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Monoallelic IRF5 deficiency in B cells prevents murine lupus

Gain-of-function polymorphisms in the transcription factor IFN regulatory factor 5 (IRF5) are associated with an increased risk of developing systemic lupus erythematosus. However, the IRF5-expressing cell type(s) responsible for lupus pathogenesis in vivo is not known. We now show that monoallelic...

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Autores principales: Pellerin, Alex, Yasuda, Kei, Cohen-Bucay, Abraham, Sandra, Vanessa, Shukla, Prachi, Jr, Barry K. Horne, Nündel, Kerstin, Viglianti, Gregory A., Xie, Yao, Klein, Ulf, Tan, Ying, Bonegio, Ramon G., Rifkin, Ian R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Clinical Investigation 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8410043/
https://www.ncbi.nlm.nih.gov/pubmed/34197340
http://dx.doi.org/10.1172/jci.insight.141395
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author Pellerin, Alex
Yasuda, Kei
Cohen-Bucay, Abraham
Sandra, Vanessa
Shukla, Prachi
Jr, Barry K. Horne
Nündel, Kerstin
Viglianti, Gregory A.
Xie, Yao
Klein, Ulf
Tan, Ying
Bonegio, Ramon G.
Rifkin, Ian R.
author_facet Pellerin, Alex
Yasuda, Kei
Cohen-Bucay, Abraham
Sandra, Vanessa
Shukla, Prachi
Jr, Barry K. Horne
Nündel, Kerstin
Viglianti, Gregory A.
Xie, Yao
Klein, Ulf
Tan, Ying
Bonegio, Ramon G.
Rifkin, Ian R.
author_sort Pellerin, Alex
collection PubMed
description Gain-of-function polymorphisms in the transcription factor IFN regulatory factor 5 (IRF5) are associated with an increased risk of developing systemic lupus erythematosus. However, the IRF5-expressing cell type(s) responsible for lupus pathogenesis in vivo is not known. We now show that monoallelic IRF5 deficiency in B cells markedly reduced disease in a murine lupus model. In contrast, similar reduction of IRF5 expression in macrophages, monocytes, and neutrophils did not reduce disease severity. B cell receptor and TLR7 signaling synergized to promote IRF5 phosphorylation and increase IRF5 protein expression, with these processes being independently regulated. This synergy increased B cell–intrinsic IL-6 and TNF-α production, both key requirements for germinal center (GC) responses, with IL-6 and TNF-α production in vitro and in vivo being substantially lower with loss of 1 allele of IRF5. Mechanistically, TLR7-dependent IRF5 nuclear translocation was reduced in B cells from IRF5-heterozygous mice. In addition, we show in multiple lupus models that IRF5 expression was dynamically regulated in vivo with increased expression in GC B cells compared with non-GC B cells and with further sequential increases during progression to plasmablasts and long-lived plasma cells. Overall, a critical threshold level of IRF5 in B cells was required to promote disease in murine lupus.
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spelling pubmed-84100432021-09-07 Monoallelic IRF5 deficiency in B cells prevents murine lupus Pellerin, Alex Yasuda, Kei Cohen-Bucay, Abraham Sandra, Vanessa Shukla, Prachi Jr, Barry K. Horne Nündel, Kerstin Viglianti, Gregory A. Xie, Yao Klein, Ulf Tan, Ying Bonegio, Ramon G. Rifkin, Ian R. JCI Insight Research Article Gain-of-function polymorphisms in the transcription factor IFN regulatory factor 5 (IRF5) are associated with an increased risk of developing systemic lupus erythematosus. However, the IRF5-expressing cell type(s) responsible for lupus pathogenesis in vivo is not known. We now show that monoallelic IRF5 deficiency in B cells markedly reduced disease in a murine lupus model. In contrast, similar reduction of IRF5 expression in macrophages, monocytes, and neutrophils did not reduce disease severity. B cell receptor and TLR7 signaling synergized to promote IRF5 phosphorylation and increase IRF5 protein expression, with these processes being independently regulated. This synergy increased B cell–intrinsic IL-6 and TNF-α production, both key requirements for germinal center (GC) responses, with IL-6 and TNF-α production in vitro and in vivo being substantially lower with loss of 1 allele of IRF5. Mechanistically, TLR7-dependent IRF5 nuclear translocation was reduced in B cells from IRF5-heterozygous mice. In addition, we show in multiple lupus models that IRF5 expression was dynamically regulated in vivo with increased expression in GC B cells compared with non-GC B cells and with further sequential increases during progression to plasmablasts and long-lived plasma cells. Overall, a critical threshold level of IRF5 in B cells was required to promote disease in murine lupus. American Society for Clinical Investigation 2021-08-09 /pmc/articles/PMC8410043/ /pubmed/34197340 http://dx.doi.org/10.1172/jci.insight.141395 Text en © 2021 Pellerin et al. https://creativecommons.org/licenses/by/4.0/This work is licensed under the Creative Commons Attribution 4.0 International License. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Pellerin, Alex
Yasuda, Kei
Cohen-Bucay, Abraham
Sandra, Vanessa
Shukla, Prachi
Jr, Barry K. Horne
Nündel, Kerstin
Viglianti, Gregory A.
Xie, Yao
Klein, Ulf
Tan, Ying
Bonegio, Ramon G.
Rifkin, Ian R.
Monoallelic IRF5 deficiency in B cells prevents murine lupus
title Monoallelic IRF5 deficiency in B cells prevents murine lupus
title_full Monoallelic IRF5 deficiency in B cells prevents murine lupus
title_fullStr Monoallelic IRF5 deficiency in B cells prevents murine lupus
title_full_unstemmed Monoallelic IRF5 deficiency in B cells prevents murine lupus
title_short Monoallelic IRF5 deficiency in B cells prevents murine lupus
title_sort monoallelic irf5 deficiency in b cells prevents murine lupus
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8410043/
https://www.ncbi.nlm.nih.gov/pubmed/34197340
http://dx.doi.org/10.1172/jci.insight.141395
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