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Combined ChIP-Seq and transcriptome analysis identifies AP-1/JunD as a primary regulator of oxidative stress and IL-1β synthesis in macrophages

BACKGROUND: The oxidative burst is one of the major antimicrobial mechanisms adopted by macrophages. The WKY rat strain is uniquely susceptible to experimentally induced macrophage-dependent crescentic glomerulonephritis (Crgn). We previously identified the AP-1 transcription factor JunD as a determ...

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Autores principales: Hull, Richard P, Srivastava, Prashant K, D’Souza, Zelpha, Atanur, Santosh S, Mechta-Grigoriou, Fatima, Game, Laurence, Petretto, Enrico, Cook, H Terence, Aitman, Timothy J, Behmoaras, Jacques
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3608227/
https://www.ncbi.nlm.nih.gov/pubmed/23398888
http://dx.doi.org/10.1186/1471-2164-14-92
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author Hull, Richard P
Srivastava, Prashant K
D’Souza, Zelpha
Atanur, Santosh S
Mechta-Grigoriou, Fatima
Game, Laurence
Petretto, Enrico
Cook, H Terence
Aitman, Timothy J
Behmoaras, Jacques
author_facet Hull, Richard P
Srivastava, Prashant K
D’Souza, Zelpha
Atanur, Santosh S
Mechta-Grigoriou, Fatima
Game, Laurence
Petretto, Enrico
Cook, H Terence
Aitman, Timothy J
Behmoaras, Jacques
author_sort Hull, Richard P
collection PubMed
description BACKGROUND: The oxidative burst is one of the major antimicrobial mechanisms adopted by macrophages. The WKY rat strain is uniquely susceptible to experimentally induced macrophage-dependent crescentic glomerulonephritis (Crgn). We previously identified the AP-1 transcription factor JunD as a determinant of macrophage activation in WKY bone marrow-derived macrophages (BMDMs). JunD is over-expressed in WKY BMDMs and its silencing reduces Fc receptor-mediated oxidative burst in these cells. RESULTS: Here we combined Jund RNA interference with microarray analyses alongside ChIP-sequencing (ChIP-Seq) analyses in WKY BMDMs to investigate JunD-mediated control of macrophage activation in basal and lipopolysaccharide (LPS) stimulated cells. Microarray analysis following Jund silencing showed that Jund activates and represses gene expression with marked differential expression (>3 fold) for genes linked with oxidative stress and IL-1β expression. These results were complemented by comparing whole genome expression in WKY BMDMs with Jund congenic strain (WKY.LCrgn2) BMDMs which express lower levels of JunD. ChIP-Seq analyses demonstrated that the increased expression of JunD resulted in an increased number of binding events in WKY BMDMs compared to WKY.LCrgn2 BMDMs. Combined ChIP-Seq and microarray analysis revealed a set of primary JunD-targets through which JunD exerts its effect on oxidative stress and IL-1β synthesis in basal and LPS-stimulated macrophages. CONCLUSIONS: These findings demonstrate how genetically determined levels of a transcription factor affect its binding sites in primary cells and identify JunD as a key regulator of oxidative stress and IL-1β synthesis in primary macrophages, which may play a role in susceptibility to Crgn.
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spelling pubmed-36082272013-03-27 Combined ChIP-Seq and transcriptome analysis identifies AP-1/JunD as a primary regulator of oxidative stress and IL-1β synthesis in macrophages Hull, Richard P Srivastava, Prashant K D’Souza, Zelpha Atanur, Santosh S Mechta-Grigoriou, Fatima Game, Laurence Petretto, Enrico Cook, H Terence Aitman, Timothy J Behmoaras, Jacques BMC Genomics Research Article BACKGROUND: The oxidative burst is one of the major antimicrobial mechanisms adopted by macrophages. The WKY rat strain is uniquely susceptible to experimentally induced macrophage-dependent crescentic glomerulonephritis (Crgn). We previously identified the AP-1 transcription factor JunD as a determinant of macrophage activation in WKY bone marrow-derived macrophages (BMDMs). JunD is over-expressed in WKY BMDMs and its silencing reduces Fc receptor-mediated oxidative burst in these cells. RESULTS: Here we combined Jund RNA interference with microarray analyses alongside ChIP-sequencing (ChIP-Seq) analyses in WKY BMDMs to investigate JunD-mediated control of macrophage activation in basal and lipopolysaccharide (LPS) stimulated cells. Microarray analysis following Jund silencing showed that Jund activates and represses gene expression with marked differential expression (>3 fold) for genes linked with oxidative stress and IL-1β expression. These results were complemented by comparing whole genome expression in WKY BMDMs with Jund congenic strain (WKY.LCrgn2) BMDMs which express lower levels of JunD. ChIP-Seq analyses demonstrated that the increased expression of JunD resulted in an increased number of binding events in WKY BMDMs compared to WKY.LCrgn2 BMDMs. Combined ChIP-Seq and microarray analysis revealed a set of primary JunD-targets through which JunD exerts its effect on oxidative stress and IL-1β synthesis in basal and LPS-stimulated macrophages. CONCLUSIONS: These findings demonstrate how genetically determined levels of a transcription factor affect its binding sites in primary cells and identify JunD as a key regulator of oxidative stress and IL-1β synthesis in primary macrophages, which may play a role in susceptibility to Crgn. BioMed Central 2013-02-11 /pmc/articles/PMC3608227/ /pubmed/23398888 http://dx.doi.org/10.1186/1471-2164-14-92 Text en Copyright ©2013 Hull et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Hull, Richard P
Srivastava, Prashant K
D’Souza, Zelpha
Atanur, Santosh S
Mechta-Grigoriou, Fatima
Game, Laurence
Petretto, Enrico
Cook, H Terence
Aitman, Timothy J
Behmoaras, Jacques
Combined ChIP-Seq and transcriptome analysis identifies AP-1/JunD as a primary regulator of oxidative stress and IL-1β synthesis in macrophages
title Combined ChIP-Seq and transcriptome analysis identifies AP-1/JunD as a primary regulator of oxidative stress and IL-1β synthesis in macrophages
title_full Combined ChIP-Seq and transcriptome analysis identifies AP-1/JunD as a primary regulator of oxidative stress and IL-1β synthesis in macrophages
title_fullStr Combined ChIP-Seq and transcriptome analysis identifies AP-1/JunD as a primary regulator of oxidative stress and IL-1β synthesis in macrophages
title_full_unstemmed Combined ChIP-Seq and transcriptome analysis identifies AP-1/JunD as a primary regulator of oxidative stress and IL-1β synthesis in macrophages
title_short Combined ChIP-Seq and transcriptome analysis identifies AP-1/JunD as a primary regulator of oxidative stress and IL-1β synthesis in macrophages
title_sort combined chip-seq and transcriptome analysis identifies ap-1/jund as a primary regulator of oxidative stress and il-1β synthesis in macrophages
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3608227/
https://www.ncbi.nlm.nih.gov/pubmed/23398888
http://dx.doi.org/10.1186/1471-2164-14-92
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