| Literature DB >> 32470318 |
Pei-Pei Hou1, Li-Juan Luo1, Hang-Zi Chen1, Qi-Tao Chen1, Xue-Li Bian1, Sheng-Fu Wu1, Jia-Xin Zhou1, Wen-Xiu Zhao2, Jian-Ming Liu2, Xiao-Min Wang2, Zhi-Yuan Zhang1, Lu-Ming Yao1, Qinghua Chen1, Dawang Zhou1, Qiao Wu3.
Abstract
Tumor-derived extracellular vesicles are important mediators of cell-to-cell communication during tumorigenesis. Here, we demonstrated that hepatocellular carcinoma (HCC)-derived ectosomes remodel the tumor microenvironment to facilitate HCC progression in an ectosomal PKM2-dependent manner. HCC-derived ectosomal PKM2 induced not only metabolic reprogramming in monocytes but also STAT3 phosphorylation in the nucleus to upregulate differentiation-associated transcription factors, leading to monocyte-to-macrophage differentiation and tumor microenvironment remodeling. In HCC cells, sumoylation of PKM2 induced its plasma membrane targeting and subsequent ectosomal excretion via interactions with ARRDC1. The PKM2-ARRDC1 association in HCC was reinforced by macrophage-secreted cytokines/chemokines in a CCL1-CCR8 axis-dependent manner, further facilitating PKM2 excretion from HCC cells to form a feedforward regulatory loop for tumorigenesis. In the clinic, ectosomal PKM2 was clearly detected in the plasma of HCC patients. This study highlights a mechanism by which ectosomal PKM2 remodels the tumor microenvironment and reveals ectosomal PKM2 as a potential diagnostic marker for HCC.Entities:
Keywords: CCL1; HCC; PKM2; differentiation; ectosome; extracellular vesicle; hepatocellular carcinoma; macrophage; monocyte; sumoylation
Year: 2020 PMID: 32470318 DOI: 10.1016/j.molcel.2020.05.004
Source DB: PubMed Journal: Mol Cell ISSN: 1097-2765 Impact factor: 17.970