Brief Article
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World J Gastroenterol. Apr 7, 2011; 17(13): 1772-1778
Published online Apr 7, 2011. doi: 10.3748/wjg.v17.i13.1772
β-catenin accumulation in nuclei of hepatocellular carcinoma cells up-regulates glutathione-s-transferase M3 mRNA
Yu-Sang Li, Min Liu, Yoshihiro Nakata, He-Bin Tang
Yu-Sang Li, Min Liu, He-Bin Tang, Department of Pharmacology, College of Pharmacy, South-Central University for Nationalities, No. 708, Minyuan Road, Wuhan 430074, Hubei Province, China
Yoshihiro Nakata, Department of Pharmacology, Graduate School of Biomedical Sciences, Hiroshima University, Kasumi 1-2-3, Minami-ku, Hiroshima 734-8551, Japan
Author contributions: Li YS and Tang HB participated in the design of the study, carried out all the experiments outlined in the manuscripts, performed the data analysis and wrote the paper; Liu M prepared the figures and assisted with the manuscript; Nakata Y assisted in the study design, the data analysis and interpretation.
Supported by National Natural Science Foundation of China, 81070887, Scientific Research Foundation for the Returned Overseas Chinese Scholars, State Education Ministry to Tang HB, and Grants from South-Central University for Nationalities, No. XTZ10001, No. XTZ09001, and No. YZZ09007, China
Correspondence to: He-Bin Tang, PhD, Professor, Department of Pharmacology, College of Pharmacy, South-Central University for Nationalities, No. 708, Minyuan Road, Wuhan 430074, Hubei Province, China. hbtang2006@yahoo.cn
Telephone: +86-27-67842332 Fax: +86-27-67842332
Received: September 25, 2010
Revised: February 15, 2011
Accepted: February 22, 2011
Published online: April 7, 2011
Abstract

AIM: To identify the differentially over-expressed genes associated with β-catenin accumulation in nuclei of hepatocellular carcinoma (HCC) cells.

METHODS: Differentially expressed genes were identified in radiation-induced B6C3 F1 mouse HCC cells by mRNA differential display, Northern blot and RT-PCR, respectively. Total glutathione-s-transferase (GST) activity was measured by GST activity assay and β-catenin localization was detected with immunostaining in radiation-induced mouse HCC cells and in HepG2 cell lines.

RESULTS: Two up-regulated genes, glutamine synthetase and glutathione-s-transferase M3 (GSTM3), were identified in radiation-induced mouse HCC cells. Influence of β-catenin accumulation in nuclei of HCC cells on up-regulation of GSTM3 mRNA was investigated. The nearby upstream domain of GSTM3 contained the β-catenin/Tcf-Lef consensus binding site sequences [5’-(A/T)(A/T) CAAAG-3’], and the total GST activity ratio was considerably higher in B6C3F1 mouse HCC cells with β-catenin accumulation in nuclei of HCC cells than in those without β-catenin accumulation (0.353 ± 0.117 vs 0.071 ± 0.064, P < 0.001). The TWS119 (a distinct GSK-3β inhibitor)-induced total GST activity was significantly higher in HepG2 cells with β-catenin accumulation than in those without β-catenin accumulation in nuclei of HCC cells. Additionally, the GSTM3 mRNA level was significantly higher at 24 h than at 12 h in TWS119-treated HepG2 cells.

CONCLUSION: β-catenin accumulation increases GST activity in nuclei of HCC cells, and GSTM3 may be a novel target gene of the β-catenin/Tcf-Lef complex.

Keywords: β-catenin accumulation, Differential display analysis, Glutathione-s-transferase M3, Hepatocellular carcinoma, Radiation