Cargando…

H(2)O(2) production rate in Lactobacillus johnsonii is modulated via the interplay of a heterodimeric flavin oxidoreductase with a soluble 28 Kd PAS domain containing protein

Host and commensals crosstalk, mediated by reactive oxygen species (ROS), has triggered a growing scientific interest to understand the mechanisms governing such interaction. However, the majority of the scientific studies published do not evaluate the ROS production by commensals bacteria. In this...

Descripción completa

Detalles Bibliográficos
Autores principales: Valladares, Ricardo B., Graves, Christina, Wright, Kaitlyn, Gardner, Christopher L., Lorca, Graciela L., Gonzalez, Claudio F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4500961/
https://www.ncbi.nlm.nih.gov/pubmed/26236298
http://dx.doi.org/10.3389/fmicb.2015.00716
_version_ 1782380985851052032
author Valladares, Ricardo B.
Graves, Christina
Wright, Kaitlyn
Gardner, Christopher L.
Lorca, Graciela L.
Gonzalez, Claudio F.
author_facet Valladares, Ricardo B.
Graves, Christina
Wright, Kaitlyn
Gardner, Christopher L.
Lorca, Graciela L.
Gonzalez, Claudio F.
author_sort Valladares, Ricardo B.
collection PubMed
description Host and commensals crosstalk, mediated by reactive oxygen species (ROS), has triggered a growing scientific interest to understand the mechanisms governing such interaction. However, the majority of the scientific studies published do not evaluate the ROS production by commensals bacteria. In this context we recently showed that Lactobacillus johnsonii N6.2, a strain of probiotic value, modulates the activity of the critical enzymes 2,3-indoleamine dioxygenase via H(2)O(2) production. L. johnsonii N6.2 by decreasing IDO activity, is able to modify the tryptophan/kynurenine ratio in the host blood with further systemic consequences. Understanding the mechanisms of H(2)O(2) production is critical to predict the probiotic value of these strains and to optimize bacterial biomass production in industrial processes. We performed a transcriptome analysis to identify genes differentially expressed in L. johnsonii N6.2 cells collected from cultures grown under different aeration conditions. Herein we described the biochemical characteristics of a heterodimeric FMN reductase (FRedA/B) whose in vitro activity is controlled by LjPAS protein with a typical Per-Arnst-Sim (PAS) sensor domain. Interestingly, LjPAS is fused to the FMN reductase domains in other lactobacillaceae. In L. johnsonii, LjPAS is encoded by an independent gene which expression is repressed under anaerobic conditions (>3 fold). Purified LjPAS was able to slow down the FRedA/B initial activity rate when the holoenzyme precursors (FredA, FredB, and FMN) were mixed in vitro. Altogether the results obtained suggest that LjPAS module regulates the H(2)O(2) production helping the cells to minimize oxidative stress in response to environmental conditions.
format Online
Article
Text
id pubmed-4500961
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-45009612015-07-31 H(2)O(2) production rate in Lactobacillus johnsonii is modulated via the interplay of a heterodimeric flavin oxidoreductase with a soluble 28 Kd PAS domain containing protein Valladares, Ricardo B. Graves, Christina Wright, Kaitlyn Gardner, Christopher L. Lorca, Graciela L. Gonzalez, Claudio F. Front Microbiol Microbiology Host and commensals crosstalk, mediated by reactive oxygen species (ROS), has triggered a growing scientific interest to understand the mechanisms governing such interaction. However, the majority of the scientific studies published do not evaluate the ROS production by commensals bacteria. In this context we recently showed that Lactobacillus johnsonii N6.2, a strain of probiotic value, modulates the activity of the critical enzymes 2,3-indoleamine dioxygenase via H(2)O(2) production. L. johnsonii N6.2 by decreasing IDO activity, is able to modify the tryptophan/kynurenine ratio in the host blood with further systemic