4:e08504. doi: 10.7554/eLife.08504.
Initiation of transcription is a primary means for controlling gene expression. In bacteria, the RNA polymerase (RNAP) holoenzyme binds and unwinds promoter DNA, forming the transcription bubble of the open promoter complex (RPo). We have determined crystal structures, refined to 4.14 Å-resolution, of RPo containing Thermus aquaticus RNAP holoenzyme and promoter DNA that includes the full transcription bubble. The structures, combined with biochemical analyses, reveal key features supporting the formation and maintenance of the double-strand/single-strand DNA junction at the upstream edge of the -10 element where bubble formation initiates. The results also reveal RNAP interactions with duplex DNA just upstream of the -10 element and potential protein/DNA interactions that direct the DNA template strand into the RNAP active site. Addition of an RNA primer to yield a 4 base-pair post-translocated RNA:DNA hybrid mimics an initially transcribing complex at the point where steric clash initiates abortive initiation and σ(A) dissociation.
转录起始是控制基因表达的主要方式。在细菌中,RNA聚合酶(RNAP)全酶结合并解开启动子DNA,形成开放启动子复合物(RPo)的转录泡。我们已经确定了含有嗜热水生栖热袍菌RNAP全酶和包括完整转录泡的启动子DNA的RPo的晶体结构,分辨率精修至4.14 Å。这些结构与生化分析相结合,揭示了支持在起始泡形成的-10元件上游边缘双链/单链DNA连接形成和维持的关键特征。结果还揭示了RNAP与-10元件上游双链DNA的相互作用以及将DNA模板链引导至RNAP活性位点的潜在蛋白质/DNA相互作用。添加RNA引物以产生4个碱基对的转位后RNA:DNA杂交体,模拟了在空间冲突引发流产起始和σ(A)解离的点处的初始转录复合物。