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细菌适应过程中转录起始和 RNA 加工的动态见解。

Dynamic insights on transcription initiation and RNA processing during bacterial adaptation.

机构信息

Université Paris-Saclay, INRAE, AgroParisTech, MIcalis Institute, 78350, Jouy-en-Josas, France.

Luxembourg Center for Systems Biomedicine, University of Luxembourg, 4367, Belvaux, Luxembourg.

出版信息

RNA. 2020 Apr;26(4):382-395. doi: 10.1261/rna.073288.119. Epub 2020 Jan 28.

Abstract

Transcription initiation and RNA processing govern gene expression and enable bacterial adaptation by reshaping the RNA landscape. The aim of this study was to simultaneously observe these two fundamental processes in a transcriptome responding to an environmental signal. A controlled σ system in was coupled to our previously described tagRNA-seq method to yield process kinetics information. Changes in transcription initiation frequencies (TIF) and RNA processing frequencies (PF) were followed using 5' RNA tags. Changes in TIF showed a binary increased/decreased pattern that alternated between transcriptionally activated and repressed promoters, providing the bacterial population with transcriptional oscillation. PF variation fell into three categories of cleavage activity: (i) constant and independent of RNA levels, (ii) increased once RNA has accumulated, and (iii) positively correlated to changes in TIF. This work provides a comprehensive and dynamic view of major events leading to transcriptomic reshaping during bacterial adaptation. It unveils an interplay between transcription initiation and the activity of specific RNA cleavage sites. This study utilized a well-known genetic system to analyze fundamental processes and can serve as a blueprint for comprehensive studies that exploit the RNA metabolism to decipher and understand bacterial gene expression control.

摘要

转录起始和 RNA 加工控制基因表达,并通过重塑 RNA 景观使细菌适应环境。本研究的目的是在转录组对环境信号的响应中同时观察这两个基本过程。通过将我们之前描述的 tagRNA-seq 方法与 中的受控 σ 系统相结合,获得了过程动力学信息。使用 5' RNA 标签跟踪转录起始频率 (TIF) 和 RNA 加工频率 (PF) 的变化。TIF 的变化呈现出二元增加/减少模式,在转录激活和转录抑制启动子之间交替,为细菌种群提供了转录振荡。PF 变化分为三种切割活性类别:(i) 与 RNA 水平无关且恒定,(ii) 一旦 RNA 积累就增加,以及 (iii) 与 TIF 的变化呈正相关。这项工作提供了一个全面而动态的视角,了解在细菌适应过程中导致转录组重塑的主要事件。它揭示了转录起始和特定 RNA 切割位点活性之间的相互作用。本研究利用一个众所周知的遗传系统来分析基本过程,可以作为利用 RNA 代谢来解码和理解细菌基因表达控制的综合研究的蓝图。

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