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Conserved noncoding sequence-9 regulates NFATc1-mediated IL-10 expression in B cells to control inflammatory responses

Authors
 Kim, Seung Won  ;  Noh, Jaegyun  ;  Park, Hye Eun  ;  So, Ki Hurn  ;  Hwang, Won  ;  Kim, Gi-Chen  ;  Kim, Chan Johng  ;  So, Jae-Seon  ;  Im, Sin-Hyeog 
Citation
 SCIENCE ADVANCES, Vol.12(17), 2026-04 
Article Number
 eaec7779 
Journal Title
SCIENCE ADVANCES
Issue Date
2026-04
MeSH
Animals ; B-Lymphocytes* / immunology ; B-Lymphocytes* / metabolism ; Conserved Sequence* ; Disease Models, Animal ; Gene Expression Regulation* ; Humans ; Inflammation* / genetics ; Inflammation* / metabolism ; Inflammation* / pathology ; Interleukin-10* / genetics ; Interleukin-10* / metabolism ; Lipopolysaccharides ; Mice ; Mice, Inbred C57BL ; NFATC Transcription Factors* / genetics ; NFATC Transcription Factors* / metabolism ; Promoter Regions, Genetic ; Sepsis / genetics ; Sepsis / metabolism
Abstract
Interleukin-10 (IL-10) production by B cells plays a critical role in regulating inflammatory responses, yet the mechanisms controlling its expression remain poorly understood. We identified a conserved noncoding sequence (CNS-9) as an essential regulatory element for IL-10 expression in mouse B cells. Comprehensive genomic analyses revealed that CNS-9 functions as an enhancer bound by the transcription factor NFATc1, which facilitates chromatin looping between CNS-9 and the IL-10 promoter to drive transcription. Flow cytometry analyses identified B1a cells as the predominant source of B cell-derived IL-10, with this production critically dependent on NFATc1-mediated CNS-9 regulation. In a mouse model of LPS-induced sepsis, deletion of CNS-9, B cell-specific NFATc1, or both resulted in reduced IL-10 production, exacerbated inflammatory responses, and decreased survival. Furthermore, we demonstrated that the human homolog, CNS-12, functions similarly through NFATc1-dependent mechanisms. These findings establish a conserved regulatory pathway controlling IL-10 expression in B cells with notable implications for inflammatory disease pathogenesis and potential therapeutic interventions.
Files in This Item:
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DOI
10.1126/sciadv.aec7779
Appears in Collections:
1. College of Medicine (의과대학) > Dept. of Microbiology (미생물학교실) > 1. Journal Papers
Yonsei Authors
Kim, Gi-Cheon(김기천)
URI
https://ir.ymlib.yonsei.ac.kr/handle/22282913/212757
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