Cargando…

The autoimmune encephalitis-related cytokine TSLP in the brain primes neuroinflammation by activating the JAK2-NLRP3 axis

NLRP3 inflammasome hyperactivation contributes to neuroinflammation in autoimmune disorders, but the underlying regulatory mechanism remains to be elucidated. We demonstrate that compared with wild-type (WT) mice, mice lacking thymic stromal lymphopoietin (TSLP) receptor (TSLPR) (Tslpr(−/−) mice) ex...

Descripción completa

Detalles Bibliográficos
Autores principales: Yu, Xueyuan, Lv, Jiajia, Wu, Jun, Chen, Yong, Chen, Fei, Wang, Li
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8802176/
https://www.ncbi.nlm.nih.gov/pubmed/35020848
http://dx.doi.org/10.1093/cei/uxab023
_version_ 1784642622680203264
author Yu, Xueyuan
Lv, Jiajia
Wu, Jun
Chen, Yong
Chen, Fei
Wang, Li
author_facet Yu, Xueyuan
Lv, Jiajia
Wu, Jun
Chen, Yong
Chen, Fei
Wang, Li
author_sort Yu, Xueyuan
collection PubMed
description NLRP3 inflammasome hyperactivation contributes to neuroinflammation in autoimmune disorders, but the underlying regulatory mechanism remains to be elucidated. We demonstrate that compared with wild-type (WT) mice, mice lacking thymic stromal lymphopoietin (TSLP) receptor (TSLPR) (Tslpr(−/−) mice) exhibit a significantly decreased experimental autoimmune encephalomyelitis (EAE) score, reduced CD4(+) T cell infiltration, and restored myelin basic protein (MBP) expression in the brain after EAE induction by myelin oligodendrocyte glycoprotein(35–55) (MOG(35–55)). TSLPR signals through Janus kinase (JAK)2, but not JAK1 or JAK3, to induce NLRP3 expression, and Tslpr(−/−) mice with EAE show decreased JAK2 phosphorylation and NLRP3 expression in the brain. JAK2 inhibition by ruxolitinib mimicked loss of TSLPR function in vivo and further decreased TSLP expression in the EAE mouse brain. The NLRP3 inhibitor MCC950 decreased CD4(+) T cell infiltration, restored MBP expression, and decreased IL-1β and TSLP levels, verifying the pro-inflammatory role of NLRP3. In vitro experiments using BV-2 murine microglia revealed that TSLP directly induced NLRP3 expression, phosphorylation of JAK2 but not JAK1orJAK3, and IL-1β release, which were markedly inhibited by ruxolitinib. Furthermore, EAE induction led to an increase in the Th17 cell number, a decrease in the regulatory T (Treg) cell number in the blood, and an increase in the expression of the cytokine IL-17A in the WT mouse brain, which was drastically reversed in Tslpr(−/−) mice. In addition, ruxolitinib suppressed the increase in IL-17A expression in the EAE mouse brain. These findings identify TSLP as a prospective target for treating JAK2-NLRP3 axis-associated autoimmune inflammatory disorders.
format Online
Article
Text
id pubmed-8802176
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-88021762022-01-31 The autoimmune encephalitis-related cytokine TSLP in the brain primes neuroinflammation by activating the JAK2-NLRP3 axis Yu, Xueyuan Lv, Jiajia Wu, Jun Chen, Yong Chen, Fei Wang, Li Clin Exp Immunol Research Articles NLRP3 inflammasome hyperactivation contributes to neuroinflammation in autoimmune disorders, but the underlying regulatory mechanism remains to be elucidated. We demonstrate that compared with wild-type (WT) mice, mice lacking thymic stromal lymphopoietin (TSLP) receptor (TSLPR) (Tslpr(−/−) mice) exhibit a significantly decreased experimental autoimmune encephalomyelitis (EAE) score, reduced CD4(+) T cell infiltration, and restored myelin basic protein (MBP) expression in the brain after EAE induction by myelin oligodendrocyte glycoprotein(35–55) (MOG(35–55)). TSLPR signals through Janus kinase (JAK)2, but not JAK1 or JAK3, to induce NLRP3 expression, and Tslpr(−/−) mice with EAE show decreased JAK2 phosphorylation and NLRP3 expression in the brain. JAK2 inhibition by ruxolitinib mimicked loss of TSLPR function in vivo and further decreased TSLP expression in the EAE mouse brain. The NLRP3 inhibitor MCC950 decreased CD4(+) T cell infiltration, restored