Cargando…

NLRP6 deficiency expands a novel CD103(+) B cell population that confers immune tolerance in NOD mice

INTRODUCTION: Gut microbiota have been linked to modulating susceptibility to Type 1 diabetes; however, there are many ways in which the microbiota interact with host cells, including through microbial ligand binding to intracellular inflammasomes (large multi-subunit proteins) to initiate immune re...

Descripción completa

Detalles Bibliográficos
Autores principales: Pearson, James A., Peng, Jian, Huang, Juan, Yu, Xiaoqing, Tai, Ningwen, Hu, Youjia, Sha, Sha, Flavell, Richard A., Zhao, Hongyu, Wong, F. Susan, Wen, Li
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9995752/
https://www.ncbi.nlm.nih.gov/pubmed/36911699
http://dx.doi.org/10.3389/fimmu.2023.1147925
_version_ 1784902888167833600
author Pearson, James A.
Peng, Jian
Huang, Juan
Yu, Xiaoqing
Tai, Ningwen
Hu, Youjia
Sha, Sha
Flavell, Richard A.
Zhao, Hongyu
Wong, F. Susan
Wen, Li
author_facet Pearson, James A.
Peng, Jian
Huang, Juan
Yu, Xiaoqing
Tai, Ningwen
Hu, Youjia
Sha, Sha
Flavell, Richard A.
Zhao, Hongyu
Wong, F. Susan
Wen, Li
author_sort Pearson, James A.
collection PubMed
description INTRODUCTION: Gut microbiota have been linked to modulating susceptibility to Type 1 diabetes; however, there are many ways in which the microbiota interact with host cells, including through microbial ligand binding to intracellular inflammasomes (large multi-subunit proteins) to initiate immune responses. NLRP6, a microbe-recognizing inflammasome protein, is highly expressed by intestinal epithelial cells and can alter susceptibility to cancer, obesity and Crohn’s disease; however, the role of NLRP6 in modulating susceptibility to autoimmune diabetes, was previously unknown. METHODS: We generated NLRP6-deficient Non-obese diabetic (NOD) mice to study the effect of NLRP6-deficiency on the immune cells and susceptibility to Type 1 diabetes development. RESULTS: NLRP6-deficient mice exhibited an expansion of CD103(+) B cells and were protected from type 1 diabetes. Moreover, NLRP6-deficient CD103(+) B cells express regulatory markers, secreted higher concentrations of IL-10 and TGFb1 cytokines and suppressed diabetogenic T cell proliferation, compared to NLRP6-sufficient CD103(+) B cells. Microarray analysis of NLRP6-sufficient and -deficient CD103(+) B cells identified 79 significantly different genes including genes regulated by lipopolysaccharide (LPS), tretinoin, IL-10 and TGFb, which was confirmed in vitro following LPS stimulation. Furthermore, microbiota from NLRP6-deficient mice induced CD103(+) B cells in colonized NLRP6-sufficient germ-free mice; however, the long-term maintenance of the CD103(+) B cells required the absence of NLRP6 in the hosts, or continued exposure to microbiota from NLRP6-deficient mice. DISCUSSION: Together, our data indicate that NLRP6 deficiency promotes expansion and maintenance of a novel TGF -dependent CD103(+) Breg population. Thus, targeting NLRP6 therapeutically may prove clinically useful.
format Online
Article
Text
id pubmed-9995752
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-99957522023-03-10 NLRP6 deficiency expands a novel CD103(+) B cell population that confers immune tolerance in NOD mice Pearson, James A. Peng, Jian Huang, Juan Yu, Xiaoqing Tai, Ningwen Hu, Youjia Sha, Sha Flavell, Richard A. Zhao, Hongyu Wong, F. Susan Wen, Li Front Immunol Immunology INTRODUCTION: Gut microbiota have been linked to modulating susceptibility to Type 1 diabetes; however, there are many ways in which the microbiota interact with host cells, including through microbial ligand binding to intracellular inflammasomes (large multi-subunit proteins) to initiate immune responses. NLRP6, a microbe-recognizing inflammasome protein, is highly expressed by intestinal epithelial cells and can alter susceptibility