Lactate/GPR81 recruits regulatory T cells by modulating CX3CL1 to promote immune resistance in a highly glycolytic gastric cancer

Author:

Hu Yanfeng1,Su Jin2,Mao Xinyuan1,Wang Lingzhi3ORCID,Chen Zhian1,Wang Weisheng1,Zhao Cuiyin3,Li Guoxin3ORCID,Guo Weihong1

Affiliation:

1. Nanfang Hospital of Southern Medical University

2. Nanfang Hospital of Southern Medical University,Hospital affiliated to Xiangya School of Medicine, Central South University

3. Nanfang Hospital, Southern Medical University

Abstract

Abstract Lactate plays an important role in shaping immune tolerance in tumor microenvironment (TME) and correlates with poor prognosis in various solid tumors. Overcoming the immune resistance in an acidic TME may improve the anti-tumor immunity. Here, this study elucidated that via G-protein-coupled receptor 81 (GPR81), lactate could modulate immune tolerance in TME by recruiting regulatory T cells (Tregs) in vitro and in vivo. A high concentration of lactate was detected in cell supernatant and tissues of gastric cancer (GC), which was modulated by lactic dehydrogenase A (LDHA). GPR81 was the natural receptor of lactate and was overexpressed in different GC cell lines and samples, which correlated with poor outcomes of GC patients. Lactate/GPR81 signaling could promote the infiltration of Tregs into TME by inducing the expression of chemokine CX3CL1. While GPR81-deficiency could decrease the infiltration of Tregs into TME, thereby inhibiting GC progression by weakening the inhibition of CD8+T cell function in a humanized mouse model. In conclusion, targeting the lactate/GPR81 signaling may potentially serve as a critical process to overcome immune resistance in a highly glycolytic GC

Publisher

Research Square Platform LLC

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