Sulconazole Suppresses Colorectal Cancer Immune Evasion by Inhibiting Glycolysis to Upregulate OVOL2 PARylation and Induce PANoptosis
- FASEB J. 2026 Jun 15;40(11):e71948. doi: 10.1096/fj.202503346R.
- 1. Department of Anorectal Surgery, The Affiliated Hospital of Guizhou Medical University, Guiyang, Guizhou, China.
- 2. Department of Rehabilitation, Beijing Jishuitan Hospital Guizhou Hospital, Guiyang, Guizhou, China.
Colorectal Cancer (CRC) progression involves metabolic reprogramming and immune evasion, but the link between glycolysis-driven Epigenetics and immune checkpoints is unclear. OVOL2 is a tumor suppressor, yet its role in metabolic-immune crosstalk is unknown. In CRC cells and mouse models, we studied how OVOL2 loss enhances glycolysis and immune evasion. Multi-omics, CRISPR-Cas9, and pharmacological inhibition dissected the OVOL2-glycolysis-PD-L1 axis. Histone lactylation was assessed via immunoblotting and mutagenesis; OVOL2 PARylation by co-IP and PARP assays. Sulconazole's effects were tested in vitro/in vivo, with immune profiling by flow cytometry and multiplex IHC. OVOL2 deficiency increased glycolysis, lactate, and histone lactylation at the CD274 promoter, upregulating PD-L1 and promoting CD8+ T-cell exhaustion. Sulconazole inhibited glycolysis, reduced lactylation and PD-L1, and restored PARP1-mediated OVOL2 PARylation, inducing ASC-dependent PANoptosis. In mice, sulconazole suppressed tumor growth and metastasis. OVOL2 regulates metabolic-immune crosstalk in CRC. Sulconazole blocks glycolysis-driven PD-L1 expression and restores OVOL2 function, inducing PANoptosis and reversing immune evasion. Repurposing sulconazole offers a promising strategy for glycolytic, immunosuppressive CRC.
-
Cat. No.Product NameDescriptionTargetResearch Area
-