to cancer, obesity and Crohn’s disease; however, the role of NLRP6 in modulating susceptibility to autoimmune diabetes, was previously unknown. METHODS: We generated NLRP6-deficient Non-obese diabetic (NOD) mice to study the effect of NLRP6-deficiency on the immune cells and susceptibility to Type 1 diabetes development. RESULTS: NLRP6-deficient mice exhibited an expansion of CD103(+) B cells and were protected from type 1 diabetes. Moreover, NLRP6-deficient CD103(+) B cells express regulatory markers, secreted higher concentrations of IL-10 and TGFb1 cytokines and suppressed diabetogenic T cell proliferation, compared to NLRP6-sufficient CD103(+) B cells. Microarray analysis of NLRP6-sufficient and -deficient CD103(+) B cells identified 79 significantly different genes including genes regulated by lipopolysaccharide (LPS), tretinoin, IL-10 and TGFb, which was confirmed in vitro following LPS stimulation. Furthermore, microbiota from NLRP6-deficient mice induced CD103(+) B cells in colonized NLRP6-sufficient germ-free mice; however, the long-term maintenance of the CD103(+) B cells required the absence of NLRP6 in the hosts, or continued exposure to microbiota from NLRP6-deficient mice. DISCUSSION: Together, our data indicate that NLRP6 deficiency promotes expansion and maintenance of a novel TGF -dependent CD103(+) Breg population. Thus, targeting NLRP6 therapeutically may prove clinically useful. Frontiers Media S.A. 2023-02-23 /pmc/articles/PMC9995752/ /pubmed/36911699 http://dx.doi.org/10.3389/fimmu.2023.1147925 Text en Copyright © 2023 Pearson, Peng, Huang, Yu, Tai, Hu, Sha, Flavell, Zhao, Wong and Wen https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Immunology
Pearson, James A.
Peng, Jian
Huang, Juan
Yu, Xiaoqing
Tai, Ningwen
Hu, Youjia
Sha, Sha
Flavell, Richard A.
Zhao, Hongyu
Wong, F. Susan
Wen, Li
NLRP6 deficiency expands a novel CD103(+) B cell population that confers immune tolerance in NOD mice
title NLRP6 deficiency expands a novel CD103(+) B cell population that confers immune tolerance in NOD mice
title_full NLRP6 deficiency expands a novel CD103(+) B cell population that confers immune tolerance in NOD mice
title_fullStr NLRP6 deficiency expands a novel CD103(+) B cell population that confers immune tolerance in NOD mice
title_full_unstemmed NLRP6 deficiency expands a novel CD103(+) B cell population that confers immune tolerance in NOD mice
title_short NLRP6 deficiency expands a novel CD103(+) B cell population that confers immune tolerance in NOD mice
title_sort nlrp6 deficiency expands a novel cd103(+) b cell population that confers immune tolerance in nod mice
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9995752/
https://www.ncbi.nlm.nih.gov/pubmed/36911699
http://dx.doi.org/10.3389/fimmu.2023.1147925
work_keys_str_mv AT pearsonjamesa nlrp6deficiencyexpandsanovelcd103bcellpopulationthatconfersimmunetoleranceinnodmice
AT pengjian nlrp6deficiencyexpandsanovelcd103bcellpopulationthatconfersimmunetoleranceinnodmice
AT huangjuan nlrp6deficiencyexpandsanovelcd103bcellpopulationthatconfersimmunetoleranceinnodmice
AT yuxiaoqing nlrp6deficiencyexpandsanovelcd103bcellpopulationthatconfersimmunetoleranceinnodmice
AT tainingwen nlrp6deficiencyexpandsanovelcd103bcellpopulationthatconfersimmunetoleranceinnodmice
AT huyoujia nlrp6deficiencyexpandsanovelcd103bcellpopulationthatconfersimmunetoleranceinnodmice
AT shasha nlrp6deficiencyexpandsanovelcd103bcellpopulationthatconfersimmunetoleranceinnodmice
AT flavellricharda nlrp6deficiencyexpandsanovelcd103bcellpopulationthatconfersimmunetoleranceinnodmice
AT zhaohongyu nlrp6deficiencyexpandsanovelcd103bcellpopulationthatconfersimmunetoleranceinnodmice
AT wongfsusan nlrp6deficiencyexpandsanovelcd103bcellpopulationthatconfersimmunetoleranceinnodmice
AT wenli nlrp6deficiencyexpandsanovelcd103bcellpopulationthatconfersimmunetoleranceinnodmice