Dissecting the stochastic transcription initiation process in live Escherichia coli

J. Lloyd-Price, S. Startceva, Vinodh Kandavalli, Jerome G. Chandraseelan, Nadia S. M. Goncalves, Samuel M. D. Oliveira, A. Häkkinen, A. Ribeiro
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引用次数: 40

Abstract

We investigate the hypothesis that, in Escherichia coli, while the concentration of RNA polymerases differs in different growth conditions, the fraction of RNA polymerases free for transcription remains approximately constant within a certain range of these conditions. After establishing this, we apply a standard model-fitting procedure to fully characterize the in vivo kinetics of the rate-limiting steps in transcription initiation of the Plac/ara-1 promoter from distributions of intervals between transcription events in cells with different RNA polymerase concentrations. We find that, under full induction, the closed complex lasts ∼788 s while subsequent steps last ∼193 s, on average. We then establish that the closed complex formation usually occurs multiple times prior to each successful initiation event. Furthermore, the promoter intermittently switches to an inactive state that, on average, lasts ∼87 s. This is shown to arise from the intermittent repression of the promoter by LacI. The methods employed here should be of use to resolve the rate-limiting steps governing the in vivo dynamics of initiation of prokaryotic promoters, similar to established steady-state assays to resolve the in vitro dynamics.
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活体大肠杆菌随机转录起始过程剖析
我们研究了这样一个假设,即在大肠杆菌中,虽然RNA聚合酶的浓度在不同的生长条件下不同,但在这些条件的一定范围内,可转录的RNA聚合酶的比例大致保持不变。在建立了这一点之后,我们应用标准模型拟合程序,从不同RNA聚合酶浓度的细胞中转录事件之间的间隔分布中,充分表征了place /ara-1启动子转录起始的限速步骤的体内动力学。我们发现,在完全诱导下,闭合复合物平均持续~ 788 s,而随后的步骤平均持续~ 193 s。然后我们确定,在每次成功的起始事件之前,封闭复合体的形成通常会发生多次。此外,启动子间歇性地切换到非活性状态,平均持续~ 87 s。这是由LacI对启动子的间歇性抑制引起的。这里采用的方法应该用于解决控制原核启动子起始的体内动力学的限速步骤,类似于建立的稳态测定法来解决体外动力学。
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