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Functional Diversification of Oyster Big Defensins Generates Antimicrobial Specificity and Synergy against Members of the Microbiota

Big defensins are two-domain antimicrobial peptides (AMPs) that have highly diversified in mollusks. Cg-BigDefs are expressed by immune cells in the oyster Crassostrea gigas, and their expression is dampened during the Pacific Oyster Mortality Syndrome (POMS), which evolves toward fatal bacteremia....

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Autores principales: De San Nicolas, Noémie, Asokan, Aromal, Rosa, Rafael D., Voisin, Sébastien N., Travers, Marie-Agnès, Rocha, Gustavo, Dantan, Luc, Dorant, Yann, Mitta, Guillaume, Petton, Bruno, Charrière, Guillaume M., Escoubas, Jean-Michel, Boulo, Viviane, Pouzadoux, Juliette, Meudal, Hervé, Loth, Karine, Aucagne, Vincent, Delmas, Agnès F., Bulet, Philippe, Montagnani, Caroline, Destoumieux-Garzón, Delphine
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9786018/
https://www.ncbi.nlm.nih.gov/pubmed/36547892
http://dx.doi.org/10.3390/md20120745
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author De San Nicolas, Noémie
Asokan, Aromal
Rosa, Rafael D.
Voisin, Sébastien N.
Travers, Marie-Agnès
Rocha, Gustavo
Dantan, Luc
Dorant, Yann
Mitta, Guillaume
Petton, Bruno
Charrière, Guillaume M.
Escoubas, Jean-Michel
Boulo, Viviane
Pouzadoux, Juliette
Meudal, Hervé
Loth, Karine
Aucagne, Vincent
Delmas, Agnès F.
Bulet, Philippe
Montagnani, Caroline
Destoumieux-Garzón, Delphine
author_facet De San Nicolas, Noémie
Asokan, Aromal
Rosa, Rafael D.
Voisin, Sébastien N.
Travers, Marie-Agnès
Rocha, Gustavo
Dantan, Luc
Dorant, Yann
Mitta, Guillaume
Petton, Bruno
Charrière, Guillaume M.
Escoubas, Jean-Michel
Boulo, Viviane
Pouzadoux, Juliette
Meudal, Hervé
Loth, Karine
Aucagne, Vincent
Delmas, Agnès F.
Bulet, Philippe
Montagnani, Caroline
Destoumieux-Garzón, Delphine
author_sort De San Nicolas, Noémie
collection PubMed
description Big defensins are two-domain antimicrobial peptides (AMPs) that have highly diversified in mollusks. Cg-BigDefs are expressed by immune cells in the oyster Crassostrea gigas, and their expression is dampened during the Pacific Oyster Mortality Syndrome (POMS), which evolves toward fatal bacteremia. We evaluated whether Cg-BigDefs contribute to the control of oyster-associated microbial communities. Two Cg-BigDefs that are representative of molecular diversity within the peptide family, namely Cg-BigDef1 and Cg-BigDef5, were characterized by gene cloning and synthesized by solid-phase peptide synthesis and native chemical ligation. Synthetic peptides were tested for antibacterial activity against a collection of culturable bacteria belonging to the oyster microbiota, characterized by 16S sequencing and MALDI Biotyping. We first tested the potential of Cg-BigDefs to control the oyster microbiota by injecting synthetic Cg-BigDef1 into oyster tissues and analyzing microbiota dynamics over 24 h by 16S metabarcoding. Cg-BigDef1 induced a significant shift in oyster microbiota β-diversity after 6 h and 24 h, prompting us to investigate antimicrobial activities in vitro against members of the oyster microbiota. Both Cg-BigDef1 and Cg-BigDef5 were active at a high salt concentration (400 mM NaCl) and showed broad spectra of activity against bacteria associated with C. gigas pathologies. Antimicrobial specificity was observed for both molecules at an intra- and inter-genera level. Remarkably, antimicrobial spectra of Cg-BigDef1 and Cg-BigDef5 were complementary, and peptides acted synergistically. Overall, we found that primary sequence diversification of Cg-BigDefs has generated specificity and synergy and extended the spectrum of activity of this peptide family.
