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In vitro and intracellular activities of frog skin temporins against Legionella pneumophila and its eukaryotic hosts

Temporin-SHa (SHa) is a small cationic host defence peptide (HDP) produced in skin secretions of the Sahara frog Pelophylax saharicus. This peptide has a broad-spectrum activity, efficiently targeting bacteria, parasites and viruses. Noticeably, SHa has demonstrated an ability to kill Leishmania inf...

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Autores principales: Crépin, Alexandre, Jégou, Jean-François, André, Sonia, Ecale, Florine, Croitoru, Anastasia, Cantereau, Anne, Berjeaud, Jean-Marc, Ladram, Ali, Verdon, Julien
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7055270/
https://www.ncbi.nlm.nih.gov/pubmed/32132569
http://dx.doi.org/10.1038/s41598-020-60829-2
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author Crépin, Alexandre
Jégou, Jean-François
André, Sonia
Ecale, Florine
Croitoru, Anastasia
Cantereau, Anne
Berjeaud, Jean-Marc
Ladram, Ali
Verdon, Julien
author_facet Crépin, Alexandre
Jégou, Jean-François
André, Sonia
Ecale, Florine
Croitoru, Anastasia
Cantereau, Anne
Berjeaud, Jean-Marc
Ladram, Ali
Verdon, Julien
author_sort Crépin, Alexandre
collection PubMed
description Temporin-SHa (SHa) is a small cationic host defence peptide (HDP) produced in skin secretions of the Sahara frog Pelophylax saharicus. This peptide has a broad-spectrum activity, efficiently targeting bacteria, parasites and viruses. Noticeably, SHa has demonstrated an ability to kill Leishmania infantum parasites (amastigotes) within macrophages. Recently, an analog of SHa with an increased net positive charge, named [K(3)]SHa, has been designed to improve those activities. SHa and [K(3)]SHa were both shown to exhibit leishmanicidal activity mainly by permeabilization of cell membranes but could also induce apoptotis-like death. Temporins are usually poorly active against Gram-negative bacteria whereas many of these species are of public health interest. Among them, Legionella pneumophila, the etiological agent of Legionnaire’s disease, is of major concern. Indeed, this bacterium adopts an intracellular lifestyle and replicate inside alveolar macrophages likewise inside its numerous protozoan hosts. Despite several authors have studied the antimicrobial activity of many compounds on L. pneumophila released from host cells, nothing is known about activity on intracellular L. pneumophila within their hosts, and subsequently mechanisms of action that could be involved. Here, we showed for the first time that SHa and [K(3)]SHa were active towards several species of Legionella. Both peptides displayed bactericidal activity and caused a loss of the bacterial envelope integrity leading to a rapid drop in cell viability. Regarding amoebae and THP-1-derived macrophages, SHa was less toxic than [K(3)]SHa and exhibited low half maximal lethal concentrations (LC(50)). When used at non-toxic concentration (6.25 µM), SHa killed more than 90% L. pneumophila within amoebae and around 50% within macrophages. Using SHa labeled with the fluorescent dye Cy5, we showed an evenly diffusion within cells except in vacuoles. Moreover, SHa was able to enter the nucleus of amoebae and accumulate in the nucleolus. This subcellular localization seemed specific as macrophages nucleoli remained unlabeled. Finally, no modifications in the expression of cytokines and HDPs were recorded when macrophages were treated with 6.25 µM SHa. By combining all data, we showed that temporin-SHa decreases the intracellular L. pneumophila load within amoebae and macrophages without being toxic for eukaryotic cells. This peptide was also able to reach the nucleolus of amoebae but was not capable to penetrate inside vacuoles. These data are in favor of an indirect action of SHa towards intracellular Legionella and make this peptide a promising template for further developments.
