Small noncoding RNAs (sRNAs) regulate gene expression in Escherichia coli by base pairing with mRNAs and modulating translation and mRNA stability. The sRNAs DsrA and RprA stimulate the translation of the stress response transcription factor RpoS by base pairing with the 5 untranslated region of the rpoS mRNA. In the present study, we found that the rpoS mRNA was unstable in the absence of DsrA and RprA and that expression of these sRNAs increased both the accumulation and the half-life of the rpoS mRNA. Mutations in dsrA, rprA, or rpoS that disrupt the predicted pairing sequences and reduce translation of RpoS also destabilize the rpoS mRNA. We found that the rpoS mRNA accumulates in an RNase E mutant strain in the absence of sRNA express...
Pseudomonas aeruginosa (Pae) is an opportunistic human pathogen, able to resist host defense mechani...
Small noncoding RNAs have been found in all organisms, primarily as regulators of translation and me...
Bacterial survival depends on the ability of cells to rapidly adapt to diverse environments, stress ...
Translation of the sigma factor RpoS is activated by DsrA, RprA and ArcA, three small non-coding sRN...
International audienceThe largest and best studied group of regulatory small RNAs (sRNAs) in bacteri...
The ribosome binding site of Escherichia coli rpoS mRNA, encoding the stationary sigma-factor RpoS, ...
RpoS is an alternative sigma factor which is required for the expression of genes that help bacteria...
Small regulatory RNAs can modify the activity of proteins and the stability and translation of mRNAs...
In bacteria, small non-coding RNAs (sRNAs) bind to target mRNAs and regulate their translation and/o...
International audienceRpoS, the stationary phase/stress sigma factor of Escherichia coli, regulates ...
Regulation at the post-transcriptional level is an important mode of gene expression control in bact...
At low temperature, translational activation of rpoS mRNA, encoding the stationary phase sigma-facto...
In enteric bacteria, adaptation to a number of different stresses is mediated by the RpoS protein, o...
Non-coding RNAs are highly abundant regulators of gene expression in all kingdoms of life that often...
International audienceRNA molecules are important factors involved in different cellular processes a...
Pseudomonas aeruginosa (Pae) is an opportunistic human pathogen, able to resist host defense mechani...
Small noncoding RNAs have been found in all organisms, primarily as regulators of translation and me...
Bacterial survival depends on the ability of cells to rapidly adapt to diverse environments, stress ...
Translation of the sigma factor RpoS is activated by DsrA, RprA and ArcA, three small non-coding sRN...
International audienceThe largest and best studied group of regulatory small RNAs (sRNAs) in bacteri...
The ribosome binding site of Escherichia coli rpoS mRNA, encoding the stationary sigma-factor RpoS, ...
RpoS is an alternative sigma factor which is required for the expression of genes that help bacteria...
Small regulatory RNAs can modify the activity of proteins and the stability and translation of mRNAs...
In bacteria, small non-coding RNAs (sRNAs) bind to target mRNAs and regulate their translation and/o...
International audienceRpoS, the stationary phase/stress sigma factor of Escherichia coli, regulates ...
Regulation at the post-transcriptional level is an important mode of gene expression control in bact...
At low temperature, translational activation of rpoS mRNA, encoding the stationary phase sigma-facto...
In enteric bacteria, adaptation to a number of different stresses is mediated by the RpoS protein, o...
Non-coding RNAs are highly abundant regulators of gene expression in all kingdoms of life that often...
International audienceRNA molecules are important factors involved in different cellular processes a...
Pseudomonas aeruginosa (Pae) is an opportunistic human pathogen, able to resist host defense mechani...
Small noncoding RNAs have been found in all organisms, primarily as regulators of translation and me...
Bacterial survival depends on the ability of cells to rapidly adapt to diverse environments, stress ...