Fludarabine disrupts the STAT1/AhR interaction to attenuate type 1 diabetes by inducing tolerogenic dendritic cells along with targeting effector T cells
Rong Shan-Jie, Yang Chun-Liang, Xiao Ke, Chen Qi-Jie, Zhao Jia-Wei, Liu Yue-Chen, Guo Yan-Chao, Wang Fa-Xi, Li Xin, Luo Xi, Li Yang, Song Dan-Ni, Gu Weikuan, Zhu Xiang-Yun, Liu Shi-Wei, Yang Ping, Al-Motawa Maryam S., Albagha Omar, Sun Fei, Yu Qi-Lin, Yao Ying, Yue Tian-Tian, Wang Cong-Yi
Journal:MOLECULAR MEDICINE
IF:8.3
DOI:10.1186/s10020-026-01483-8
PMID:
Published:2026-04-23
research field:分子生物学药理学内分泌学免疫学自身免疫性疾病代谢学
Abstract
Loss of immune homeostasis in Type 1 diabetes (T1D) leads to a dysregulated and autoreactive immune response that destroys pancreatic β cells, causing absolute insulin deficiency. Nevertheless, current strategies for restoring immune homeostasis remain limited. Inspired by our earlier research, we leveraged the single-cell RNA sequencing data from T1D patients, and unexpectedly found that STAT1 overrepresentation is much more prominent in dendritic cells (DCs) rather in CD4 T cells. Subsequently, we repurposed the clinically-applied STAT1 inhibitor fludarabine in T1D setting. To resolve the underlying mechanism, we employed a multipronged approach in animal studies, incorporating FACS, RNA-seq, ChIP-qPCR, Co-IP/MS, CESTA, TEM, Seahorse assay and Conditional gene knockout model. Furthermore, we investigated the significance of our data in human autoimmune diabetes. Other than directly targeting CD4+ effector T cells, fludarabine also elevated regulatory T cell (Treg) frequency, and therefore, its administration markedly alleviated T1D pathogenesis. Interestingly, fludarabine did not show a direct effect on Treg cells but indirectly fosters Treg program via inducing tolerogenic DCs (tolDCs). The fludarabine-reprogrammed tolDCs are featured by the metabolic shift towards mitochondrial oxidative respiration and exert protective effects on the adoptive transfer studies. Since the emergence of tolDCs could not be fully explained by STAT1 itself, we further explored whether fludarabine alters the STAT1 interactome. Notably, fludarabine binds to STAT1 and disrupts its interaction with the aryl hydrocarbon receptor (AhR), thereby facilitating AhR nuclear translocation. Activated AhR transcriptionally upregulated the expression of anti-inflammatory, anti-ferroptotic, and mitochondrial respiration genes to uphold the tolerogenic DC phenotype.
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