Cargando…
A Flavor Lactone Mimicking AHL Quorum-Sensing Signals Exploits the Broad Affinity of the QsdR Regulator to Stimulate Transcription of the Rhodococcal qsd Operon Involved in Quorum-Quenching and Biocontrol Activities
In many Gram-negative bacteria, virulence, and social behavior are controlled by quorum-sensing (QS) systems based on the synthesis and perception of N-acyl homoserine lactones (AHLs). Quorum-quenching (QQ) is currently used to disrupt bacterial communication, as a biocontrol strategy for plant crop...
Autores principales: | , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Frontiers Media S.A.
2019
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6476934/ https://www.ncbi.nlm.nih.gov/pubmed/31040836 http://dx.doi.org/10.3389/fmicb.2019.00786 |
_version_ | 1783412963690938368 |
---|---|
author | Chane, Andrea Barbey, Corinne Bourigault, Yvann Maillot, Olivier Rodrigues, Sophie Bouteiller, Mathilde Merieau, Annabelle Konto-Ghiorghi, Yoan Beury-Cirou, Amélie Gattin, Richard Feuilloley, Marc Laval, Karine Gobert, Virginie Latour, Xavier |
author_facet | Chane, Andrea Barbey, Corinne Bourigault, Yvann Maillot, Olivier Rodrigues, Sophie Bouteiller, Mathilde Merieau, Annabelle Konto-Ghiorghi, Yoan Beury-Cirou, Amélie Gattin, Richard Feuilloley, Marc Laval, Karine Gobert, Virginie Latour, Xavier |
author_sort | Chane, Andrea |
collection | PubMed |
description | In many Gram-negative bacteria, virulence, and social behavior are controlled by quorum-sensing (QS) systems based on the synthesis and perception of N-acyl homoserine lactones (AHLs). Quorum-quenching (QQ) is currently used to disrupt bacterial communication, as a biocontrol strategy for plant crop protection. In this context, the Gram-positive bacterium Rhodococcus erythropolis uses a catabolic pathway to control the virulence of soft-rot pathogens by degrading their AHL signals. This QS signal degradation pathway requires the expression of the qsd operon, encoding the key enzyme QsdA, an intracellular lactonase that can hydrolyze a wide range of substrates. QsdR, a TetR-like family regulator, represses the expression of the qsd operon. During AHL degradation, this repression is released by the binding of the γ-butyrolactone ring of the pathogen signaling molecules to QsdR. We show here that a lactone designed to mimic quorum signals, γ-caprolactone, can act as an effector ligand of QsdR, triggering the synthesis of qsd operon-encoded enzymes. Interaction between γ-caprolactone and QsdR was demonstrated indirectly, by quantitative RT-PCR, molecular docking and transcriptional fusion approaches, and directly, in an electrophoretic mobility shift assay. This broad-affinity regulatory system demonstrates that preventive or curative quenching therapies could be triggered artificially and/or managed in a sustainable way by the addition of γ-caprolactone, a compound better known as cheap food additive. The biostimulation of QQ activity could therefore be used to counteract the lack of consistency observed in some large-scale biocontrol assays. |
format | Online Article Text |
id | pubmed-6476934 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2019 |
publisher | Frontiers Media S.A. |
record_format | MEDLINE/PubMed |
spelling | pubmed-64769342019-04-30 A Flavor Lactone Mimicking AHL Quorum-Sensing Signals Exploits the Broad Affinity of the QsdR Regulator to Stimulate Transcription of the Rhodococcal qsd Operon Involved in Quorum-Quenching and Biocontrol Activities Chane, Andrea Barbey, Corinne Bourigault, Yvann Maillot, Olivier Rodrigues, Sophie Bouteiller, Mathilde Merieau, Annabelle Konto-Ghiorghi, Yoan Beury-Cirou, Amélie Gattin, Richard Feuilloley, Marc Laval, Karine Gobert, Virginie Latour, Xavier Front Microbiol Microbiology In many Gram-negative bacteria, virulence, and social behavior are controlled by quorum-sensing (QS) systems based on the synthesis and perception of N-acyl homoserine lactones (AHLs). Quorum-quenching (QQ) is currently used to disrupt bacterial communication, as a biocontrol strategy for plant crop protection. In this context, the Gram-positive bacterium Rhodococcus erythropolis uses a catabolic pathway to control the virulence of soft-rot pathogens by degrading their AHL signals. This QS signal degradation pathway requires the expression of the qsd operon, encoding the key enzyme QsdA, an intracellular lactonase that can hydrolyze a wide range of substrates. QsdR, a TetR-like family regulator, represses the expression of the qsd