Binyan Xu, Xufeng Hou, M X Wang, Lin Qiu, Xiling Chen, Guoming Deng, Daixuan Zhou, Yun Feng, Jinzhao Han, Xiaojing Meng, Hongying Fan, Weisen Zeng, Yang Bai
Dietary fatty acids accelerate cancer development and metastasis by altering the tumor microenvironment (TME), yet the mechanism is unclear. Here, two-sample Mendelian randomization (MR) revealed that BMI impairs colorectal cancer (CRC) immune surveillance. Additionally, a high-fat diet (HFD) reshapes the immunosuppressive TME, hallmarked by increased myeloid-derived suppressor cells and decreased CD8 + T cells in mice. Mechanistically, the unhealthy fatty acid palmitic acid (PA) binds to its nuclear receptors, peroxisome proliferator-activated receptors (PPARs), enhancing PPARδ while inhibiting PPARα and P53 transactivation, thereby upregulating CD73 and downregulating tumor necrosis factor-related apoptosis-inducing ligand receptors 1 and 2 (TRAIL-R1/2), which drives immunosuppression in CRC transplant tumors. Conversely, conjugated linoleic acid (CLA), a healthy fatty acid, enhances PPARα and P53 transactivation while inhibiting PPARδ transactivation, leading to decreased CD73 and increased TRAIL-R1/2, which enhances anti-tumor immunity and limits metastasis. These findings suggest a direct, universal mechanism by which fatty acid composition regulates immune homeostasis and tumor progression via PPARα/δ-P53 crosstalk.