Cargando…

The small RNA GlmY acts upstream of the sRNA GlmZ in the activation of glmS expression and is subject to regulation by polyadenylation in Escherichia coli

In Escherichia coli the glmS gene encoding glucosamine 6-phosphate (GlcN-6-P) synthase GlmS is feedback regulated by GlcN-6-P in a pathway that involves the small RNA GlmZ. Expression of glmS is activated by the unprocessed form of GlmZ, which accumulates when the intracellular GlcN-6-P concentratio...

Descripción completa

Detalles Bibliográficos
Autores principales: Reichenbach, Birte, Maes, Alexandre, Kalamorz, Falk, Hajnsdorf, Eliane, Görke, Boris
Formato: Texto
Lenguaje:English
Publicado: Oxford University Press 2008
Materias:
RNA
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2377431/
https://www.ncbi.nlm.nih.gov/pubmed/18334534
http://dx.doi.org/10.1093/nar/gkn091
_version_ 1782154819245441024
author Reichenbach, Birte
Maes, Alexandre
Kalamorz, Falk
Hajnsdorf, Eliane
Görke, Boris
author_facet Reichenbach, Birte
Maes, Alexandre
Kalamorz, Falk
Hajnsdorf, Eliane
Görke, Boris
author_sort Reichenbach, Birte
collection PubMed
description In Escherichia coli the glmS gene encoding glucosamine 6-phosphate (GlcN-6-P) synthase GlmS is feedback regulated by GlcN-6-P in a pathway that involves the small RNA GlmZ. Expression of glmS is activated by the unprocessed form of GlmZ, which accumulates when the intracellular GlcN-6-P concentration decreases. GlmZ stabilizes a glmS transcript that derives from processing. Overexpression of a second sRNA, GlmY, also activates glmS expression in an unknown way. Furthermore, mutations in two genes, yhbJ and pcnB, cause accumulation of full-length GlmZ and thereby activate glmS expression. The function of yhbJ is unknown and pcnB encodes poly(A) polymerase PAP-I known to polyadenylate and destabilize RNAs. Here we show that GlmY acts indirectly in a way that depends on GlmZ. When the intracellular GlcN-6-P concentration decreases, GlmY accumulates and causes in turn accumulation of full-length GlmZ, which finally activates glmS expression. In glmZ mutants, GlmY has no effect on glmS, whereas artificially expressed GlmZ can activate glmS expression also in the absence of GlmY. Furthermore, we show that PAP-I acts at the top of this regulatory pathway by polyadenylating and destabilizing GlmY. In pcnB mutants, GlmY accumulates and induces glmS expression by stabilizing full-length GlmZ. Hence, the data reveal a regulatory cascade composed of two sRNAs, which responds to GlcN-6-P and is controlled by polyadenylation.
format Text
id pubmed-2377431
institution National Center for Biotechnology Information
language English
publishDate 2008
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-23774312008-05-14 The small RNA GlmY acts upstream of the sRNA GlmZ in the activation of glmS expression and is subject to regulation by polyadenylation in Escherichia coli Reichenbach, Birte Maes, Alexandre Kalamorz, Falk Hajnsdorf, Eliane Görke, Boris Nucleic Acids Res RNA In Escherichia coli the glmS gene encoding glucosamine 6-phosphate (GlcN-6-P) synthase GlmS is feedback regulated by GlcN-6-P in a pathway that involves the small RNA GlmZ. Expression of glmS is activated by the unprocessed form of GlmZ, which accumulates when the intracellular GlcN-6-P concentration decreases. GlmZ stabilizes a glmS transcript that derives from processing. Overexpression of a second sRNA, GlmY, also activates glmS expression in an unknown way. Furthermore, mutations in two genes, yhbJ and pcnB, cause accumulation of full-length GlmZ and thereby activate glmS expression. The function of yhbJ is unknown and pcnB encodes poly(A) polymerase PAP-I known to polyadenylate and destabilize RNAs. Here we show that GlmY acts indirectly in a way that depends on GlmZ. When the intracellular