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Concerted Actions of a Thermo-labile Regulator and a Unique Intergenic RNA Thermosensor Control Yersinia Virulence

Expression of all Yersinia pathogenicity factors encoded on the virulence plasmid, including the yop effector and the ysc type III secretion genes, is controlled by the transcriptional activator LcrF in response to temperature. Here, we show that a protein- and RNA-dependent hierarchy of thermosenso...

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Autores principales: Böhme, Katja, Steinmann, Rebekka, Kortmann, Jens, Seekircher, Stephanie, Heroven, Ann Kathrin, Berger, Evelin, Pisano, Fabio, Thiermann, Tanja, Wolf-Watz, Hans, Narberhaus, Franz, Dersch, Petra
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3280987/
https://www.ncbi.nlm.nih.gov/pubmed/22359501
http://dx.doi.org/10.1371/journal.ppat.1002518
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author Böhme, Katja
Steinmann, Rebekka
Kortmann, Jens
Seekircher, Stephanie
Heroven, Ann Kathrin
Berger, Evelin
Pisano, Fabio
Thiermann, Tanja
Wolf-Watz, Hans
Narberhaus, Franz
Dersch, Petra
author_facet Böhme, Katja
Steinmann, Rebekka
Kortmann, Jens
Seekircher, Stephanie
Heroven, Ann Kathrin
Berger, Evelin
Pisano, Fabio
Thiermann, Tanja
Wolf-Watz, Hans
Narberhaus, Franz
Dersch, Petra
author_sort Böhme, Katja
collection PubMed
description Expression of all Yersinia pathogenicity factors encoded on the virulence plasmid, including the yop effector and the ysc type III secretion genes, is controlled by the transcriptional activator LcrF in response to temperature. Here, we show that a protein- and RNA-dependent hierarchy of thermosensors induce LcrF synthesis at body temperature. Thermally regulated transcription of lcrF is modest and mediated by the thermo-sensitive modulator YmoA, which represses transcription from a single promoter located far upstream of the yscW-lcrF operon at moderate temperatures. The transcriptional response is complemented by a second layer of temperature-control induced by a unique cis-acting RNA element located within the intergenic region of the yscW-lcrF transcript. Structure probing demonstrated that this region forms a secondary structure composed of two stemloops at 25°C. The second hairpin sequesters the lcrF ribosomal binding site by a stretch of four uracils. Opening of this structure was favored at 37°C and permitted ribosome binding at host body temperature. Our study further provides experimental evidence for the biological relevance of an RNA thermometer in an animal model. Following oral infections in mice, we found that two different Y. pseudotuberculosis patient isolates expressing a stabilized thermometer variant were strongly reduced in their ability to disseminate into the Peyer's patches, liver and spleen and have fully lost their lethality. Intriguingly, Yersinia strains with a destabilized version of the thermosensor were attenuated or exhibited a similar, but not a higher mortality. This illustrates that the RNA thermometer is the decisive control element providing just the appropriate amounts of LcrF protein for optimal infection efficiency.
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spelling pubmed-32809872012-02-22 Concerted Actions of a Thermo-labile Regulator and a Unique Intergenic RNA Thermosensor Control Yersinia Virulence Böhme, Katja Steinmann, Rebekka Kortmann, Jens Seekircher, Stephanie Heroven, Ann Kathrin Berger, Evelin Pisano, Fabio Thiermann, Tanja Wolf-Watz, Hans Narberhaus, Franz Dersch, Petra PLoS Pathog Research Article Expression of all Yersinia pathogenicity factors encoded on the virulence plasmid, including the yop effector and the ysc type III secretion genes, is controlled by the transcriptional activator LcrF in response to temperature. Here, we show that a protein- and RNA-dependent hierarchy of thermosensors induce LcrF synthesis at body temperature. Thermally regulated transcription of lcrF is modest and mediated by the thermo-sensitive modulator YmoA, which represses transcription from a single promoter located far upstream of the yscW-lcrF operon at moderate temperatures. The transcriptional response is complemented by a second layer of temperature-control induced by a unique cis-acting RNA element located within the intergenic region of the yscW-lcrF transcript. Structure probing demonstrated that this region forms a secondary structure composed of two stemloops at 25°C. The second hairpin sequesters the lcrF ribosomal binding site by a stretch of four uracils. Opening of this structure was favored at 37°C and permitted ribosome binding at host body temperature. Our study further provides experimental evidence for the biological relevance of an RNA thermometer in an animal model. Following oral infections in mice, we found that two different Y. pseudotuberculosis patient isolates expressing a stabilized thermometer variant were strongly reduced in their ability to disseminate into the Peyer's patches, liver and spleen and have fully lost their lethality. Intriguingly, Yersinia strains with a destabilized version of the thermosensor were attenuated or exhibited a similar, but not a higher mortality. This illustrates that the RNA thermometer is the decisive control element providing just the appropriate amounts of LcrF protein for optimal infection efficiency. Public Library of Science 2012-02-16 /pmc/articles/PMC3280987/ /pubmed/22359501 http://dx.doi.org/10.1371/journal.ppat.1002518 Text en Böhme et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Böhme, Katja
Steinmann, Rebekka
Kortmann, Jens
Seekircher, Stephanie
Heroven, Ann Kathrin
Berger, Evelin
Pisano, Fabio
Thiermann, Tanja
Wolf-Watz, Hans
Narberhaus, Franz
Dersch, Petra
Concerted Actions of a Thermo-labile Regulator and a Unique Intergenic RNA Thermosensor Control Yersinia Virulence
title Concerted Actions of a Thermo-labile Regulator and a Unique Intergenic RNA Thermosensor Control Yersinia Virulence
title_full Concerted Actions of a Thermo-labile Regulator and a Unique Intergenic RNA Thermosensor Control Yersinia Virulence
title_fullStr Concerted Actions of a Thermo-labile Regulator and a Unique Intergenic RNA Thermosensor Control Yersinia Virulence
title_full_unstemmed Concerted Actions of a Thermo-labile Regulator and a Unique Intergenic RNA Thermosensor Control Yersinia Virulence
title_short Concerted Actions of a Thermo-labile Regulator and a Unique Intergenic RNA Thermosensor Control Yersinia Virulence
title_sort concerted actions of a thermo-labile regulator and a unique intergenic rna thermosensor control yersinia virulence
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3280987/
https://www.ncbi.nlm.nih.gov/pubmed/22359501
http://dx.doi.org/10.1371/journal.ppat.1002518
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