| Literature DB >> 36192599 |
Qi-Tao Chen1, Zhi-Yuan Zhang1, Qiao-Ling Huang1, Hang-Zi Chen2, Wen-Bin Hong1, Tianwei Lin1, Wen-Xiu Zhao3, Xiao-Min Wang3, Cui-Yu Ju1, Liu-Zheng Wu1, Ya-Ying Huang1, Pei-Pei Hou1, Wei-Jia Wang1, Dawang Zhou1, Xianming Deng1, Qiao Wu4.
Abstract
Extracellular vesicles play crucial roles in intercellular communication in the tumor microenvironment. Here we demonstrate that in hepatic fibrosis, TGF-β stimulates the palmitoylation of hexokinase 1 (HK1) in hepatic stellate cells (HSCs), which facilitates the secretion of HK1 via large extracellular vesicles in a TSG101-dependent manner. The large extracellular vesicle HK1 is hijacked by hepatocellular carcinoma (HCC) cells, leading to accelerated glycolysis and HCC progression. In HSCs, the nuclear receptor Nur77 transcriptionally activates the expression of depalmitoylase ABHD17B to inhibit HK1 palmitoylation, consequently attenuating HK1 release. However, TGF-β-activated Akt functionally represses Nur77 by inducing Nur77 phosphorylation and degradation. We identify the small molecule PDNPA that binds Nur77 to generate steric hindrance to block Akt targeting, thereby disrupting Akt-mediated Nur77 degradation and preserving Nur77 inhibition of HK1 release. Together, this study demonstrates an overlooked function of HK1 in HCC upon its release from HSCs and highlights PDNPA as a candidate compound for inhibiting HCC progression.Entities:
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Year: 2022 PMID: 36192599 PMCID: PMC9584821 DOI: 10.1038/s42255-022-00642-5
Source DB: PubMed Journal: Nat Metab ISSN: 2522-5812