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Posttranscriptional Regulation by Copper with a New Upstream Open Reading Frame

Copper is essential to most living beings but also highly toxic and as such is an important player at the host-pathogen interface. Bacteria have thus developed homeostatic mechanisms to tightly control its intracellular concentration. Known Cu export and import systems are under transcriptional cont...

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Autores principales: Roy, Gauthier, Antoine, Rudy, Schwartz, Annie, Slupek, Stéphanie, Rivera-Millot, Alex, Boudvillain, Marc, Jacob-Dubuisson, Françoise
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9426467/
https://www.ncbi.nlm.nih.gov/pubmed/35862763
http://dx.doi.org/10.1128/mbio.00912-22
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author Roy, Gauthier
Antoine, Rudy
Schwartz, Annie
Slupek, Stéphanie
Rivera-Millot, Alex
Boudvillain, Marc
Jacob-Dubuisson, Françoise
author_facet Roy, Gauthier
Antoine, Rudy
Schwartz, Annie
Slupek, Stéphanie
Rivera-Millot, Alex
Boudvillain, Marc
Jacob-Dubuisson, Françoise
author_sort Roy, Gauthier
collection PubMed
description Copper is essential to most living beings but also highly toxic and as such is an important player at the host-pathogen interface. Bacteria have thus developed homeostatic mechanisms to tightly control its intracellular concentration. Known Cu export and import systems are under transcriptional control, whereas posttranscriptional regulatory mechanisms are yet to be characterized. We identified a three-gene operon, bp2923-bfrG-bp2921, downregulated by copper and notably encoding a TonB-dependent transporter in Bordetella pertussis. We show here that the protein encoded by the first gene, which is a member of the DUF2946 protein family, represents a new type of upstream Open Reading Frame (uORF) involved in posttranscriptional regulation of the downstream genes. In the absence of copper, the entire operon is transcribed and translated. Perception of copper by the nascent bp2923-coded protein via its conserved CXXC motif triggers Rho-dependent transcription termination between the first and second genes by relieving translation arrest on a conserved C-terminal RAPP motif. Homologs of bp2923 are widespread in bacterial genomes, where they head operons predicted to participate in copper homeostasis. This work has thus unveiled a new mode of genetic regulation by a transition metal and identified a regulatory function for a member of an uncharacterized family of bacterial proteins that we have named CruR, for copper-responsive upstream regulator.
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spelling pubmed-94264672022-08-31 Posttranscriptional Regulation by Copper with a New Upstream Open Reading Frame Roy, Gauthier Antoine, Rudy Schwartz, Annie Slupek, Stéphanie Rivera-Millot, Alex Boudvillain, Marc Jacob-Dubuisson, Françoise mBio Research Article Copper is essential to most living beings but also highly toxic and as such is an important player at the host-pathogen interface. Bacteria have thus developed homeostatic mechanisms to tightly control its intracellular concentration. Known Cu export and import systems are under transcriptional control, whereas posttranscriptional regulatory mechanisms are yet to be characterized. We identified a three-gene operon, bp2923-bfrG-bp2921, downregulated by copper and notably encoding a TonB-dependent transporter in Bordetella pertussis. We show here that the protein encoded by the first gene, which is a member of the DUF2946 protein family, represents a new type of upstream Open Reading Frame (uORF) involved in posttranscriptional regulation of the downstream genes. In the absence of copper, the entire operon is transcribed and translated. Perception of copper by the nascent bp2923-coded protein via its conserved CXXC motif triggers Rho-dependent transcription termination between the first and second genes by relieving translation arrest on a conserved C-terminal RAPP motif. Homologs of bp2923 are widespread in bacterial genomes, where they head operons predicted to participate in copper homeostasis. This work has thus unveiled a new mode of genetic regulation by a transition metal and identified a regulatory function for a member of an uncharacterized family of bacterial proteins that we have named CruR, for copper-responsive upstream regulator. American Society for Microbiology 2022-07-13 /pmc/articles/PMC9426467/ /pubmed/35862763 http://dx.doi.org/10.1128/mbio.00912-22 Text en Copyright © 2022 Roy et al. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Roy, Gauthier
Antoine, Rudy
Schwartz, Annie
Slupek, Stéphanie
Rivera-Millot, Alex
Boudvillain, Marc
Jacob-Dubuisson, Françoise
Posttranscriptional Regulation by Copper with a New Upstream Open Reading Frame
title Posttranscriptional Regulation by Copper with a New Upstream Open Reading Frame
title_full Posttranscriptional Regulation by Copper with a New Upstream Open Reading Frame
title_fullStr Posttranscriptional Regulation by Copper with a New Upstream Open Reading Frame
title_full_unstemmed Posttranscriptional Regulation by Copper with a New Upstream Open Reading Frame
title_short Posttranscriptional Regulation by Copper with a New Upstream Open Reading Frame
title_sort posttranscriptional regulation by copper with a new upstream open reading frame
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9426467/
https://www.ncbi.nlm.nih.gov/pubmed/35862763
http://dx.doi.org/10.1128/mbio.00912-22
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