PTPN2 links colonic and joint inflammation in experimental autoimmune arthritis

Loss-of-function variants of protein tyrosine phosphatase non-receptor type 2 (PTPN2) enhance risk of inflammatory bowel disease and rheumatoid arthritis; however, whether the association between PTPN2 and autoimmune arthritis depends on gut inflammation is unknown. Here we demonstrate that inductio...

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Main Authors: Wan-Chen Hsieh, Mattias N.D. Svensson, Martina Zoccheddu, Michael L. Tremblay, Shimon Sakaguchi, Stephanie M. Stanford, Nunzio Bottini
Format: Article
Language:English
Published: American Society for Clinical investigation 2020-10-01
Series:JCI Insight
Subjects:
Online Access:https://doi.org/10.1172/jci.insight.141868
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spelling doaj-65333424551d4eefb0163c129e129b952021-08-02T15:56:06ZengAmerican Society for Clinical investigationJCI Insight2379-37082020-10-01520PTPN2 links colonic and joint inflammation in experimental autoimmune arthritisWan-Chen HsiehMattias N.D. SvenssonMartina ZocchedduMichael L. TremblayShimon SakaguchiStephanie M. StanfordNunzio BottiniLoss-of-function variants of protein tyrosine phosphatase non-receptor type 2 (PTPN2) enhance risk of inflammatory bowel disease and rheumatoid arthritis; however, whether the association between PTPN2 and autoimmune arthritis depends on gut inflammation is unknown. Here we demonstrate that induction of subclinical intestinal inflammation exacerbates development of autoimmune arthritis in SKG mice. Ptpn2-haploinsufficient SKG mice — modeling human carriers of disease-associated variants of PTPN2 — displayed enhanced colitis-induced arthritis and joint accumulation of Tregs expressing RAR-related orphan receptor γT (RORγt) — a gut-enriched Treg subset that can undergo conversion into FoxP3–IL-17+ arthritogenic exTregs. SKG colonic Tregs underwent higher conversion into arthritogenic exTregs when compared with peripheral Tregs, which was exacerbated by haploinsufficiency of Ptpn2. Ptpn2 haploinsufficiency led to selective joint accumulation of RORγt-expressing Tregs expressing the colonic marker G protein–coupled receptor 15 (GPR15) in arthritic mice and selectively enhanced conversion of GPR15+ Tregs into exTregs in vitro and in vivo. Inducible Treg-specific haploinsufficiency of Ptpn2 enhanced colitis-induced SKG arthritis and led to specific joint accumulation of GPR15+ exTregs. Our data validate the SKG model for studies at the interface between intestinal and joint inflammation and suggest that arthritogenic variants of PTPN2 amplify the link between gut inflammation and arthritis through conversion of colonic Tregs into exTregs.https://doi.org/10.1172/jci.insight.141868AutoimmunityInflammation
collection DOAJ
language English
format Article
sources DOAJ
author Wan-Chen Hsieh
Mattias N.D. Svensson
Martina Zoccheddu
Michael L. Tremblay
Shimon Sakaguchi
Stephanie M. Stanford
Nunzio Bottini
spellingShingle Wan-Chen Hsieh
Mattias N.D. Svensson
Martina Zoccheddu
Michael L. Tremblay
Shimon Sakaguchi
Stephanie M. Stanford
Nunzio Bottini
PTPN2 links colonic and joint inflammation in experimental autoimmune arthritis
JCI Insight
Autoimmunity
Inflammation
author_facet Wan-Chen Hsieh
Mattias N.D. Svensson
Martina Zoccheddu
Michael L. Tremblay
Shimon Sakaguchi
Stephanie M. Stanford
Nunzio Bottini
author_sort Wan-Chen Hsieh
title PTPN2 links colonic and joint inflammation in experimental autoimmune arthritis
title_short PTPN2 links colonic and joint inflammation in experimental autoimmune arthritis
title_full PTPN2 links colonic and joint inflammation in experimental autoimmune arthritis
title_fullStr PTPN2 links colonic and joint inflammation in experimental autoimmune arthritis
title_full_unstemmed PTPN2 links colonic and joint inflammation in experimental autoimmune arthritis
title_sort ptpn2 links colonic and joint inflammation in experimental autoimmune arthritis
publisher American Society for Clinical investigation
series JCI Insight
issn 2379-3708
publishDate 2020-10-01
description Loss-of-function variants of protein tyrosine phosphatase non-receptor type 2 (PTPN2) enhance risk of inflammatory bowel disease and rheumatoid arthritis; however, whether the association between PTPN2 and autoimmune arthritis depends on gut inflammation is unknown. Here we demonstrate that induction of subclinical intestinal inflammation exacerbates development of autoimmune arthritis in SKG mice. Ptpn2-haploinsufficient SKG mice — modeling human carriers of disease-associated variants of PTPN2 — displayed enhanced colitis-induced arthritis and joint accumulation of Tregs expressing RAR-related orphan receptor γT (RORγt) — a gut-enriched Treg subset that can undergo conversion into FoxP3–IL-17+ arthritogenic exTregs. SKG colonic Tregs underwent higher conversion into arthritogenic exTregs when compared with peripheral Tregs, which was exacerbated by haploinsufficiency of Ptpn2. Ptpn2 haploinsufficiency led to selective joint accumulation of RORγt-expressing Tregs expressing the colonic marker G protein–coupled receptor 15 (GPR15) in arthritic mice and selectively enhanced conversion of GPR15+ Tregs into exTregs in vitro and in vivo. Inducible Treg-specific haploinsufficiency of Ptpn2 enhanced colitis-induced SKG arthritis and led to specific joint accumulation of GPR15+ exTregs. Our data validate the SKG model for studies at the interface between intestinal and joint inflammation and suggest that arthritogenic variants of PTPN2 amplify the link between gut inflammation and arthritis through conversion of colonic Tregs into exTregs.
topic Autoimmunity
Inflammation
url https://doi.org/10.1172/jci.insight.141868
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