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Helicase A determines the transcription program of TH17 lineage differentiation and autoimmunity

  • Yanhong Su
  • , Anjun Jiao
  • , Xiaoran Zhang
  • , Yanan Xu
  • , Huanxin Ping
  • , Kun Zhu
  • , Qiaohao Wang
  • , Ning Yuan
  • , Yang Gao
  • , Bomiao Ju
  • , Renyi Ding
  • , Ni Wang
  • , Lan He
  • , Lei Lei
  • , Yong Zhao
  • , Mingzhen Zhang
  • , Baojun Zhang
  • Xi'an Jiaotong University
  • Fudan University
  • The First Affiliated Hospital of Xi’an Jiaotong University
  • Shenzhen University of Advanced Technology
  • Shenzhen Institute of Advanced Technology
  • Key Laboratory for ImmunoHealth of Shanxi Province
  • Xi’an Key Laboratory of Immune Related Diseases

Research output: Contribution to journalArticlepeer-review

Abstract

T helper 17 (TH17) lineage is governed by canonical transcriptional factors and plays a pivotal role in the pathogenesis of autoimmune diseases in both mice and humans. However, the precise orchestration of this transcriptional program remains poorly understood. Here, we identified a positive correlation between the expression of Dhx9, a nuclear helicase, and TH17 lineage during the progression of autoimmune diseases. Conditional deletion of Dhx9 in T cells significantly reduced TH17 differentiation and ameliorated the symptoms in mouse models of experimental autoimmune encephalomyelitis (EAE) and rheumatoid arthritis (RA). Mechanistically, Dhx9 was essential for increasing chromatin accessibility at the Rorc and Il17 loci, thereby facilitating the binding of canonical factors SMAD2, SMAD3, STAT3 (signal transducer and activator of transcription 3), and IRF4 (interferon regulatory factor 4) to drive the transcription of these two core TH17-specific genes. We additionally identified Nono as an uncharacterized regulator of TH17 differentiation that acts dependent on its interaction with Dhx9. Meanwhile, IL-6 (interleukin-6)-STAT3 signaling promotes TH17 cell differentiation by up-regulating Dhx9 expression. We identified a potential small-molecule inhibitor of Dhx9, punicalagin, which effectively suppressed TH17 differentiation and EAE progression. These findings uncover a mechanism orchestrating the transcriptional program of TH17 lineage commitment and highlight its therapeutic potential for autoimmune disease intervention.

Original languageEnglish
Pages (from-to)eaeb9679
JournalScience Advances
Volume12
Issue number20
DOIs
StatePublished - 15 May 2026

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