Epidermal growth factor induces tumour marker AKR1B10 expression through activator protein-1 signalling in hepatocellular carcinoma cells

Author:

Liu Ziwen12,Yan Ruilan1,Al-Salman Ahmed13,Shen Yi1,Bu Yiwen1,Ma Jun1,Luo Di-Xian14,Huang Chenfei1,Jiang Yuyang5,Wilber Andrew1,Mo Yin-Yuan1,Huang Mei Chris6,Zhao Yupei2,Cao Deliang1

Affiliation:

1. Department of Medical Microbiology, Immunology & Cell Biology, Simmons Cancer Institute, Southern Illinois University School of Medicine, 913 North Rutledge Street, Springfield, IL 62794, U.S.A.

2. Department of Surgery, Peking Union Medical College Hospital, Beijing 100730, P.R. China

3. Department of Biotechnology, College of Science, University of Baghdad, Baghdad, Iraq

4. Institute of Translational Medicine, The First People's Hospital of Chenzhou, 102 Luojiajing Road, Chenzhou 423000, P.R. China

5. Guangdong Key Laboratory of Chemical Biology, Tsinghua University Graduate School at Shenzhen, Guangdong 518055, P.R. China

6. Internal Medicine, Division of Gastroenterology, Memorial Medical Center, 751 North Rutledge, Springfield, IL 62781, U.S.A.

Abstract

AKR1B10 (aldo-keto reductase 1B10) is overexpressed in liver and lung cancer, and plays a critical role in tumour development and progression through promoting lipogenesis and eliminating cytotoxic carbonyls. AKR1B10 is a secretory protein and potential tumour marker; however, little is known about the regulatory mechanism of AKR1B10 expression. The present study showed that AKR1B10 is induced by mitogen EGF (epidermal growth factor) and insulin through the AP-1 (activator protein-1) signalling pathway. In human HCC (hepatocellular carcinoma) cells (HepG2 and Hep3B), EGF (50 ng/ml) and insulin (10 nM) stimulated endogenous AKR1B10 expression and promoter activity. In the AKR1B10 promoter, a putative AP-1 element was found at bp −222 to −212. Deletion or mutation of this AP-1 element abrogated the basal promoter activity and response to EGF and AP-1 proteins. This AP-1 element bound to nuclear proteins extracted from HepG2 cells, and this binding was stimulated by EGF and insulin in a dose-dependent manner. Chromatin immunoprecipitation showed that the AP-1 proteins c-Fos and c-Jun were the predominant factors bound to the AP-1 consensus sequence, followed by JunD and then JunB. The same order was followed in the stimulation of endogenous AKR1B10 expression by AP-1 proteins. Furthermore, c-Fos shRNA (short hairpin RNA) and AP-1 inhibitors/antagonists (U0126 and Tanshinone IIA) inhibited endogenous AKR1B10 expression and promoter activity in HepG2 cells cultured in vitro or inoculated subcutaneously in nude mice. U0126 also inhibited AKR1B10 expression induced by EGF. Taken together, these results suggest that AKR1B10 is up-regulated by EGF and insulin through AP-1 mitogenic signalling and may be implicated in hepatocarcinogenesis.

Publisher

Portland Press Ltd.

Subject

Cell Biology,Molecular Biology,Biochemistry

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