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spelling pubmed-70552702020-03-12 In vitro and intracellular activities of frog skin temporins against Legionella pneumophila and its eukaryotic hosts Crépin, Alexandre Jégou, Jean-François André, Sonia Ecale, Florine Croitoru, Anastasia Cantereau, Anne Berjeaud, Jean-Marc Ladram, Ali Verdon, Julien Sci Rep Article Temporin-SHa (SHa) is a small cationic host defence peptide (HDP) produced in skin secretions of the Sahara frog Pelophylax saharicus. This peptide has a broad-spectrum activity, efficiently targeting bacteria, parasites and viruses. Noticeably, SHa has demonstrated an ability to kill Leishmania infantum parasites (amastigotes) within macrophages. Recently, an analog of SHa with an increased net positive charge, named [K(3)]SHa, has been designed to improve those activities. SHa and [K(3)]SHa were both shown to exhibit leishmanicidal activity mainly by permeabilization of cell membranes but could also induce apoptotis-like death. Temporins are usually poorly active against Gram-negative bacteria whereas many of these species are of public health interest. Among them, Legionella pneumophila, the etiological agent of Legionnaire’s disease, is of major concern. Indeed, this bacterium adopts an intracellular lifestyle and replicate inside alveolar macrophages likewise inside its numerous protozoan hosts. Despite several authors have studied the antimicrobial activity of many compounds on L. pneumophila released from host cells, nothing is known about activity on intracellular L. pneumophila within their hosts, and subsequently mechanisms of action that could be involved. Here, we showed for the first time that SHa and [K(3)]SHa were active towards several species of Legionella. Both peptides displayed bactericidal activity and caused a loss of the bacterial envelope integrity leading to a rapid drop in cell viability. Regarding amoebae and THP-1-derived macrophages, SHa was less toxic than [K(3)]SHa and exhibited low half maximal lethal concentrations (LC(50)). When used at non-toxic concentration (6.25 µM), SHa killed more than 90% L. pneumophila within amoebae and around 50% within macrophages. Using SHa labeled with the fluorescent dye Cy5, we showed an evenly diffusion within cells except in vacuoles. Moreover, SHa was able to enter the nucleus of amoebae and accumulate in the nucleolus. This subcellular localization seemed specific as macrophages nucleoli remained unlabeled. Finally, no modifications in the expression of cytokines and HDPs were recorded when macrophages were treated with 6.25 µM SHa. By combining all data, we showed that temporin-SHa decreases the intracellular L. pneumophila load within amoebae and macrophages without being toxic for eukaryotic cells. This peptide was also able to reach the nucleolus of amoebae but was not capable to penetrate inside vacuoles. These data are in favor of an indirect action of SHa towards intracellular Legionella and make this peptide a promising template for further developments. Nature Publishing Group UK 2020-03-04 /pmc/articles/PMC7055270/ /pubmed/32132569 http://dx.doi.org/10.1038/s41598-020-60829-2 Text en © The Author(s) 2020 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Crépin, Alexandre
Jégou, Jean-François
André, Sonia
Ecale, Florine
Croitoru, Anastasia
Cantereau, Anne
Berjeaud, Jean-Marc
Ladram, Ali
Verdon, Julien
In vitro and intracellular activities of frog skin temporins against Legionella pneumophila and its eukaryotic hosts
title In vitro and intracellular activities of frog skin temporins against Legionella pneumophila and its eukaryotic hosts
title_full In vitro and intracellular activities of frog skin temporins against Legionella pneumophila and its eukaryotic hosts
title_fullStr In vitro and intracellular activities of frog skin temporins against Legionella pneumophila and its eukaryotic hosts
title_full_unstemmed In vitro and intracellular activities of frog skin temporins against Legionella pneumophila and its eukaryotic hosts
title_short In vitro and intracellular activities of frog skin temporins against Legionella pneumophila and its eukaryotic hosts
title_sort in vitro and intracellular activities of frog skin temporins against legionella pneumophila and its eukaryotic hosts
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7055270/
https://www.ncbi.nlm.nih.gov/pubmed/32132569
http://dx.doi.org/10.1038/s41598-020-60829-2
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