A RORE-dependent Intronic Enhancer in the IL-7 Receptor-α Locus Controls Glucose Metabolism via Vγ4+ γδT17 Cells

Author:

Tani-ichi Shizue12,Obwegs David34ORCID,Yoshikawa Alice2ORCID,Watanabe Hitomi5,Kitano Satsuki6,Ejima Aki17,Hatano Shinya8ORCID,Miyachi Hitoshi6ORCID,Cui Guangwei1,Shimba Akihiro12,Abe Shinya1,Hori Shohei9ORCID,Kondoh Gen5,Sagar 3,Yoshikai Yasunobu10ORCID,Ikuta Koichi1ORCID

Affiliation:

1. *Laboratory of Immune Regulation, Department of Virus Research, Institute for Life and Medical Sciences, Kyoto University, Kyoto, Japan

2. †Human Health Sciences, Graduate School of Medicine, Kyoto University, Kyoto, Japan

3. ‡Department of Medicine II (Gastroenterology, Hepatology, Endocrinology, and Infectious Diseases), Freiburg University Medical Center, Faculty of Medicine, University of Freiburg, Freiburg, Germany

4. §Faculty of Biology, University of Freiburg, Germany

5. ¶Laboratory of Integrative Biological Science, Institute for Life and Medical Sciences, Kyoto University, Kyoto, Japan

6. ‖Reproductive Engineering Team, Institute for Life and Medical Sciences, Kyoto University, Kyoto, Japan

7. #Graduate School of Biostudies, Kyoto University, Kyoto, Japan

8. **Division of Immunology and Genome Biology, Medical Institute of Bioregulation, Kyushu University, Fukuoka, Japan

9. ††Graduate School of Pharmaceutical Sciences, The University of Tokyo, Tokyo, Japan

10. ‡‡Division of Host Defense, Medical Institute of Bioregulation, Kyushu University, Fukuoka, Japan

Abstract

Abstract The IL-7R regulates the homeostasis, activation, and distribution of T cells in peripheral tissues. Although several transcriptional enhancers that regulate IL-7Rα expression in αβ T cells have been identified, enhancers active in γδ T cells remain unknown. In this article, we discovered an evolutionarily conserved noncoding sequence (CNS) in intron 2 of the IL-7Rα-chain (IL-7Rα) locus and named this region CNS9. CNS9 contained a conserved retinoic acid receptor-related orphan receptor (ROR)–responsive element (RORE) and exerted RORγt-dependent enhancer activity in vitro. Mice harboring point mutations in the RORE in CNS9 (CNS9-RORmut) showed reduced IL-7Rα expression in IL-17–producing Vγ4+ γδ T cells. In addition, the cell number and IL-17A production of Vγ4+ γδ T cells were reduced in the adipose tissue of CNS9-RORmut mice. Consistent with the reduction in IL-17A, CNS9-RORmut mice exhibited decreased IL-33 expression in the adipose tissue, resulting in fewer regulatory T cells and glucose intolerance. The CNS9-ROR motif was partially responsible for IL-7Rα expression in RORγt+ regulatory T cells, whereas IL-7Rα expression was unaffected in RORγt-expressing Vγ2+ γδ T cells, Th17 cells, type 3 innate lymphoid cells, and invariant NKT cells. Our results indicate that CNS9 is a RORΕ-dependent, Vγ4+ γδ T cell–specific IL-7Rα enhancer that plays a critical role in adipose tissue homeostasis via regulatory T cells, suggesting that the evolutionarily conserved RORΕ in IL-7Rα intron 2 may influence the incidence of type 2 diabetes.

Funder

Japan Society for the Promotion of Science

the Joint Usage/Research Center program of the Institute for Life and Medical Sciences Kyoto University

Publisher

The American Association of Immunologists

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