Transcriptional Changes in Regulatory T Cells From Patients With Autoimmune Polyendocrine Syndrome Type 1 Suggest Functional Impairment of Lipid Metabolism and Gut Homing

Author:

Berger Amund Holte,Bratland Eirik,Sjøgren Thea,Heimli Marte,Tyssedal Torgeir,Bruserud Øyvind,Johansson Stefan,Husebye Eystein Sverre,Oftedal Bergithe Eikeland,Wolff Anette Susanne Bøe

Abstract

Autoimmune polyendocrine syndrome type I (APS-1) is a monogenic model disorder of organ-specific autoimmunity caused by mutations in the Autoimmune regulator (AIRE) gene. AIRE facilitates the expression of organ-specific transcripts in the thymus, which is essential for efficient removal of dangerous self-reacting T cells and for inducing regulatory T cells (Tregs). Although reduced numbers and function of Tregs have been reported in APS-I patients, the impact of AIRE deficiency on gene expression in these cells is unknown. Here, we report for the first time on global transcriptional patterns of isolated Tregs from APS-1 patients compared to healthy subjects. Overall, we found few differences between the groups, although deviant expression was observed for the genes TMEM39B, SKIDA1, TLN2, GPR15, FASN, BCAR1, HLA-DQA1, HLA-DQB1, HLA-DRA, GPSM3 and AKR1C3. Of significant interest, the consistent downregulation of GPR15 may indicate failure of Treg gut homing which could be of relevance for the gastrointestinal manifestations commonly seen in APS-1. Upregulated FASN expression in APS-1 Tregs points to increased metabolic activity suggesting a putative link to faulty Treg function. Functional studies are needed to determine the significance of these findings for the immunopathogenesis of APS-1 and for Treg immunobiology in general.

Funder

Novo Nordisk Fonden

Publisher

Frontiers Media SA

Subject

Immunology,Immunology and Allergy

Reference66 articles.

1. DNA Methylation Controls Foxp3 Gene Expression;Polansky;Eur J Immunol,2008

2. Naturally Arising Foxp3-Expressing CD25+CD4+ Regulatory T Cells in Immunological Tolerance to Self and Non-Self;Sakaguchi;Nat Immunol,2005

3. Immunologic Self-Tolerance Maintained by Activated T Cells Expressing IL-2 Receptor Alpha-Chains (CD25). Breakdown of a Single Mechanism of Self-Tolerance Causes Various Autoimmune Diseases;Sakaguchi;J Immunol,1995

4. CD4(+)CD62L(+) Central Memory T Cells can be Converted to Foxp3(+) T Cells;Zhang;PLoS One,2013

5. Aire Controls the Recirculation of Murine Foxp3(+) Regulatory T-Cells Back to the Thymus;Cowan;Eur J Immunol,2018

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