Honokiol Prevents Non-Alcoholic Steatohepatitis-Induced Liver Cancer via EGFR Degradation through the Glucocorticoid Receptor—MIG6 Axis
Article 2021 en
Authors
KO
Keiichiro Okuda
AU
Atsushi Umemura
SU
S Umemura
Abstract
1 min read
Non-alcoholic steatohepatitis (NASH) has become a serious public health problem associated with metabolic syndrome. The mechanisms by which NASH induces hepatocellular carcinoma (HCC) remain unknown. There are no approved drugs for treating NASH or preventing NASH-induced HCC. We used a genetic mouse model in which HCC was induced via high-fat diet feeding. This mouse model strongly resembles human NASH-induced HCC. The natural product honokiol (HNK) was tested for its preventative effects against NASH progression to HCC. Then, to clarify the mechanisms underlying HCC development, human HCC cells were treated with HNK. Human clinical specimens were also analyzed to explore this study's clinical relevance. We found that epidermal growth factor receptor (EGFR) signaling was hyperactivated in the livers of mice with NASH and human HCC specimens. Inhibition of EGFR signaling by HNK drastically attenuated HCC development in the mouse model. Mechanistically, HNK accelerated the nuclear translocation of glucocorticoid receptor (GR) and promoted mitogen-inducible gene 6 (MIG6)/ERBB receptor feedback inhibitor 1 (ERRFI1) expression, leading to EGFR degradation and thereby resulting in robust tumor suppression. In human samples, EGFR-positive HCC tissues and their corresponding non-tumor tissues exhibited decreased <i>ERRFI1</i> mRNA expression. Additionally, GR-positive non-tumor liver tissues displayed lower EGFR expression. Livers from patients with advanced NASH exhibited decreased <i>ERRFI1</i> expression. EGFR degradation or inactivation represents a novel approach for NASH-HCC treatment and prevention, and the GR-MIG6 axis is a newly defined target that can be activated by HNK and related compounds.
Roser Pinyol, Sara Torrecilla, Huan Wang, Carla Montironi, Marta Piqué‐Gili, Miguel Torres‐Martín, Wei Qiang Leow, Catherine E. Willoughby, Pierluigi Ramadori, Carmen Andreu-Oller, Patricia Taik, Youngmin A. Lee, Agrin Moeini, Judit Peix, Suzanne Faure‐Dupuy, Tobias Riedl, Svenja Schuehle, Cláudia P. Oliveira, Venâncio Avancini Ferreira Alves, Paolo Boffetta, Anja Lachenmayer, Stephanie Roessler, Beatriz Mínguez, Peter Schirmacher, Jean‐François Dufour, Swan N. Thung, Helen L. Reeves, Flair José Carrilho, Charissa Chang, Andrew Uzilov, Mathias Heikenwälder, Arun J. Sanyal, Scott L. Friedman, Daniela Sia, Josep M. Llovet
Sara Torrecilla, Roser Pinyol, Huan Wang, Carla Montironi, Carmen Andreu-Oller, Wei Qiang Leow, Agrin Moeini, Cláudia Di Lorenzo Oliveira, Venâncio Avancini Ferreira Alves, Anja Lachenmayer, Stephanie Roessler, Beatriz Mínguez, Peter Schirmacher, Paolo Boffetta, Jean‐François Dufour, Swan N. Thung, Andrew Uzilov, Flair José Carrilho, Charissa Chang, Daniela Sia, Josep M. Llovet
Li Gu, Yahui Zhu, Maiya Lee, Albert Nguyen, Nicolas T. Ryujin, Jian Yu Huang, Shusil K. Pandit, Shadi Chamseddine, Lianchun Xiao, Yehia I. Mohamed, Ahmed O. Kaseb, Michael Karin, Shabnam Shalapour
Discussion(0)
No comments yet. Be the first to comment.