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DsrA小非编码RNA对细菌肌动蛋白同源物MreB的核糖调控

Riboregulation of the bacterial actin-homolog MreB by DsrA small noncoding RNA.

作者信息

Cayrol Bastien, Fortas Emilie, Martret Claire, Cech Grzegorz, Kloska Anna, Caulet Stephane, Barbet Marion, Trépout Sylvain, Marco Sergio, Taghbalout Aziz, Busi Florent, Wegrzyn Grzegorz, Arluison Véronique

机构信息

Laboratoire Léon Brillouin, CEA - Centre de Saclay, 91191 Gif-sur-Yvette, France.

出版信息

Integr Biol (Camb). 2015 Jan;7(1):128-41. doi: 10.1039/c4ib00102h.

Abstract

The bacterial actin-homolog MreB is a key player in bacterial cell-wall biosynthesis and is required for the maintenance of the rod-like morphology of Escherichia coli. However, how MreB cellular levels are adjusted to growth conditions is poorly understood. Here, we show that DsrA, an E. coli small noncoding RNA (sRNA), is involved in the post-transcriptional regulation of mreB. DsrA is required for the downregulation of MreB cellular concentration during environmentally induced slow growth-rates, mainly growth at low temperature and during the stationary phase. DsrA interacts in an Hfq-dependent manner with the 5' region of mreB mRNA, which contains signals for translation initiation and thereby affects mreB translation and stability. Moreover, as DsrA is also involved in the regulation of two transcriptional regulators, σ(S) and the nucleoid associated protein H-NS, which negatively regulate mreB transcription, it also indirectly contributes to mreB transcriptional down-regulation. By using quantitative analyses, our results evidence the complexity of this regulation and the tangled interplay between transcriptional and post-transcriptional control. As transcription factors and sRNA-mediated post-transcriptional regulators use different timescales, we propose that the sRNA pathway helps to adapt to changes in temperature, but also indirectly mediates long-term regulation of MreB concentration. The tight regulation and fine-tuning of mreB gene expression in response to cellular stresses is discussed in regard to the effect of the MreB protein on cell elongation.

摘要

细菌肌动蛋白同源物MreB是细菌细胞壁生物合成的关键因子,对于维持大肠杆菌的杆状形态至关重要。然而,人们对MreB细胞水平如何根据生长条件进行调节知之甚少。在此,我们表明大肠杆菌小非编码RNA(sRNA)DsrA参与mreB的转录后调控。在环境诱导的生长速率缓慢时,主要是在低温和稳定期生长期间,DsrA是下调MreB细胞浓度所必需的。DsrA以依赖Hfq的方式与mreB mRNA的5'区域相互作用,该区域包含翻译起始信号,从而影响mreB的翻译和稳定性。此外,由于DsrA还参与两个转录调节因子σ(S)和类核相关蛋白H-NS的调控,它们对mreB转录起负调控作用,因此它也间接促进了mreB的转录下调。通过定量分析,我们的结果证明了这种调控的复杂性以及转录和转录后控制之间错综复杂的相互作用。由于转录因子和sRNA介导的转录后调节因子使用不同的时间尺度,我们提出sRNA途径有助于适应温度变化,而且还间接介导MreB浓度的长期调节。关于MreB蛋白对细胞伸长的影响,讨论了mreB基因表达在应对细胞应激时的严格调控和微调。

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