NRF2/SHH signaling cascade promotes tumor-initiating cell lineage and drug resistance in hepatocellular carcinoma

Solid evidence shows that tumor-initiating cells (T-ICs) are the root of tumor relapse and drug resistance, which lead to a poor prognosis in patients with hepatocellular carcinoma (HCC). Through an in vitro liver T-IC enrichment approach, we identified nuclear factor (erythroid-derived 2)-like 2 (N...

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Veröffentlicht in:Cancer letters 2020-04, Vol.476, p.48-56
Hauptverfasser: Leung, Hoi Wing, Lau, Eunice Yuen Ting, Leung, Carmen Oi Ning, Lei, Martina Mang Leng, Mok, Etienne Ho Kit, Ma, Victor Wan San, Cho, William Chi Shing, Ng, Irene Oi Lin, Yun, Jing Ping, Cai, Shao Hang, Yu, Hua Jian, Ma, Stephanie, Lee, Terence Kin Wah
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Sprache:eng
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Zusammenfassung:Solid evidence shows that tumor-initiating cells (T-ICs) are the root of tumor relapse and drug resistance, which lead to a poor prognosis in patients with hepatocellular carcinoma (HCC). Through an in vitro liver T-IC enrichment approach, we identified nuclear factor (erythroid-derived 2)-like 2 (NRF2) as a transcription regulator that is significantly activated in enriched liver T-IC populations. In human HCCs, NRF2 was found to be overexpressed, which was associated with poor patient survival. Through a lentiviral based knockdown approach, NRF2 was found to be critical for regulating liver T-IC properties, including self-renewal, tumorigenicity, drug resistance and expression of liver T-IC markers. Furthermore, we found that ROS-induced NRF2 activation regulates sorafenib resistance in HCC cells. Mechanistically, NRF2 was found to physically bind to the promoter of sonic hedgehog homolog (SHH), which triggers activation of the sonic hedgehog pathway. The effect of NRF2 knockdown was eliminated upon administration of recombinant SHH, demonstrating that NRF2 mediated T-IC function via upregulation of SHH expression. Our study suggests a novel regulatory mechanism for the canonical sonic hedgehog pathway that may function through the NRF2/SHH/GLI signaling axis, thus mediating T-IC phenotypes. •NRF2 is overexpressed in human HCCs and is a potential prognostic factor for HCC patients.•NRF2 is critical for self-renewal, tumorigencity and invasiveness of HCC cells.•ROS-induced NRF2 activation regulates sorafenib resistance of HCC cells.•NRF2 regulates liver T-IC functions via SHH/GLI signaling cascade.
ISSN:0304-3835
1872-7980
DOI:10.1016/j.canlet.2020.02.008