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Csr系统调控大肠杆菌全基因组范围内的mRNA稳定性和转录,进而调控基因表达。

The Csr system regulates genome-wide mRNA stability and transcription and thus gene expression in Escherichia coli.

作者信息

Esquerré Thomas, Bouvier Marie, Turlan Catherine, Carpousis Agamemnon J, Girbal Laurence, Cocaign-Bousquet Muriel

机构信息

Université de Toulouse, INSA, UPS, INP, LISBP, 135, avenue de Rangueil, 31077 Toulouse, France.

INRA, UMR792 Ingénierie des systèmes biologiques et des procédés, 31400 Toulouse, France.

出版信息

Sci Rep. 2016 Apr 26;6:25057. doi: 10.1038/srep25057.

Abstract

Bacterial adaptation requires large-scale regulation of gene expression. We have performed a genome-wide analysis of the Csr system, which regulates many important cellular functions. The Csr system is involved in post-transcriptional regulation, but a role in transcriptional regulation has also been suggested. Two proteins, an RNA-binding protein CsrA and an atypical signaling protein CsrD, participate in the Csr system. Genome-wide transcript stabilities and levels were compared in wildtype E. coli (MG1655) and isogenic mutant strains deficient in CsrA or CsrD activity demonstrating for the first time that CsrA and CsrD are global negative and positive regulators of transcription, respectively. The role of CsrA in transcription regulation may be indirect due to the 4.6-fold increase in csrD mRNA concentration in the CsrA deficient strain. Transcriptional action of CsrA and CsrD on a few genes was validated by transcriptional fusions. In addition to an effect on transcription, CsrA stabilizes thousands of mRNAs. This is the first demonstration that CsrA is a global positive regulator of mRNA stability. For one hundred genes, we predict that direct control of mRNA stability by CsrA might contribute to metabolic adaptation by regulating expression of genes involved in carbon metabolism and transport independently of transcriptional regulation.

摘要

细菌适应需要大规模的基因表达调控。我们对Csr系统进行了全基因组分析,该系统调控许多重要的细胞功能。Csr系统参与转录后调控,但也有人提出其在转录调控中发挥作用。两种蛋白质,一种RNA结合蛋白CsrA和一种非典型信号蛋白CsrD,参与了Csr系统。我们比较了野生型大肠杆菌(MG1655)以及缺乏CsrA或CsrD活性的同基因突变菌株的全基因组转录本稳定性和水平,首次证明CsrA和CsrD分别是转录的全局负调控因子和正调控因子。由于在缺乏CsrA的菌株中csrD mRNA浓度增加了4.6倍,CsrA在转录调控中的作用可能是间接的。通过转录融合验证了CsrA和CsrD对少数基因的转录作用。除了对转录有影响外,CsrA还能稳定数千种mRNA。这是首次证明CsrA是mRNA稳定性的全局正调控因子。对于一百个基因,我们预测CsrA对mRNA稳定性的直接控制可能通过独立于转录调控来调节参与碳代谢和运输的基因表达,从而有助于代谢适应。

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