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Tumor Transplantation for Assessing the Dynamics of Tumor-Infiltrating CD8+ T Cells in Mice
Published on: June 12, 2021
Tumor-Intrinsic ARHGEF3 Enhances Antitumor Immunity by Promoting T-Cell Infiltration and Limiting Myeloid
Yue Li1,2, Lan Wang3, Zihao Zhang4
1Science and Technology Innovation Center, Shanghai Municipal Hospital of Traditional Chinese Medicine, Shanghai University of Traditional Chinese Medicine, Shanghai, China.
Abstract:
A lack of effective antitumor T-cell immunity often drives immune evasion and immunotherapy resistance. Here, we demonstrated that tumor-intrinsic ARHGEF3 reprogrammed the tumor microenvironment into a T-cell-inflamed state, resulting in potent antitumor effects. Mechanistically, ARHGEF3 functioned as a guanine nucleotide exchange factor that activated the RHOA-ROCK-PTEN cascade and inhibited AKT signaling. This inhibition upregulated IRF1-dependent chemokines CXCL10 and CXCL11 to drive T-cell infiltration, while suppressing FASN-mediated fatty acid synthesis to limit myeloid cell-mediated immunosuppression. The dual effects elicited robust T-cell immunity and overcame tumor resistance to immunotherapy. In human tumors, ARHGEF3 expression correlated positively with T-cell-inflamed signatures, improved clinical outcomes, and responsiveness to immunotherapy. Collectively, these findings identify ARHGEF3 as a key modulator linking chemokine signaling with lipid availability to shape T-cell immunity, offering a promising therapeutic strategy to overcome immunotherapy resistance.
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