AEBP1 drives fibroblast-mediated T cell dysfunction in tumors
作者:Xiaoyu Wang, Jiakui Li, Daqiang Song, Yushen Wu, Jiazhou Liu, Ziying Yi, Jiazheng Sun, Jiefeng Huang, Linling Wu, Xiang Zhang, Jingyuan Wan, Li Zhang, Chong Li, Li Fan, Yuxian Wei, Yongxue Zhu, Huimin Du, Guosheng Ren, Hongzhong Li · 发表于:Nature Communications · 年份:2025 · DOI:10.1038/s41467-025-63659-w · 被引用次数:7 · 研究领域:Cancer Immunotherapy and Biomarkers、Peptidase Inhibition and Analysis、Pancreatic and Hepatic Oncology Research
T cell dysfunction enables tumor immune evasion, understanding its mechanism is crucial for improving immunotherapy. Here we show, by RNA-sequencing analysis of human colon adenocarcinoma and triple-negative breast cancer tissues, that expression of Adipocyte Enhancer-Binding Protein 1 (AEBP1) positively correlates with T cell dysfunction and indicative of unfavorable patient outcomes. Subsequent single-cell RNA sequencing identifies cancer-associated fibroblasts (CAF) as the primary AEBP1 source. Fibroblast-specific AEBP1 deletion in mice enhances T cell cytotoxicity and suppresses tumor growth. Mechanistically, autocrine AEBP1 binds CKAP4 on CAFs, activating AKT/PD-L1 signaling to drive T cell dysfunction. By molecular-docking-based virtual screening we identify Chem-0199, a drug that disrupts the interaction between AEBP1 and CKAP4, thereby enhancing antitumor immunity. Both genetic and pharmacological AEBP1 inhibition synergize with immune checkpoint blockade in syngeneic models. Our study establishes AEBP1 as a key regulator of CAF-mediated T cell dysfunction and a therapeutic target. The tumour microenvironment often suppresses immune cell function and cancer-associated fibroblasts (CAF) are involved in the process. Here authors show in human tumours and in mouse models that AEBP1 is highly expressed in CAFs, and via autocrine stimulation of its receptor CKAP4, it induces the upregulation of PD-L1, which inhibits the anti-tumor T cell response.