GlcN-6-P concentration decreases, GlmY accumulates and causes in turn accumulation of full-length GlmZ, which finally activates glmS expression. In glmZ mutants, GlmY has no effect on glmS, whereas artificially expressed GlmZ can activate glmS expression also in the absence of GlmY. Furthermore, we show that PAP-I acts at the top of this regulatory pathway by polyadenylating and destabilizing GlmY. In pcnB mutants, GlmY accumulates and induces glmS expression by stabilizing full-length GlmZ. Hence, the data reveal a regulatory cascade composed of two sRNAs, which responds to GlcN-6-P and is controlled by polyadenylation. Oxford University Press 2008-05 2008-03-11 /pmc/articles/PMC2377431/ /pubmed/18334534 http://dx.doi.org/10.1093/nar/gkn091 Text en © 2008 The Author(s) http://creativecommons.org/licenses/by-nc/2.0/uk/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/2.0/uk/) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle RNA
Reichenbach, Birte
Maes, Alexandre
Kalamorz, Falk
Hajnsdorf, Eliane
Görke, Boris
The small RNA GlmY acts upstream of the sRNA GlmZ in the activation of glmS expression and is subject to regulation by polyadenylation in Escherichia coli
title The small RNA GlmY acts upstream of the sRNA GlmZ in the activation of glmS expression and is subject to regulation by polyadenylation in Escherichia coli
title_full The small RNA GlmY acts upstream of the sRNA GlmZ in the activation of glmS expression and is subject to regulation by polyadenylation in Escherichia coli
title_fullStr The small RNA GlmY acts upstream of the sRNA GlmZ in the activation of glmS expression and is subject to regulation by polyadenylation in Escherichia coli
title_full_unstemmed The small RNA GlmY acts upstream of the sRNA GlmZ in the activation of glmS expression and is subject to regulation by polyadenylation in Escherichia coli
title_short The small RNA GlmY acts upstream of the sRNA GlmZ in the activation of glmS expression and is subject to regulation by polyadenylation in Escherichia coli
title_sort small rna glmy acts upstream of the srna glmz in the activation of glms expression and is subject to regulation by polyadenylation in escherichia coli
topic RNA
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2377431/
https://www.ncbi.nlm.nih.gov/pubmed/18334534
http://dx.doi.org/10.1093/nar/gkn091
work_keys_str_mv AT reichenbachbirte thesmallrnaglmyactsupstreamofthesrnaglmzintheactivationofglmsexpressionandissubjecttoregulationbypolyadenylationinescherichiacoli
AT maesalexandre thesmallrnaglmyactsupstreamofthesrnaglmzintheactivationofglmsexpressionandissubjecttoregulationbypolyadenylationinescherichiacoli
AT kalamorzfalk thesmallrnaglmyactsupstreamofthesrnaglmzintheactivationofglmsexpressionandissubjecttoregulationbypolyadenylationinescherichiacoli
AT hajnsdorfeliane thesmallrnaglmyactsupstreamofthesrnaglmzintheactivationofglmsexpressionandissubjecttoregulationbypolyadenylationinescherichiacoli
AT gorkeboris thesmallrnaglmyactsupstreamofthesrnaglmzintheactivationofglmsexpressionandissubjecttoregulationbypolyadenylationinescherichiacoli
AT reichenbachbirte smallrnaglmyactsupstreamofthesrnaglmzintheactivationofglmsexpressionandissubjecttoregulationbypolyadenylationinescherichiacoli
AT maesalexandre smallrnaglmyactsupstreamofthesrnaglmzintheactivationofglmsexpressionandissubjecttoregulationbypolyadenylationinescherichiacoli
AT kalamorzfalk smallrnaglmyactsupstreamofthesrnaglmzintheactivationofglmsexpressionandissubjecttoregulationbypolyadenylationinescherichiacoli
AT hajnsdorfeliane smallrnaglmyactsupstreamofthesrnaglmzintheactivationofglmsexpressionandissubjecttoregulationbypolyadenylationinescherichiacoli
AT gorkeboris smallrnaglmyactsupstreamofthesrnaglmzintheactivationofglmsexpressionandissubjecttoregulationbypolyadenylationinescherichiacoli