MBP expression, and decreased IL-1β and TSLP levels, verifying the pro-inflammatory role of NLRP3. In vitro experiments using BV-2 murine microglia revealed that TSLP directly induced NLRP3 expression, phosphorylation of JAK2 but not JAK1orJAK3, and IL-1β release, which were markedly inhibited by ruxolitinib. Furthermore, EAE induction led to an increase in the Th17 cell number, a decrease in the regulatory T (Treg) cell number in the blood, and an increase in the expression of the cytokine IL-17A in the WT mouse brain, which was drastically reversed in Tslpr(−/−) mice. In addition, ruxolitinib suppressed the increase in IL-17A expression in the EAE mouse brain. These findings identify TSLP as a prospective target for treating JAK2-NLRP3 axis-associated autoimmune inflammatory disorders. Oxford University Press 2021-11-27 /pmc/articles/PMC8802176/ /pubmed/35020848 http://dx.doi.org/10.1093/cei/uxab023 Text en © The Author(s) 2021. Published by Oxford University Press on behalf of the British Society for Immunology. All rights reserved. For permissions, please e-mail: journals.permissions@oup.com https://academic.oup.com/journals/pages/open_access/funder_policies/chorus/standard_publication_modelThis article is published and distributed under the terms of the Oxford University Press, Standard Journals Publication Model (https://academic.oup.com/journals/pages/open_access/funder_policies/chorus/standard_publication_model)
spellingShingle Research Articles
Yu, Xueyuan
Lv, Jiajia
Wu, Jun
Chen, Yong
Chen, Fei
Wang, Li
The autoimmune encephalitis-related cytokine TSLP in the brain primes neuroinflammation by activating the JAK2-NLRP3 axis
title The autoimmune encephalitis-related cytokine TSLP in the brain primes neuroinflammation by activating the JAK2-NLRP3 axis
title_full The autoimmune encephalitis-related cytokine TSLP in the brain primes neuroinflammation by activating the JAK2-NLRP3 axis
title_fullStr The autoimmune encephalitis-related cytokine TSLP in the brain primes neuroinflammation by activating the JAK2-NLRP3 axis
title_full_unstemmed The autoimmune encephalitis-related cytokine TSLP in the brain primes neuroinflammation by activating the JAK2-NLRP3 axis
title_short The autoimmune encephalitis-related cytokine TSLP in the brain primes neuroinflammation by activating the JAK2-NLRP3 axis
title_sort autoimmune encephalitis-related cytokine tslp in the brain primes neuroinflammation by activating the jak2-nlrp3 axis
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8802176/
https://www.ncbi.nlm.nih.gov/pubmed/35020848
http://dx.doi.org/10.1093/cei/uxab023
work_keys_str_mv AT yuxueyuan theautoimmuneencephalitisrelatedcytokinetslpinthebrainprimesneuroinflammationbyactivatingthejak2nlrp3axis
AT lvjiajia theautoimmuneencephalitisrelatedcytokinetslpinthebrainprimesneuroinflammationbyactivatingthejak2nlrp3axis
AT wujun theautoimmuneencephalitisrelatedcytokinetslpinthebrainprimesneuroinflammationbyactivatingthejak2nlrp3axis
AT chenyong theautoimmuneencephalitisrelatedcytokinetslpinthebrainprimesneuroinflammationbyactivatingthejak2nlrp3axis
AT chenfei theautoimmuneencephalitisrelatedcytokinetslpinthebrainprimesneuroinflammationbyactivatingthejak2nlrp3axis
AT wangli theautoimmuneencephalitisrelatedcytokinetslpinthebrainprimesneuroinflammationbyactivatingthejak2nlrp3axis
AT yuxueyuan autoimmuneencephalitisrelatedcytokinetslpinthebrainprimesneuroinflammationbyactivatingthejak2nlrp3axis
AT lvjiajia autoimmuneencephalitisrelatedcytokinetslpinthebrainprimesneuroinflammationbyactivatingthejak2nlrp3axis
AT wujun autoimmuneencephalitisrelatedcytokinetslpinthebrainprimesneuroinflammationbyactivatingthejak2nlrp3axis
AT chenyong autoimmuneencephalitisrelatedcytokinetslpinthebrainprimesneuroinflammationbyactivatingthejak2nlrp3axis
AT chenfei autoimmuneencephalitisrelatedcytokinetslpinthebrainprimesneuroinflammationbyactivatingthejak2nlrp3axis
AT wangli autoimmuneencephalitisrelatedcytokinetslpinthebrainprimesneuroinflammationbyactivatingthejak2nlrp3axis