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Enterococcal PrgU Provides Additional Regulation of Pheromone-Inducible Conjugative Plasmids

Efficient horizontal gene transfer of the conjugative plasmid pCF10 from Enterococcus faecalis depends on the expression of its type 4 secretion system (T4SS) genes, controlled by the P(Q) promoter. Transcription from the P(Q) promoter is tightly regulated, partially to limit cell toxicity caused by...

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Autores principales: Lassinantti, Lena, Camacho, Martha I., Erickson, Rebecca J. B., Willett, Julia L. E., De Lay, Nicholas R., ter Beek, Josy, Dunny, Gary M., Christie, Peter J., Berntsson, Ronnie P.-A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8265641/
https://www.ncbi.nlm.nih.gov/pubmed/34106752
http://dx.doi.org/10.1128/mSphere.00264-21
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author Lassinantti, Lena
Camacho, Martha I.
Erickson, Rebecca J. B.
Willett, Julia L. E.
De Lay, Nicholas R.
ter Beek, Josy
Dunny, Gary M.
Christie, Peter J.
Berntsson, Ronnie P.-A.
author_facet Lassinantti, Lena
Camacho, Martha I.
Erickson, Rebecca J. B.
Willett, Julia L. E.
De Lay, Nicholas R.
ter Beek, Josy
Dunny, Gary M.
Christie, Peter J.
Berntsson, Ronnie P.-A.
author_sort Lassinantti, Lena
collection PubMed
description Efficient horizontal gene transfer of the conjugative plasmid pCF10 from Enterococcus faecalis depends on the expression of its type 4 secretion system (T4SS) genes, controlled by the P(Q) promoter. Transcription from the P(Q) promoter is tightly regulated, partially to limit cell toxicity caused by overproduction of PrgB, a T4SS adhesin. PrgU plays an important role in regulating this toxicity by decreasing PrgB levels. PrgU has an RNA-binding fold, prompting us to test whether PrgU exerts its regulatory control through binding of prgQ transcripts. We used a combination of in vivo methods to quantify PrgU effects on prgQ transcripts at both single-cell and population levels. PrgU function requires a specific RNA sequence within an intergenic region (IGR) about 400 bp downstream of P(Q). PrgU interaction with the IGR reduces levels of downstream transcripts. Single-cell expression analysis showed that cells expressing prgU decreased transcript levels more rapidly than isogenic prgU-minus cells. PrgU bound RNA in vitro without sequence specificity, suggesting that PrgU requires a specific RNA structure or one or more host factors for selective binding in vivo. PrgU binding to its IGR target might recruit RNase(s) for targeted degradation of downstream transcripts or reduce elongation of nascent transcripts beyond the IGR. IMPORTANCE Bacteria utilize type 4 secretion systems (T4SS) to efficiently transfer DNA between donor and recipient cells, thereby spreading genes encoding antibiotic resistance as well as various virulence factors. Regulation of expression of the T4SS proteins and surface adhesins in Gram-positive bacteria is crucial, as some of these are highly toxic to the cell. The significance of our research lies in identifying the novel mechanism by which PrgU performs its delicate fine-tuning of the expression levels. As prgU orthologs are present in various conjugative plasmids and transposons, our results are likely relevant to understanding of diverse clinically important transfer systems.
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spelling pubmed-82656412021-07-23 Enterococcal PrgU Provides Additional Regulation of Pheromone-Inducible Conjugative Plasmids Lassinantti, Lena Camacho, Martha I. Erickson, Rebecca J. B. Willett, Julia L. E. De Lay, Nicholas R. ter Beek, Josy Dunny, Gary M. Christie, Peter J. Berntsson, Ronnie P.-A. mSphere Research Article Efficient horizontal gene transfer of the conjugative plasmid pCF10 from Enterococcus faecalis depends on the expression of its type 4 secretion system (T4SS) genes, controlled by the P(Q) promoter. Transcription from the P(Q) promoter is tightly regulated, partially to limit cell toxicity caused by overproduction of PrgB, a T4SS adhesin. PrgU plays an important role in regulating this toxicity by decreasing PrgB levels. PrgU has an RNA-binding fold, prompting us to test whether PrgU exerts its regulatory control through binding of prgQ transcripts. We used a combination of in vivo methods to quantify PrgU effects on prgQ transcripts at both single-cell and population levels. PrgU function requires a specific RNA sequence within an intergenic region (IGR) about 400 bp downstream of P(Q). PrgU interaction with the IGR reduces levels of downstream transcripts. Single-cell expression analysis showed that cells expressing prgU decreased transcript levels more rapidly than isogenic prgU-minus cells. PrgU bound RNA in vitro without sequence specificity, suggesting that PrgU requires a specific RNA structure or one or more host factors for selective binding in vivo. PrgU binding to its IGR target might recruit RNase(s) for targeted degradation of downstream transcripts or reduce elongation of nascent transcripts beyond the IGR. IMPORTANCE Bacteria utilize type 4 secretion systems (T4SS) to efficiently transfer DNA between donor and recipient cells, thereby spreading genes encoding antibiotic resistance as well as various virulence factors. Regulation of expression of the T4SS proteins and surface adhesins in Gram-positive bacteria is crucial, as some of these are highly toxic to the cell. The significance of our research lies in identifying the novel mechanism by which PrgU performs its delicate fine-tuning of the expression levels. As prgU orthologs are present in various conjugative plasmids and transposons, our results are likely relevant to understanding of diverse clinically important transfer systems. American Society for Microbiology 2021-06-09 /pmc/articles/PMC8265641/ /pubmed/34106752 http://dx.doi.org/10.1128/mSphere.00264-21 Text en Copyright © 2021 Lassinantti 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
Lassinantti, Lena
Camacho, Martha I.
Erickson, Rebecca J. B.
Willett, Julia L. E.
De Lay, Nicholas R.
ter Beek, Josy
Dunny, Gary M.
Christie, Peter J.
Berntsson, Ronnie P.-A.
Enterococcal PrgU Provides Additional Regulation of Pheromone-Inducible Conjugative Plasmids
title Enterococcal PrgU Provides Additional Regulation of Pheromone-Inducible Conjugative Plasmids
title_full Enterococcal PrgU Provides Additional Regulation of Pheromone-Inducible Conjugative Plasmids
title_fullStr Enterococcal PrgU Provides Additional Regulation of Pheromone-Inducible Conjugative Plasmids
title_full_unstemmed Enterococcal PrgU Provides Additional Regulation of Pheromone-Inducible Conjugative Plasmids
title_short Enterococcal PrgU Provides Additional Regulation of Pheromone-Inducible Conjugative Plasmids
title_sort enterococcal prgu provides additional regulation of pheromone-inducible conjugative plasmids
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8265641/
https://www.ncbi.nlm.nih.gov/pubmed/34106752
http://dx.doi.org/10.1128/mSphere.00264-21
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