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Biochemical, genetic and transcriptional characterization of multibacteriocin production by the anti-pneumococcal dairy strain Streptococcus infantarius LP90

Streptococcus pneumoniae infections are one of the major causes of morbility and mortality worldwide. Although vaccination and antibiotherapy constitute fundamental and complementary strategies against pneumococcal infections, they present some limitations including the increase in non-vaccine serot...

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Autores principales: Campanero, Cristina, Muñoz-Atienza, Estefanía, Diep, Dzung B., Feito, Javier, Arbulu, Sara, del Campo, Rosa, Nes, Ingolf F., Hernández, Pablo E., Herranz, Carmen, Cintas, Luis M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7058333/
https://www.ncbi.nlm.nih.gov/pubmed/32134941
http://dx.doi.org/10.1371/journal.pone.0229417
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author Campanero, Cristina
Muñoz-Atienza, Estefanía
Diep, Dzung B.
Feito, Javier
Arbulu, Sara
del Campo, Rosa
Nes, Ingolf F.
Hernández, Pablo E.
Herranz, Carmen
Cintas, Luis M.
author_facet Campanero, Cristina
Muñoz-Atienza, Estefanía
Diep, Dzung B.
Feito, Javier
Arbulu, Sara
del Campo, Rosa
Nes, Ingolf F.
Hernández, Pablo E.
Herranz, Carmen
Cintas, Luis M.
author_sort Campanero, Cristina
collection PubMed
description Streptococcus pneumoniae infections are one of the major causes of morbility and mortality worldwide. Although vaccination and antibiotherapy constitute fundamental and complementary strategies against pneumococcal infections, they present some limitations including the increase in non-vaccine serotypes and the emergence of multidrug-resistances, respectively. Ribosomally-synthesized antimicrobial peptides (i.e. bacteriocins) produced by Lactic Acid Bacteria (LAB) may represent an alternative or complementary strategy to antibiotics for the control of pneumococal infections. We tested the antimicrobial activity of 37 bacteriocinogenic LAB, isolated from food and other sources, against clinical S. pneumoniae strains. Streptococcus infantarius subsp. infantarius LP90, isolated from Venezuelan water-buffalo milk, was selected because of its broad and strong anti-pneumococcal spectrum. The in vitro safety assessment of S. infantarius LP90 revealed that it may be considered avirulent. The analysis of a 19,539-bp cluster showed the presence of 29 putative open reading frames (ORFs), including the genes encoding 8 new class II-bacteriocins, as well as the proteins involved in their secretion, immunity and regulation. Transcriptional analyses evidenced that the induction factor (IF) structural gene, the bacteriocin/IF transporter genes, the bacteriocin structural genes and most of the bacteriocin immunity genes were transcribed. MALDI-TOF analyses of peptides purified using different multichromatographic procedures revealed that the dairy strain S. infantarius LP90 produces at least 6 bacteriocins, including infantaricin A(1), a novel anti-pneumococcal two-peptide bacteriocin.
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spelling pubmed-70583332020-03-12 Biochemical, genetic and transcriptional characterization of multibacteriocin production by the anti-pneumococcal dairy strain Streptococcus infantarius LP90 Campanero, Cristina Muñoz-Atienza, Estefanía Diep, Dzung B. Feito, Javier Arbulu, Sara del Campo, Rosa Nes, Ingolf F. Hernández, Pablo E. Herranz, Carmen Cintas, Luis M. PLoS One Research Article Streptococcus pneumoniae infections are one of the major causes of morbility and mortality worldwide. Although vaccination and antibiotherapy constitute fundamental and complementary strategies against pneumococcal infections, they present some limitations including the increase in non-vaccine serotypes and the emergence of multidrug-resistances, respectively. Ribosomally-synthesized antimicrobial peptides (i.e. bacteriocins) produced by Lactic Acid Bacteria (LAB) may represent an alternative or complementary strategy to antibiotics for the control of pneumococal infections. We tested the antimicrobial activity of 37 bacteriocinogenic LAB, isolated from food and other sources, against clinical S. pneumoniae strains. Streptococcus infantarius subsp. infantarius LP90, isolated from Venezuelan water-buffalo milk, was selected because of its broad and strong anti-pneumococcal spectrum. The in vitro safety assessment of S. infantarius LP90 revealed that it may be considered avirulent. The analysis of a 19,539-bp cluster showed the presence of 29 putative open reading frames (ORFs), including the genes encoding 8 new class II-bacteriocins, as well as the proteins involved in their secretion, immunity and regulation. Transcriptional analyses evidenced that the induction factor (IF) structural gene, the bacteriocin/IF transporter genes, the bacteriocin structural genes and most of the bacteriocin immunity genes were transcribed. MALDI-TOF analyses of peptides purified using different multichromatographic procedures revealed that the dairy strain S. infantarius LP90 produces at least 6 bacteriocins, including infantaricin A(1), a novel anti-pneumococcal two-peptide bacteriocin. Public Library of Science 2020-03-05 /pmc/articles/PMC7058333/ /pubmed/32134941 http://dx.doi.org/10.1371/journal.pone.0229417 Text en © 2020 Campanero et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Campanero, Cristina
Muñoz-Atienza, Estefanía
Diep, Dzung B.
Feito, Javier
Arbulu, Sara
del Campo, Rosa
Nes, Ingolf F.
Hernández, Pablo E.
Herranz, Carmen
Cintas, Luis M.
Biochemical, genetic and transcriptional characterization of multibacteriocin production by the anti-pneumococcal dairy strain Streptococcus infantarius LP90
title Biochemical, genetic and transcriptional characterization of multibacteriocin production by the anti-pneumococcal dairy strain Streptococcus infantarius LP90
title_full Biochemical, genetic and transcriptional characterization of multibacteriocin production by the anti-pneumococcal dairy strain Streptococcus infantarius LP90
title_fullStr Biochemical, genetic and transcriptional characterization of multibacteriocin production by the anti-pneumococcal dairy strain Streptococcus infantarius LP90
title_full_unstemmed Biochemical, genetic and transcriptional characterization of multibacteriocin production by the anti-pneumococcal dairy strain Streptococcus infantarius LP90
title_short Biochemical, genetic and transcriptional characterization of multibacteriocin production by the anti-pneumococcal dairy strain Streptococcus infantarius LP90
title_sort biochemical, genetic and transcriptional characterization of multibacteriocin production by the anti-pneumococcal dairy strain streptococcus infantarius lp90
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7058333/
https://www.ncbi.nlm.nih.gov/pubmed/32134941
http://dx.doi.org/10.1371/journal.pone.0229417
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