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Updated: Aug 6, 2026

Tractable In Vivo Reprogramming of Tumor Cells to Type 1 Conventional Dendritic Cell-like Cells
Published on: August 1, 2025
ENO3-mediated glycolytic reprogramming participates in β-glucan-induced dendritic cells activation and anti-tumor
Jun Ding1, Yongzhe Hao1, Meng Yuan1
1Laboratory of Oncology, Changzhou Medical Center, The Second People's Hospital of Changzhou, The Third Affiliated Hospital of Nanjing Medical University, Nanjing Medical University, Nanjing, China.
Abstract:
Dendritic cells (DCs) are key initiators of antitumor immunity, yet the metabolic drivers governing their activation remain incompletely defined. Here, we show that the fungal immunomodulator β-glucan induces robust immune-metabolic reprogramming in bone marrow-derived DCs (BMDCs), characterized by coordinated increases in glycolysis and tricarboxylic acid cycle activity. This metabolic shift is essential for BMDCs activation, as inhibition of glycolysis or oxidative metabolism diminishes β-glucan-induced costimulatory molecule expression, proinflammatory cytokine production and T-cell priming. Multi-omics profiling identifies enolase 3 (ENO3) as a key glycolytic regulator selectively upregulated by β-glucan. ENO3 knockdown reduces glycolytic flux, decreases mitochondrial ATP and ROS production, and consequently impairs BMDCs maturation and CD8⁺ T-cell responses. In DC-specific ENO3-knockout mice, ENO3 deficiency significantly compromises the antitumor efficacy of β-glucan, which characterized by accelerated tumor growth, impaired DCs activation, reduced CD8⁺ T-cell infiltration, and an immunosuppressive tumor milieu. These findings reveal ENO3 as a critical metabolic regulator linking β-glucan sensing to DC-mediated antitumor immunity.
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