Greive Sandra J, Weitzel Steven E, Goodarzi Jim P, Main Lisa J, Pasman Zvi, von Hippel Peter H
Institute of Molecular Biology and Department of Chemistry, University of Oregon, Eugene, OR 97403, USA.
Proc Natl Acad Sci U S A. 2008 Mar 4;105(9):3315-20. doi: 10.1073/pnas.0712074105. Epub 2008 Feb 25.
The decision to elongate or terminate the RNA chain at specific DNA template positions during transcription is kinetically regulated, but the methods used to measure the rates of these processes have not been sufficiently quantitative to permit detailed mechanistic analysis of the steps involved. Here, we use surface plasmon resonance (SPR) technology to monitor RNA transcription by Escherichia coli RNA polymerase (RNAP) in solution and in real time. We show that binding of RNAP to immobilized DNA templates to form active initiation or elongation complexes can be resolved and monitored by this method, and that changes during transcription that involve the gain or loss of bound mass, including the release of the sigma factor during the initiation-elongation transition, the synthesis of the RNA transcript, and the release of core RNAP and nascent RNA at intrinsic terminators, can all be observed. The SPR method also permits the discrimination of released termination products from paused and other intermediate complexes at terminators. We have used this approach to show that the rate constant for transcript release at intrinsic terminators tR2 and tR' is approximately 2-3 s(-1) and that the extent of release at these terminators is consistent with known termination efficiencies. Simulation techniques have been used to fit the measured parameters to a simple kinetic model of transcription and the implications of these results for transcriptional regulation are discussed.
在转录过程中,在特定DNA模板位置延长或终止RNA链的决定是受动力学调控的,但是用于测量这些过程速率的方法在定量方面还不够充分,无法对所涉及的步骤进行详细的机制分析。在此,我们使用表面等离子体共振(SPR)技术实时监测溶液中大肠杆菌RNA聚合酶(RNAP)的RNA转录过程。我们表明,通过这种方法可以分辨并监测RNAP与固定化DNA模板结合形成活性起始或延伸复合物的过程,并且可以观察到转录过程中涉及结合质量增减的变化,包括起始-延伸转变过程中σ因子的释放、RNA转录本的合成以及核心RNAP和新生RNA在固有终止子处的释放。SPR方法还能够区分终止子处释放的终止产物与暂停及其他中间复合物。我们利用这种方法表明,在固有终止子tR2和tR'处转录本释放的速率常数约为2 - 3 s(-1),并且这些终止子处的释放程度与已知的终止效率一致。已使用模拟技术将测量参数拟合到一个简单的转录动力学模型,并讨论了这些结果对转录调控的影响。