operon. During AHL degradation, this repression is released by the binding of the γ-butyrolactone ring of the pathogen signaling molecules to QsdR. We show here that a lactone designed to mimic quorum signals, γ-caprolactone, can act as an effector ligand of QsdR, triggering the synthesis of qsd operon-encoded enzymes. Interaction between γ-caprolactone and QsdR was demonstrated indirectly, by quantitative RT-PCR, molecular docking and transcriptional fusion approaches, and directly, in an electrophoretic mobility shift assay. This broad-affinity regulatory system demonstrates that preventive or curative quenching therapies could be triggered artificially and/or managed in a sustainable way by the addition of γ-caprolactone, a compound better known as cheap food additive. The biostimulation of QQ activity could therefore be used to counteract the lack of consistency observed in some large-scale biocontrol assays. Frontiers Media S.A. 2019-04-16 /pmc/articles/PMC6476934/ /pubmed/31040836 http://dx.doi.org/10.3389/fmicb.2019.00786 Text en Copyright © 2019 Chane, Barbey, Bourigault, Maillot, Rodrigues, Bouteiller, Merieau, Konto-Ghiorghi, Beury-Cirou, Gattin, Feuilloley, Laval, Gobert and Latour. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms. |
spellingShingle | Microbiology Chane, Andrea Barbey, Corinne Bourigault, Yvann Maillot, Olivier Rodrigues, Sophie Bouteiller, Mathilde Merieau, Annabelle Konto-Ghiorghi, Yoan Beury-Cirou, Amélie Gattin, Richard Feuilloley, Marc Laval, Karine Gobert, Virginie Latour, Xavier A Flavor Lactone Mimicking AHL Quorum-Sensing Signals Exploits the Broad Affinity of the QsdR Regulator to Stimulate Transcription of the Rhodococcal qsd Operon Involved in Quorum-Quenching and Biocontrol Activities |
title | A Flavor Lactone Mimicking AHL Quorum-Sensing Signals Exploits the Broad Affinity of the QsdR Regulator to Stimulate Transcription of the Rhodococcal qsd Operon Involved in Quorum-Quenching and Biocontrol Activities |
title_full | A Flavor Lactone Mimicking AHL Quorum-Sensing Signals Exploits the Broad Affinity of the QsdR Regulator to Stimulate Transcription of the Rhodococcal qsd Operon Involved in Quorum-Quenching and Biocontrol Activities |
title_fullStr | A Flavor Lactone Mimicking AHL Quorum-Sensing Signals Exploits the Broad Affinity of the QsdR Regulator to Stimulate Transcription of the Rhodococcal qsd Operon Involved in Quorum-Quenching and Biocontrol Activities |
title_full_unstemmed | A Flavor Lactone Mimicking AHL Quorum-Sensing Signals Exploits the Broad Affinity of the QsdR Regulator to Stimulate Transcription of the Rhodococcal qsd Operon Involved in Quorum-Quenching and Biocontrol Activities |
title_short | A Flavor Lactone Mimicking AHL Quorum-Sensing Signals Exploits the Broad Affinity of the QsdR Regulator to Stimulate Transcription of the Rhodococcal qsd Operon Involved in Quorum-Quenching and Biocontrol Activities |
title_sort | flavor lactone mimicking ahl quorum-sensing signals exploits the broad affinity of the qsdr regulator to stimulate transcription of the rhodococcal qsd operon involved in quorum-quenching and biocontrol activities |
topic | Microbiology |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6476934/ https://www.ncbi.nlm.nih.gov/pubmed/31040836 http://dx.doi.org/10.3389/fmicb.2019.00786 |
work_keys_str_mv | AT chaneandrea aflavorlactonemimickingahlquorumsensingsignalsexploitsthebroadaffinityoftheqsdrregulatortostimulatetranscriptionoftherhodococcalqsdoperoninvolvedinquorumquenchingandbiocontrolactivities AT barbeycorinne aflavorlactonemimickingahlquorumsensingsignalsexploitsthebroadaffinityoftheqsdrregulatortostimulatetranscriptionoftherhodococcalqsdoperoninvolvedinquorumquenchingandbiocontrolactivities AT bourigaultyvann aflavorlactonemimickingahlquorumsensingsignalsexploitsthebroadaffinityoftheqsdrregulatortostimulatetranscriptionoftherhodococcalqsdoperoninvolvedinquorumquenchingandbiocontrolactivities AT maillotolivier aflavorlactonemimickingahlquorumsensingsignalsexploitsthebroadaffinityoftheqsdrregulatortostimulatetranscriptionoftherhodococcalqsdoperoninvolvedinquorumquenchingandbiocontrolactivities AT rodriguessophie aflavorlactonemimickingahlquorumsensingsignalsexploitsthebroadaffinityoftheqsdrregulatortostimulatetranscriptionoftherhodococcalqsdoperoninvolvedinquorumquenchingandbiocontrolactivities AT bouteillermathilde aflavorlactonemimickingahlquorumsensingsignalsexploitsthebroadaffinityoftheqsdrregulatortostimulatetranscriptionoftherhodococcalqsdoperoninvolvedinquorumquenchingandbiocontrolactivities