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Cyclic di-GMP suppresses cancer metastasis by targeting proteasome 26S subunit non-ATPase 3 independently of STING

Signal Transduction and Targeted Therapy. 2026-02; 
Jieqiong Wang, Alexander Mrozek, Kewen Hu, Hanyu You, Sarah E Traverse, Hyemin Lee, Shelya X Zeng, Xiufeng Pang, Heewon Park, Hua Lu
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Catalog Antibodies The Flag tagged and HA-tagged proteins were immunoprecipitated via Flag beads (Sigma-Aldrich Cat# A2220, RRID:AB_10063035) or HA beads (GenScript Cat# L00777, RRID:AB_3677368), respectively. Get A Quote

摘要

Cancer metastasis is the primary cause of cancer-related mortality, yet effective treatments remain limited. There is an urgent need to develop novel therapeutic strategies to combat metastasis. In this study, we demonstrate that the bacterial intracellular signaling molecule cyclic di-GMP (c-di-GMP, or cdG) exerts a potent inhibitory effect on cancer metastasis, particularly in metastatic breast cancer, via both in vitro and in vivo models, with little toxicity to mice. Interestingly, this antimetastatic function is achieved by suppressing the NF-κB signaling pathway, which is important for cancer progression and metastasis, but independent of STING, a previously identified c-di-GMP sensor and NF-κB regulato... More

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