Steady-state memory-phenotype conventional CD4+ T cells exacerbate autoimmune neuroinflammation in a bystander manner via the Bhlhe40/GM-CSF axisopen access
- Authors
- Cho, Min-Ji; Lee, Hong-Gyun; Yoon, Jae-Won; Kim, Gil-Ran; Koo, Ja-Hyun; Taneja, Reshma; Edelson, Brian T.; Lee, You Jeong; Choi, Je-Min
- Issue Date
- May-2023
- Publisher
- Springer Nature
- Citation
- Experimental & Molecular Medicine, v.55, no.5, pp 1033 - 1045
- Pages
- 13
- Indexed
- SCIE
SCOPUS
KCI
- Journal Title
- Experimental & Molecular Medicine
- Volume
- 55
- Number
- 5
- Start Page
- 1033
- End Page
- 1045
- URI
- https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/191710
- DOI
- 10.1038/s12276-023-00995-1
- ISSN
- 1226-3613
2092-6413
- Abstract
- Memory-phenotype (MP) CD4+ T cells are a substantial population of conventional T cells that exist in steady-state mice, yet their immunological roles in autoimmune disease remain unclear. In this work, we unveil a unique phenotype of MP CD4+ T cells determined by analyzing single-cell transcriptomic data and T cell receptor (TCR) repertoires. We found that steady-state MP CD4+ T cells in the spleen were composed of heterogeneous effector subpopulations and existed regardless of germ and food antigen exposure. Distinct subpopulations of MP CD4+ T cells were specifically activated by IL-1 family cytokines and STAT activators, revealing that the cells exerted TCR-independent bystander effector functions similar to innate lymphoid cells. In particular, CCR6high subpopulation of MP CD4+ T cells were major responders to IL-23 and IL-1β without MOG35-55 antigen reactivity, which gave them pathogenic Th17 characteristics and allowed them to contribute to autoimmune encephalomyelitis. We identified that Bhlhe40 in CCR6high MP CD4+ T cells as a key regulator of GM-CSF expression through IL-23 and IL-1β signaling, contributing to central nervous system (CNS) pathology in experimental autoimmune encephalomyelitis. Collectively, our findings reveal the clearly distinct effector-like heterogeneity of MP CD4+ T cells in the steady state and indicate that CCR6high MP CD4+ T cells exacerbate autoimmune neuroinflammation via the Bhlhe40/GM-CSF axis in a bystander manner.
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