NRF2 is a spatiotemporal metabolic hub essential for the polyfunctionality of Th2 cells

Author:

Choi Garam1ORCID,Ju Hye-Yeon2ORCID,Bok Jahyun1ORCID,Choi Jungseo1ORCID,Shin Jae Woo3,Oh Hansol4ORCID,Jeon Yeojin1ORCID,Kim Jiyeon1ORCID,Kim Daehong1ORCID,Moon Heesu1,Lee Jeong-Eun1,Keum Young-Sam5ORCID,Kim You-Me6ORCID,Kim Hye Young3ORCID,Park Sung Ho4ORCID,Han Mi-Ryung2ORCID,Chung Yeonseok1ORCID

Affiliation:

1. Laboratory of Immune Regulation, Institute of Pharmaceutical Sciences, College of Pharmacy, Seoul National University, Seoul 08826, Republic of Korea

2. Division of Life Sciences, College of Life Sciences and Bioengineering, Incheon National University, Incheon 22012, Republic of Korea

3. Laboratory of Mucosal Immunology in Department of Biomedical Sciences, Seoul National University College of Medicine, Seoul 03080, Republic of Korea

4. Laboratory of Molecular Immunology, Department of Biological Science, Ulsan National Institute of Science & Technology, Ulsan 44919, Republic of Korea

5. College of Pharmacy and Integrated Research, Institute for Drug Development, Dongguk University, Goyang 10326, Republic of Korea

6. Graduate School of Medical Science and Engineering, Korea Advanced Institute of Science and Technology, Daejeon 34141, Republic of Korea

Abstract

Upon encountering allergens, CD4 + T cells differentiate into IL-4-producing Th2 cells in lymph nodes, which later transform into polyfunctional Th2 cells producing IL-5 and IL-13 in inflamed tissues. However, the precise mechanism underlying their polyfunctionality remains elusive. In this study, we elucidate the pivotal role of NRF2 in polyfunctional Th2 cells in murine models of allergic asthma and in human Th2 cells. We found that an increase in reactive oxygen species (ROS) in immune cells infiltrating the lungs is necessary for the development of eosinophilic asthma and polyfunctional Th2 cells in vivo. Deletion of the ROS sensor NRF2 specifically in T cells, but not in dendritic cells, significantly abolished eosinophilia and polyfunctional Th2 cells in the airway. Mechanistically, NRF2 intrinsic to T cells is essential for inducing optimal oxidative phosphorylation and glycolysis capacity, thereby driving Th2 cell polyfunctionality independently of IL-33, partially by inducing PPARγ. Treatment with an NRF2 inhibitor leads to a substantial decrease in polyfunctional Th2 cells and subsequent eosinophilia in mice and a reduction in the production of Th2 cytokines from peripheral blood mononuclear cells in asthmatic patients. These findings highlight the critical role of Nrf2 as a spatial and temporal metabolic hub that is essential for polyfunctional Th2 cells, suggesting potential therapeutic implications for allergic diseases.

Funder

National Research Foundation of Korea

Publisher

Proceedings of the National Academy of Sciences

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1. NRF2 is a spatiotemporal metabolic hub essential for the polyfunctionality of Th2 cells;Proceedings of the National Academy of Sciences;2024-07-03

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