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P2X(7)R activation drives distinct IL-1 responses in dendritic cells compared to macrophages

The P2X(7)R is a functionally distinct member of the P2X family of non-selective cation channels associated with rapid activation of the inflammasome complex and signalling interleukin (IL)-1β release in macrophages. The main focus of this investigation was to compare P2X(7)R-driven IL-1 production...

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Autores principales: Englezou, Pavlos C., Rothwell, Simon W., Ainscough, Joseph S., Brough, David, Landsiedel, Robert, Verkhratsky, Alexei, Kimber, Ian, Dearman, Rebecca J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier Science Ltd 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4504032/
https://www.ncbi.nlm.nih.gov/pubmed/26068648
http://dx.doi.org/10.1016/j.cyto.2015.05.013
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author Englezou, Pavlos C.
Rothwell, Simon W.
Ainscough, Joseph S.
Brough, David
Landsiedel, Robert
Verkhratsky, Alexei
Kimber, Ian
Dearman, Rebecca J.
author_facet Englezou, Pavlos C.
Rothwell, Simon W.
Ainscough, Joseph S.
Brough, David
Landsiedel, Robert
Verkhratsky, Alexei
Kimber, Ian
Dearman, Rebecca J.
author_sort Englezou, Pavlos C.
collection PubMed
description The P2X(7)R is a functionally distinct member of the P2X family of non-selective cation channels associated with rapid activation of the inflammasome complex and signalling interleukin (IL)-1β release in macrophages. The main focus of this investigation was to compare P2X(7)R-driven IL-1 production by primary murine bone marrow derived dendritic cells (BMDC) and macrophages (BMM). P2X(7)R expression in murine BMDC and BMM at both transcriptional (P2X(7)A variant) and protein levels was demonstrated. Priming with lipopolysaccharide (LPS) and receptor activation with adenosine triphosphate (ATP) resulted in markedly enhanced IL-1 (α and β) secretion in BMDC compared with BMM. In both cell types IL-1 production was profoundly inhibited with a P2X(7)R-specific inhibitor (A-740003) demonstrating that this release is predominantly a P2X(7)R-dependent process. These data also suggest that P2X(7)R and caspase-1 activation drive IL-1α release from BMDC. Both cell types expressed constitutively the gain-of-function P2X(7)K as well as the full P2X(7)A variant at equivalent levels. LPS priming reduced significantly levels of P2X(7)A but not P2X(7)K transcripts in both BMDC and BMM. P2X(7)R-induced pore formation, assessed by YO-PRO-1 dye uptake, was greater in BMDC, and these cells were protected from cell death. These data demonstrate that DC and macrophages display distinct patterns of cytokine regulation, particularly with respect to IL-1, as a consequence of cell-type specific differences in the physicochemical properties of the P2X(7)R. Understanding the cell-specific regulation of these cytokines is essential for manipulating such responses in health and disease.
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spelling pubmed-45040322015-08-01 P2X(7)R activation drives distinct IL-1 responses in dendritic cells compared to macrophages Englezou, Pavlos C. Rothwell, Simon W. Ainscough, Joseph S. Brough, David Landsiedel, Robert Verkhratsky, Alexei Kimber, Ian Dearman, Rebecca J. Cytokine Article The P2X(7)R is a functionally distinct member of the P2X family of non-selective cation channels associated with rapid activation of the inflammasome complex and signalling interleukin (IL)-1β release in macrophages. The main focus of this investigation was to compare P2X(7)R-driven IL-1 production by primary murine bone marrow derived dendritic cells (BMDC) and macrophages (BMM). P2X(7)R expression in murine BMDC and BMM at both transcriptional (P2X(7)A variant) and protein levels was demonstrated. Priming with lipopolysaccharide (LPS) and receptor activation with adenosine triphosphate (ATP) resulted in markedly enhanced IL-1 (α and β) secretion in BMDC compared with BMM. In both cell types IL-1 production was profoundly inhibited with a P2X(7)R-specific inhibitor (A-740003) demonstrating that this release is predominantly a P2X(7)R-dependent process. These data also suggest that P2X(7)R and caspase-1 activation drive IL-1α release from BMDC. Both cell types expressed constitutively the gain-of-function P2X(7)K as well as the full P2X(7)A variant at equivalent levels. LPS priming reduced significantly levels of P2X(7)A but not P2X(7)K transcripts in both BMDC and BMM. P2X(7)R-induced pore formation, assessed by YO-PRO-1 dye uptake, was greater in BMDC, and these cells were protected from cell death. These data demonstrate that DC and macrophages display distinct patterns of cytokine regulation, particularly with respect to IL-1, as a consequence of cell-type specific differences in the physicochemical properties of the P2X(7)R. Understanding the cell-specific regulation of these cytokines is essential for manipulating such responses in health and disease. Elsevier Science Ltd 2015-08 /pmc/articles/PMC4504032/ /pubmed/26068648 http://dx.doi.org/10.1016/j.cyto.2015.05.013 Text en © 2015 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Englezou, Pavlos C.
Rothwell, Simon W.
Ainscough, Joseph S.
Brough, David
Landsiedel, Robert
Verkhratsky, Alexei
Kimber, Ian
Dearman, Rebecca J.
P2X(7)R activation drives distinct IL-1 responses in dendritic cells compared to macrophages
title P2X(7)R activation drives distinct IL-1 responses in dendritic cells compared to macrophages
title_full P2X(7)R activation drives distinct IL-1 responses in dendritic cells compared to macrophages
title_fullStr P2X(7)R activation drives distinct IL-1 responses in dendritic cells compared to macrophages
title_full_unstemmed P2X(7)R activation drives distinct IL-1 responses in dendritic cells compared to macrophages
title_short P2X(7)R activation drives distinct IL-1 responses in dendritic cells compared to macrophages
title_sort p2x(7)r activation drives distinct il-1 responses in dendritic cells compared to macrophages
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4504032/
https://www.ncbi.nlm.nih.gov/pubmed/26068648
http://dx.doi.org/10.1016/j.cyto.2015.05.013
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