AT merieauannabelle aflavorlactonemimickingahlquorumsensingsignalsexploitsthebroadaffinityoftheqsdrregulatortostimulatetranscriptionoftherhodococcalqsdoperoninvolvedinquorumquenchingandbiocontrolactivities AT kontoghiorghiyoan aflavorlactonemimickingahlquorumsensingsignalsexploitsthebroadaffinityoftheqsdrregulatortostimulatetranscriptionoftherhodococcalqsdoperoninvolvedinquorumquenchingandbiocontrolactivities AT beurycirouamelie aflavorlactonemimickingahlquorumsensingsignalsexploitsthebroadaffinityoftheqsdrregulatortostimulatetranscriptionoftherhodococcalqsdoperoninvolvedinquorumquenchingandbiocontrolactivities AT gattinrichard aflavorlactonemimickingahlquorumsensingsignalsexploitsthebroadaffinityoftheqsdrregulatortostimulatetranscriptionoftherhodococcalqsdoperoninvolvedinquorumquenchingandbiocontrolactivities AT feuilloleymarc aflavorlactonemimickingahlquorumsensingsignalsexploitsthebroadaffinityoftheqsdrregulatortostimulatetranscriptionoftherhodococcalqsdoperoninvolvedinquorumquenchingandbiocontrolactivities AT lavalkarine aflavorlactonemimickingahlquorumsensingsignalsexploitsthebroadaffinityoftheqsdrregulatortostimulatetranscriptionoftherhodococcalqsdoperoninvolvedinquorumquenchingandbiocontrolactivities AT gobertvirginie aflavorlactonemimickingahlquorumsensingsignalsexploitsthebroadaffinityoftheqsdrregulatortostimulatetranscriptionoftherhodococcalqsdoperoninvolvedinquorumquenchingandbiocontrolactivities AT latourxavier aflavorlactonemimickingahlquorumsensingsignalsexploitsthebroadaffinityoftheqsdrregulatortostimulatetranscriptionoftherhodococcalqsdoperoninvolvedinquorumquenchingandbiocontrolactivities AT chaneandrea flavorlactonemimickingahlquorumsensingsignalsexploitsthebroadaffinityoftheqsdrregulatortostimulatetranscriptionoftherhodococcalqsdoperoninvolvedinquorumquenchingandbiocontrolactivities AT barbeycorinne flavorlactonemimickingahlquorumsensingsignalsexploitsthebroadaffinityoftheqsdrregulatortostimulatetranscriptionoftherhodococcalqsdoperoninvolvedinquorumquenchingandbiocontrolactivities AT bourigaultyvann flavorlactonemimickingahlquorumsensingsignalsexploitsthebroadaffinityoftheqsdrregulatortostimulatetranscriptionoftherhodococcalqsdoperoninvolvedinquorumquenchingandbiocontrolactivities AT maillotolivier flavorlactonemimickingahlquorumsensingsignalsexploitsthebroadaffinityoftheqsdrregulatortostimulatetranscriptionoftherhodococcalqsdoperoninvolvedinquorumquenchingandbiocontrolactivities AT rodriguessophie flavorlactonemimickingahlquorumsensingsignalsexploitsthebroadaffinityoftheqsdrregulatortostimulatetranscriptionoftherhodococcalqsdoperoninvolvedinquorumquenchingandbiocontrolactivities AT bouteillermathilde flavorlactonemimickingahlquorumsensingsignalsexploitsthebroadaffinityoftheqsdrregulatortostimulatetranscriptionoftherhodococcalqsdoperoninvolvedinquorumquenchingandbiocontrolactivities AT merieauannabelle flavorlactonemimickingahlquorumsensingsignalsexploitsthebroadaffinityoftheqsdrregulatortostimulatetranscriptionoftherhodococcalqsdoperoninvolvedinquorumquenchingandbiocontrolactivities AT kontoghiorghiyoan flavorlactonemimickingahlquorumsensingsignalsexploitsthebroadaffinityoftheqsdrregulatortostimulatetranscriptionoftherhodococcalqsdoperoninvolvedinquorumquenchingandbiocontrolactivities AT beurycirouamelie flavorlactonemimickingahlquorumsensingsignalsexploitsthebroadaffinityoftheqsdrregulatortostimulatetranscriptionoftherhodococcalqsdoperoninvolvedinquorumquenchingandbiocontrolactivities AT gattinrichard flavorlactonemimickingahlquorumsensingsignalsexploitsthebroadaffinityoftheqsdrregulatortostimulatetranscriptionoftherhodococcalqsdoperoninvolvedinquorumquenchingandbiocontrolactivities AT feuilloleymarc flavorlactonemimickingahlquorumsensingsignalsexploitsthebroadaffinityoftheqsdrregulatortostimulatetranscriptionoftherhodococcalqsdoperoninvolvedinquorumquenchingandbiocontrolactivities AT lavalkarine flavorlactonemimickingahlquorumsensingsignalsexploitsthebroadaffinityoftheqsdrregulatortostimulatetranscriptionoftherhodococcalqsdoperoninvolvedinquorumquenchingandbiocontrolactivities AT gobertvirginie flavorlactonemimickingahlquorumsensingsignalsexploitsthebroadaffinityoftheqsdrregulatortostimulatetranscriptionoftherhodococcalqsdoperoninvolvedinquorumquenchingandbiocontrolactivities AT latourxavier flavorlactonemimickingahlquorumsensingsignalsexploitsthebroadaffinityoftheqsdrregulatortostimulatetranscriptionoftherhodococcalqsdoperoninvolvedinquorumquenchingandbiocontrolactivities |