BATF is Required for Treg Homeostasis and Stability to Prevent Autoimmune Pathology

Author:

Khatun Achia12,Wu Xiaopeng12,Qi Fu3,Gai Kexin4,Kharel Arjun4,Kudek Matthew R.125ORCID,Fraser Lisa1,Ceicko Ashley1,Kasmani Moujtaba Y.12,Majnik Amber13,Burns Robert2,Chen Yi‐Guang16,Salzman Nita15,Taparowsky Elizabeth J.7,Fang Dayu4,Williams Calvin B.15,Cui Weiguo124ORCID

Affiliation:

1. Department of Microbiology and Immunology Medical College of Wisconsin Milwaukee WI 53226 USA

2. Versiti Blood Research Institute Versiti Wisconsin Milwaukee WI 53226 USA

3. Children's Mercy Hospital in Kansas City 2401 Gillham Rd Kansas City MO 64108 USA

4. Department of Pathology Feinberg School of Medicine Northwestern University 303 E Chicago Ave Chicago IL 60611 USA

5. Department of Pediatrics Medical College of Wisconsin 8701 Watertown Plank Road Milwaukee WI 53226 USA

6. Max McGee National Research Center for Juvenile Diabetes Medical College of Wisconsin 8701 Watertown Plank Road Milwaukee WI 53226 USA

7. Department of Biological Science Purdue University 610 Purdue Mall West Lafayette IN 47907 USA

Abstract

AbstractRegulatory T (Treg) cells are inevitable to prevent deleterious immune responses to self and commensal microorganisms. Treg function requires continuous expression of the transcription factor (TF) FOXP3 and is divided into two major subsets: resting (rTregs) and activated (aTregs). Continuous T cell receptor (TCR) signaling plays a vital role in the differentiation of aTregs from their resting state, and in their immune homeostasis. The process by which Tregs differentiate, adapt tissue specificity, and maintain stable phenotypic expression at the transcriptional level is still inconclusivei. In this work, the role of BATF is investigated, which is induced in response to TCR stimulation in naïve T cells and during aTreg differentiation. Mice lacking BATF in Tregs developed multiorgan autoimmune pathology. As a transcriptional regulator, BATF is required for Treg differentiation, homeostasis, and stabilization of FOXP3 expression in different lymphoid and non‐lymphoid tissues. Epigenetically, BATF showed direct regulation of Treg‐specific genes involved in differentiation, maturation, and tissue accumulation. Most importantly, FOXP3 expression and Treg stability require continuous BATF expression in Tregs, as it regulates demethylation and accessibility of the CNS2 region of the Foxp3 locus. Considering its role in Treg stability, BATF should be considered an important therapeutic target in autoimmune disease.

Funder

National Institutes of Health

American Cancer Society

Medical College of Wisconsin

St. Baldrick's Foundation

Division of Intramural Research, National Institute of Allergy and Infectious Diseases

Publisher

Wiley

Subject

General Physics and Astronomy,General Engineering,Biochemistry, Genetics and Molecular Biology (miscellaneous),General Materials Science,General Chemical Engineering,Medicine (miscellaneous)

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