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A Defective TLR4 Signaling for IFN-β Expression Is Responsible for the Innately Lower Ability of BALB/c Macrophages to Produce NO in Response to LPS as Compared to C57BL/6

C57BL/6 mice macrophages innately produce higher levels of NO than BALB/c cells when stimulated with LPS. Here, we investigated the molecular events that account for this intrinsic differential production of NO. We found that the lower production of NO in BALB/c is not due to a subtraction of L-argi...

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Autores principales: Oliveira, Luciana S., de Queiroz, Nina M. G. P., Veloso, Laura V. S., Moreira, Thaís G., Oliveira, Fernanda S., Carneiro, Matheus B. H., Faria, Ana M., Vieira, Leda Q., Oliveira, Sérgio C., Horta, Maria F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4049611/
https://www.ncbi.nlm.nih.gov/pubmed/24911280
http://dx.doi.org/10.1371/journal.pone.0098913
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author Oliveira, Luciana S.
de Queiroz, Nina M. G. P.
Veloso, Laura V. S.
Moreira, Thaís G.
Oliveira, Fernanda S.
Carneiro, Matheus B. H.
Faria, Ana M.
Vieira, Leda Q.
Oliveira, Sérgio C.
Horta, Maria F.
author_facet Oliveira, Luciana S.
de Queiroz, Nina M. G. P.
Veloso, Laura V. S.
Moreira, Thaís G.
Oliveira, Fernanda S.
Carneiro, Matheus B. H.
Faria, Ana M.
Vieira, Leda Q.
Oliveira, Sérgio C.
Horta, Maria F.
author_sort Oliveira, Luciana S.
collection PubMed
description C57BL/6 mice macrophages innately produce higher levels of NO than BALB/c cells when stimulated with LPS. Here, we investigated the molecular events that account for this intrinsic differential production of NO. We found that the lower production of NO in BALB/c is not due to a subtraction of L-arginine by arginase, and correlates with a lower iNOS accumulation, which is independent of its degradation rate. Instead, the lower accumulation of iNOS is due to the lower levels of iNOS mRNA, previously shown to be also independent of its stability, suggesting that iNOS transcription is less efficient in BALB/c than in C57BL/6 macrophages. Activation of NFκB is more efficient in BALB/c, thus not correlating with iNOS expression. Conversely, activation of STAT-1 does correlate with iNOS expression, being more prominent in C57BL/6 than in BALB/c macrophages. IFN-β and IL-10 are more highly expressed in C57BL/6 than in BALB/c macrophages, and the opposite is true for TNF-α. Whereas IL-10 and TNF-α do not seem to participate in their differential production of NO, IFN-β has a determinant role since 1) anti-IFN-β neutralizing antibodies abolish STAT-1 activation reducing NO production in C57BL/6 macrophages to levels as low as in BALB/c cells and 2) exogenous rIFN-β confers to LPS-stimulated BALB/c macrophages the ability to phosphorylate STAT-1 and to produce NO as efficiently as C57BL/6 cells. We demonstrate, for the first time, that BALB/c macrophages are innately lower NO producers than C57BL/6 cells because they are defective in the TLR-4-induced IFN-β-mediated STAT-1 activation pathway.
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spelling pubmed-40496112014-06-18 A Defective TLR4 Signaling for IFN-β Expression Is Responsible for the Innately Lower Ability of BALB/c Macrophages to Produce NO in Response to LPS as Compared to C57BL/6 Oliveira, Luciana S. de Queiroz, Nina M. G. P. Veloso, Laura V. S. Moreira, Thaís G. Oliveira, Fernanda S. Carneiro, Matheus B. H. Faria, Ana M. Vieira, Leda Q. Oliveira, Sérgio C. Horta, Maria F. PLoS One Research Article C57BL/6 mice macrophages innately produce higher levels of NO than BALB/c cells when stimulated with LPS. Here, we investigated the molecular events that account for this intrinsic differential production of NO. We found that the lower production of NO in BALB/c is not due to a subtraction of L-arginine by arginase, and correlates with a lower iNOS accumulation, which is independent of its degradation rate. Instead, the lower accumulation of iNOS is due to the lower levels of iNOS mRNA, previously shown to be also independent of its stability, suggesting that iNOS transcription is less efficient in BALB/c than in C57BL/6 macrophages. Activation of NFκB is more efficient in BALB/c, thus not correlating with iNOS expression. Conversely, activation of STAT-1 does correlate with iNOS expression, being more prominent in C57BL/6 than in BALB/c macrophages. IFN-β and IL-10 are more highly expressed in C57BL/6 than in BALB/c macrophages, and the opposite is true for TNF-α. Whereas IL-10 and TNF-α do not seem to participate in their differential production of NO, IFN-β has a determinant role since 1) anti-IFN-β neutralizing antibodies abolish STAT-1 activation reducing NO production in C57BL/6 macrophages to levels as low as in BALB/c cells and 2) exogenous rIFN-β confers to LPS-stimulated BALB/c macrophages the ability to phosphorylate STAT-1 and to produce NO as efficiently as C57BL/6 cells. We demonstrate, for the first time, that BALB/c macrophages are innately lower NO producers than C57BL/6 cells because they are defective in the TLR-4-induced IFN-β-mediated STAT-1 activation pathway. Public Library of Science 2014-06-09 /pmc/articles/PMC4049611/ /pubmed/24911280 http://dx.doi.org/10.1371/journal.pone.0098913 Text en © 2014 Oliveira 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Oliveira, Luciana S.
de Queiroz, Nina M. G. P.
Veloso, Laura V. S.
Moreira, Thaís G.
Oliveira, Fernanda S.
Carneiro, Matheus B. H.
Faria, Ana M.
Vieira, Leda Q.
Oliveira, Sérgio C.
Horta, Maria F.
A Defective TLR4 Signaling for IFN-β Expression Is Responsible for the Innately Lower Ability of BALB/c Macrophages to Produce NO in Response to LPS as Compared to C57BL/6
title A Defective TLR4 Signaling for IFN-β Expression Is Responsible for the Innately Lower Ability of BALB/c Macrophages to Produce NO in Response to LPS as Compared to C57BL/6
title_full A Defective TLR4 Signaling for IFN-β Expression Is Responsible for the Innately Lower Ability of BALB/c Macrophages to Produce NO in Response to LPS as Compared to C57BL/6
title_fullStr A Defective TLR4 Signaling for IFN-β Expression Is Responsible for the Innately Lower Ability of BALB/c Macrophages to Produce NO in Response to LPS as Compared to C57BL/6
title_full_unstemmed A Defective TLR4 Signaling for IFN-β Expression Is Responsible for the Innately Lower Ability of BALB/c Macrophages to Produce NO in Response to LPS as Compared to C57BL/6
title_short A Defective TLR4 Signaling for IFN-β Expression Is Responsible for the Innately Lower Ability of BALB/c Macrophages to Produce NO in Response to LPS as Compared to C57BL/6
title_sort defective tlr4 signaling for ifn-β expression is responsible for the innately lower ability of balb/c macrophages to produce no in response to lps as compared to c57bl/6
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4049611/
https://www.ncbi.nlm.nih.gov/pubmed/24911280
http://dx.doi.org/10.1371/journal.pone.0098913
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