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spelling pubmed-97860182022-12-24 Functional Diversification of Oyster Big Defensins Generates Antimicrobial Specificity and Synergy against Members of the Microbiota De San Nicolas, Noémie Asokan, Aromal Rosa, Rafael D. Voisin, Sébastien N. Travers, Marie-Agnès Rocha, Gustavo Dantan, Luc Dorant, Yann Mitta, Guillaume Petton, Bruno Charrière, Guillaume M. Escoubas, Jean-Michel Boulo, Viviane Pouzadoux, Juliette Meudal, Hervé Loth, Karine Aucagne, Vincent Delmas, Agnès F. Bulet, Philippe Montagnani, Caroline Destoumieux-Garzón, Delphine Mar Drugs Article Big defensins are two-domain antimicrobial peptides (AMPs) that have highly diversified in mollusks. Cg-BigDefs are expressed by immune cells in the oyster Crassostrea gigas, and their expression is dampened during the Pacific Oyster Mortality Syndrome (POMS), which evolves toward fatal bacteremia. We evaluated whether Cg-BigDefs contribute to the control of oyster-associated microbial communities. Two Cg-BigDefs that are representative of molecular diversity within the peptide family, namely Cg-BigDef1 and Cg-BigDef5, were characterized by gene cloning and synthesized by solid-phase peptide synthesis and native chemical ligation. Synthetic peptides were tested for antibacterial activity against a collection of culturable bacteria belonging to the oyster microbiota, characterized by 16S sequencing and MALDI Biotyping. We first tested the potential of Cg-BigDefs to control the oyster microbiota by injecting synthetic Cg-BigDef1 into oyster tissues and analyzing microbiota dynamics over 24 h by 16S metabarcoding. Cg-BigDef1 induced a significant shift in oyster microbiota β-diversity after 6 h and 24 h, prompting us to investigate antimicrobial activities in vitro against members of the oyster microbiota. Both Cg-BigDef1 and Cg-BigDef5 were active at a high salt concentration (400 mM NaCl) and showed broad spectra of activity against bacteria associated with C. gigas pathologies. Antimicrobial specificity was observed for both molecules at an intra- and inter-genera level. Remarkably, antimicrobial spectra of Cg-BigDef1 and Cg-BigDef5 were complementary, and peptides acted synergistically. Overall, we found that primary sequence diversification of Cg-BigDefs has generated specificity and synergy and extended the spectrum of activity of this peptide family. MDPI 2022-11-26 /pmc/articles/PMC9786018/ /pubmed/36547892 http://dx.doi.org/10.3390/md20120745 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
De San Nicolas, Noémie
Asokan, Aromal
Rosa, Rafael D.
Voisin, Sébastien N.
Travers, Marie-Agnès
Rocha, Gustavo
Dantan, Luc
Dorant, Yann
Mitta, Guillaume
Petton, Bruno
Charrière, Guillaume M.
Escoubas, Jean-Michel
Boulo, Viviane
Pouzadoux, Juliette
Meudal, Hervé
Loth, Karine
Aucagne, Vincent
Delmas, Agnès F.
Bulet, Philippe
Montagnani, Caroline
Destoumieux-Garzón, Delphine
Functional Diversification of Oyster Big Defensins Generates Antimicrobial Specificity and Synergy against Members of the Microbiota
title Functional Diversification of Oyster Big Defensins Generates Antimicrobial Specificity and Synergy against Members of the Microbiota
title_full Functional Diversification of Oyster Big Defensins Generates Antimicrobial Specificity and Synergy against Members of the Microbiota
title_fullStr Functional Diversification of Oyster Big Defensins Generates Antimicrobial Specificity and Synergy against Members of the Microbiota
title_full_unstemmed Functional Diversification of Oyster Big Defensins Generates Antimicrobial Specificity and Synergy against Members of the Microbiota
title_short Functional Diversification of Oyster Big Defensins Generates Antimicrobial Specificity and Synergy against Members of the Microbiota
title_sort functional diversification of oyster big defensins generates antimicrobial specificity and synergy against members of the microbiota
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9786018/
https://www.ncbi.nlm.nih.gov/pubmed/36547892
http://dx.doi.org/10.3390/md20120745
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