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Updated: Sep 20, 2026

Experimental Autoimmune Uveitis: An Intraocular Inflammatory Mouse Model
Published on: January 12, 2022
Super-enhancer-driven SGK1 activates polyamine metabolism to promote autoimmune uveitis
He Li1,2, Lei Zhu1,2, Zhaohuai Li3
1State Key Laboratory of Eye Health, Department of Ophthalmology, Shanghai Ninth People's Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai 200011, China.
Abstract:
Uveitis, a leading cause of blindness, is driven by dysregulated immune responses, particularly autoreactive T cells. Despite advances in understanding its pathogenesis, key regulatory mechanisms remain elusive. Here, we integrate the cleavage under targets and tagmentation (CUT&Tag) and single-cell RNA sequencing (scRNA-seq) to delineate the super-enhancer (SE) landscape and transcriptional profiles of CD4+ T cells in Vogt-Koyanagi-Harada (VKH) disease. We identify serum/glucocorticoid-regulated kinase 1 (SGK1) as a key SE-associated gene, substantially up-regulated in CD4+ T cells of VKH patients. Pharmacological inhibition of SGK1 markedly alleviates uveitis in mice. Mechanistically, SE-driven SGK1 expression activates the MEK1-ERK1/2-ODC1 axis, leading to aberrant polyamine metabolism and a skewed T helper 17 (TH17)/regulatory T (Treg) balance, whereas polyamine supplementation negates these therapeutic benefits, confirming SGK1's role in driving disease progression. Notably, through molecular docking and molecular dynamics simulations, we identified herbacetin as a natural inhibitor of SGK1. Herbacetin restores immune balance and mitigates disease severity, highlighting SGK1 as a promising therapeutic target for autoimmune uveitis.

