PCK1 inhibits cGAS-STING activation by consumption of GTP to promote tumor immune evasion.

 0 Người đánh giá. Xếp hạng trung bình 0

Tác giả: Xueli Bai, Xiaohan Chen, Bofei Dong, Shengzhong Duan, Yuran Duan, Zhanpeng Guo, Jie He, Yueru Hou, Zhiqiang Hu, Guimei Ji, Min Li, Yanni Lin, Guijun Liu, Tong Liu, Zhimin Lu, Shudi Luo, Ying Meng, Yuan Ouyang, Wenxing Qin, Yuli Shen, Xue Sun, Qi Tian, Katherine L Wang, Zheng Wang, Ting Wen, Qingang Wu, Shiqi Wu, Ling Xiao, Liwei Xiao, Daqian Xu, Wuchang Zhang

Ngôn ngữ: eng

Ký hiệu phân loại: 949.59012 *Greece

Thông tin xuất bản: United States : The Journal of experimental medicine , 2025

Mô tả vật lý:

Bộ sưu tập: NCBI

ID: 693035

Hypoxia induces immunosuppressive phenotypes in tumor cells even in the presence of cytosolic DNA accumulation. The mechanisms by which tumor cells suppress hypoxia-induced cGAS-STING activation for immune evasion remain largely unclear. Here, we demonstrate that hypoxic stimulation induces JNK1/2-mediated S151 phosphorylation of phosphoenolpyruvate carboxykinase 1 (PCK1), a rate-limiting enzyme in gluconeogenesis. This phosphorylation triggers the interaction between PCK1 and cGAS. The PCK1 associated with cGAS competitively consumes GTP, a substrate shared by both PCK1 and cGAS. Consequently, PCK1 inhibits GTP-dependent cGAS activation and subsequent STING-promoted immune cell infiltration and activation in the tumor microenvironment, leading to promoted tumor growth in mice. The blockade of PCK1 function, in combination with anti-PD-1 antibody treatment, exhibits an additive therapeutic effect on tumor growth. Additionally, PCK1 S151 phosphorylation is inversely correlated with cGAS-STING activation in human breast cancer specimens and patient survival. These findings reveal a novel regulation of cGAS-STING pathway and uncover the metabolic control of immune response in tumor cells.
Tạo bộ sưu tập với mã QR

THƯ VIỆN - TRƯỜNG ĐẠI HỌC CÔNG NGHỆ TP.HCM

ĐT: (028) 36225755 | Email: tt.thuvien@hutech.edu.vn

Copyright @2024 THƯ VIỆN HUTECH