consequences. Understanding the mechanisms of H(2)O(2) production is critical to predict the probiotic value of these strains and to optimize bacterial biomass production in industrial processes. We performed a transcriptome analysis to identify genes differentially expressed in L. johnsonii N6.2 cells collected from cultures grown under different aeration conditions. Herein we described the biochemical characteristics of a heterodimeric FMN reductase (FRedA/B) whose in vitro activity is controlled by LjPAS protein with a typical Per-Arnst-Sim (PAS) sensor domain. Interestingly, LjPAS is fused to the FMN reductase domains in other lactobacillaceae. In L. johnsonii, LjPAS is encoded by an independent gene which expression is repressed under anaerobic conditions (>3 fold). Purified LjPAS was able to slow down the FRedA/B initial activity rate when the holoenzyme precursors (FredA, FredB, and FMN) were mixed in vitro. Altogether the results obtained suggest that LjPAS module regulates the H(2)O(2) production helping the cells to minimize oxidative stress in response to environmental conditions. Frontiers Media S.A. 2015-07-14 /pmc/articles/PMC4500961/ /pubmed/26236298 http://dx.doi.org/10.3389/fmicb.2015.00716 Text en Copyright © 2015 Valladares, Graves, Wright, Gardner, Lorca and Gonzalez. 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) or licensor 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
Valladares, Ricardo B.
Graves, Christina
Wright, Kaitlyn
Gardner, Christopher L.
Lorca, Graciela L.
Gonzalez, Claudio F.
H(2)O(2) production rate in Lactobacillus johnsonii is modulated via the interplay of a heterodimeric flavin oxidoreductase with a soluble 28 Kd PAS domain containing protein
title H(2)O(2) production rate in Lactobacillus johnsonii is modulated via the interplay of a heterodimeric flavin oxidoreductase with a soluble 28 Kd PAS domain containing protein
title_full H(2)O(2) production rate in Lactobacillus johnsonii is modulated via the interplay of a heterodimeric flavin oxidoreductase with a soluble 28 Kd PAS domain containing protein
title_fullStr H(2)O(2) production rate in Lactobacillus johnsonii is modulated via the interplay of a heterodimeric flavin oxidoreductase with a soluble 28 Kd PAS domain containing protein
title_full_unstemmed H(2)O(2) production rate in Lactobacillus johnsonii is modulated via the interplay of a heterodimeric flavin oxidoreductase with a soluble 28 Kd PAS domain containing protein
title_short H(2)O(2) production rate in Lactobacillus johnsonii is modulated via the interplay of a heterodimeric flavin oxidoreductase with a soluble 28 Kd PAS domain containing protein
title_sort h(2)o(2) production rate in lactobacillus johnsonii is modulated via the interplay of a heterodimeric flavin oxidoreductase with a soluble 28 kd pas domain containing protein
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4500961/
https://www.ncbi.nlm.nih.gov/pubmed/26236298
http://dx.doi.org/10.3389/fmicb.2015.00716
work_keys_str_mv AT valladaresricardob h2o2productionrateinlactobacillusjohnsoniiismodulatedviatheinterplayofaheterodimericflavinoxidoreductasewithasoluble28kdpasdomaincontainingprotein
AT graveschristina h2o2productionrateinlactobacillusjohnsoniiismodulatedviatheinterplayofaheterodimericflavinoxidoreductasewithasoluble28kdpasdomaincontainingprotein
AT wrightkaitlyn h2o2productionrateinlactobacillusjohnsoniiismodulatedviatheinterplayofaheterodimericflavinoxidoreductasewithasoluble28kdpasdomaincontainingprotein
AT gardnerchristopherl h2o2productionrateinlactobacillusjohnsoniiismodulatedviatheinterplayofaheterodimericflavinoxidoreductasewithasoluble28kdpasdomaincontainingprotein
AT lorcagracielal h2o2productionrateinlactobacillusjohnsoniiismodulatedviatheinterplayofaheterodimericflavinoxidoreductasewithasoluble28kdpasdomaincontainingprotein
AT gonzalezclaudiof h2o2productionrateinlactobacillusjohnsoniiismodulatedviatheinterplayofaheterodimericflavinoxidoreductasewithasoluble28kdpasdomaincontainingprotein