Centre de Biophysique Moléculaire, CNRS UPR4301, Affiliated with Université d'Orléans, rue Charles Sadron, 45071 Orléans Cedex 2, France.
Université Paris-Saclay, CEA, CNRS, Institut de Biologie Intégrative de la Cellule (I2BC), 91190 Gif-sur-Yvette, France.
Mol Cell. 2024 Sep 19;84(18):3482-3496.e7. doi: 10.1016/j.molcel.2024.07.034. Epub 2024 Aug 22.
Binding of the bacterial Rho helicase to nascent transcripts triggers Rho-dependent transcription termination (RDTT) in response to cellular signals that modulate mRNA structure and accessibility of Rho utilization (Rut) sites. Despite the impact of temperature on RNA structure, RDTT was never linked to the bacterial response to temperature shifts. We show that Rho is a central player in the cold-shock response (CSR), challenging the current view that CSR is primarily a posttranscriptional program. We identify Rut sites in 5'-untranslated regions of key CSR genes/operons (cspA, cspB, cspG, and nsrR-rnr-yjfHI) that trigger premature RDTT at 37°C but not at 15°C. High concentrations of RNA chaperone CspA or nucleotide changes in the cspA mRNA leader reduce RDTT efficiency, revealing how RNA restructuring directs Rho to activate CSR genes during the cold shock and to silence them during cold acclimation. These findings establish a paradigm for how RNA thermosensors can modulate gene expression.
细菌 Rho 螺旋酶与新生转录本的结合触发 Rho 依赖性转录终止 (RDTT),以响应调节 mRNA 结构和 Rho 利用 (Rut) 位点可及性的细胞信号。尽管温度会影响 RNA 结构,但 RDTT 从未与细菌对温度变化的反应联系起来。我们表明 Rho 是冷休克反应 (CSR) 的核心参与者,这挑战了当前认为 CSR 主要是一个转录后程序的观点。我们在关键 CSR 基因/操纵子(cspA、cspB、cspG 和 nsrR-rnr-yjfHI)的 5'非翻译区识别出 Rut 位点,这些位点在 37°C 时触发过早的 RDTT,但在 15°C 时不会。RNA 伴侣 CspA 的高浓度或 cspA mRNA 前导区的核苷酸变化会降低 RDTT 效率,揭示了 RNA 重排如何指导 Rho 在冷冲击期间激活 CSR 基因,并在冷适应期间使其沉默。这些发现为 RNA 热传感器如何调节基因表达建立了范例。