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Adenoviral Transduction of Naive CD4 T Cells to Study Treg Differentiation
Published on: August 13, 2013
Reduced expression of phosphatase PTPN2 promotes pathogenic conversion of Tregs in autoimmunity
Mattias Nd Svensson1,2, Karen M Doody2, Benjamin J Schmiedel3
1Department of Medicine, University of California, San Diego, La Jolla, California, USA.
Abstract:
Genetic variants at the PTPN2 locus, which encodes the tyrosine phosphatase PTPN2, cause reduced gene expression and are linked to rheumatoid arthritis (RA) and other autoimmune diseases. PTPN2 inhibits signaling through the T cell and cytokine receptors, and loss of PTPN2 promotes T cell expansion and CD4- and CD8-driven autoimmunity. However, it remains unknown whether loss of PTPN2 in FoxP3+ regulatory T cells (Tregs) plays a role in autoimmunity. Here we aimed to model human autoimmune-predisposing PTPN2 variants, the presence of which results in a partial loss of PTPN2 expression, in mouse models of RA. We identified that reduced expression of Ptpn2 enhanced the severity of autoimmune arthritis in the T cell-dependent SKG mouse model and demonstrated that this phenotype was mediated through a Treg-intrinsic mechanism. Mechanistically, we found that through dephosphorylation of STAT3, PTPN2 inhibits IL-6-driven pathogenic loss of FoxP3 after Tregs have acquired RORγt expression, at a stage when chromatin accessibility for STAT3-targeted IL-17-associated transcription factors is maximized. We conclude that PTPN2 promotes FoxP3 stability in mouse RORγt+ Tregs and that loss of function of PTPN2 in Tregs contributes to the association between PTPN2 and autoimmunity.
Insights
Genetic variants in PTPN2 are linked to rheumatoid arthritis. Loss of PTPN2 in regulatory T cells (Tregs) worsens autoimmune arthritis by destabilizing FoxP3, a key Treg marker.
Area of Science:
- Immunology
- Genetics
- Rheumatology
Background:
- Genetic variants in the PTPN2 gene are associated with rheumatoid arthritis (RA) and other autoimmune diseases.
- PTPN2 phosphatase regulates T cell signaling and cytokine receptor pathways.
- The role of PTPN2 in FoxP3+ regulatory T cells (Tregs) in autoimmunity is not understood.
Purpose of the Study:
- To model human autoimmune-predisposing PTPN2 variants in mouse models of RA.
- To investigate the role of PTPN2 in Treg function and autoimmunity.
Main Methods:
- Utilized the T cell-dependent SKG mouse model for autoimmune arthritis.
- Assessed the impact of reduced Ptpn2 expression on disease severity.
- Investigated the molecular mechanisms involving STAT3, IL-6, FoxP3, and RORγt in Tregs.
Main Results:
- Reduced Ptpn2 expression exacerbated autoimmune arthritis severity in the SKG mouse model.
- This exacerbation was mediated by a Treg-intrinsic mechanism.
- PTPN2 dephosphorylates STAT3, preventing IL-6-driven loss of FoxP3 in RORγt-expressing Tregs.
Conclusions:
- PTPN2 is crucial for maintaining FoxP3 stability in RORγt+ Tregs.
- Loss of PTPN2 function in Tregs contributes to the link between PTPN2 variants and autoimmune diseases.
- Targeting PTPN2 in Tregs may offer a therapeutic strategy for autoimmune conditions like RA.
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