In the c-myc/TGF-a transgenic mouse model, hepatocellular adenoma (HCA) appear in the liver by 4 months of age and progresses to hepatocellular carcinoma (HCC) by 8-10 months of age. Histologically, a small nest of HCC are frequently observed in HCA nodules, suggesting that HCA is a pre-malignant lesion in this model. In this study we have used cDNA microarray to analyze the difference between histologically well-defined HCA and HCC tumors in molecular level. Gene expression profile analysis revealed distinctive gene expression patterns between HCA and HCC. Interestingly, gene expression pattern of one HCA tumor was similar to HCC tumors, and two HCC tumors similar to HCA tumors. Among several genes selected as potential predictors for distinguishing HCC from HCA tumors, expression of three genes (Car3, Afp, and Igfbp1) in tumors were re-examined by RT-PCR. RT-PCR results were consistent with the observation in cDNA microarray studies. Enhanced expression of angiogenin family in HCC is consistent with higher angiogenic status in HCC measured by CD31 immunostaining of tumors. Our study demonstrates that the application of unbiased analytical approaches to the gene expression profiles of mouse tumors provide us better prediction when distinguishing HCC from HCA. A set of predictor genes for the classification of tumors during development of HCC in this model was identified based on gene expression profiles of HCA and HCC. In addition, angiogenesis triggered by expression of antiogenin family appears to be the most critical event during conversion of HCA to HCC.

Agency
National Institute of Health (NIH)
Institute
Division of Clinical Sciences - NCI (NCI)
Type
Intramural Research (Z01)
Project #
1Z01SC010385-04
Application #
6948364
Study Section
(LEC)
Project Start
Project End
Budget Start
Budget End
Support Year
4
Fiscal Year
2003
Total Cost
Indirect Cost
Name
Clinical Sciences
Department
Type
DUNS #
City
State
Country
United States
Zip Code
Kremer-Tal, Sigal; Narla, Goutham; Chen, Yingbei et al. (2007) Downregulation of KLF6 is an early event in hepatocarcinogenesis, and stimulates proliferation while reducing differentiation. J Hepatol 46:645-54
Kaposi-Novak, Pal; Lee, Ju-Seog; Gomez-Quiroz, Luis et al. (2006) Met-regulated expression signature defines a subset of human hepatocellular carcinomas with poor prognosis and aggressive phenotype. J Clin Invest 116:1582-95
Thorgeirsson, Snorri S; Lee, Ju-Seog; Grisham, Joe W (2006) Molecular prognostication of liver cancer: end of the beginning. J Hepatol 44:798-805
Lee, Ju-Seog; Heo, Jeonghoon; Libbrecht, Louis et al. (2006) A novel prognostic subtype of human hepatocellular carcinoma derived from hepatic progenitor cells. Nat Med 12:410-6
Thorgeirsson, Snorri S; Lee, Ju-Seog; Grisham, Joe W (2006) Functional genomics of hepatocellular carcinoma. Hepatology 43:S145-50
Martin, Juliette; Magnino, Fabrice; Schmidt, Karin et al. (2006) Hint2, a mitochondrial apoptotic sensitizer down-regulated in hepatocellular carcinoma. Gastroenterology 130:2179-88
Lee, J-S; Thorgeirsson, S S (2006) Comparative and integrative functional genomics of HCC. Oncogene 25:3801-9
Calvisi, Diego F; Ladu, Sara; Gorden, Alexis et al. (2006) Ubiquitous activation of Ras and Jak/Stat pathways in human HCC. Gastroenterology 130:1117-28
Pascale, Rosa M; Simile, Maria M; Calvisi, Diego F et al. (2005) Role of HSP90, CDC37, and CRM1 as modulators of P16(INK4A) activity in rat liver carcinogenesis and human liver cancer. Hepatology 42:1310-9
Lee, Ju-Seog; Thorgeirsson, Snorri S (2005) Genetic profiling of human hepatocellular carcinoma. Semin Liver Dis 25:125-32

Showing the most recent 10 out of 13 publications