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p16INK4a and beta-catenin alterations in rat liver tumors induced by NNK
L C Pulling1, D M Klinge, S A Belinsky
1Lovelace Respiratory Research Institute, PO Box 5890, Albuquerque, NM 87185, USA.
Abstract:
Inactivation of the p16INK4a (p16) tumor suppressor gene by promoter hypermethylation and mutation within exon 3 of beta-catenin represent two of the more common gene alterations in human hepatocellular carcinoma (HCC). One exposure implicated in the development of liver cancer is hepatitis B or C viral infection, which causes chronic destruction and regeneration of liver parenchyma. Treatment of rats with high doses of the tobacco-specific nitrosamine 4-methylnitrosamino-1-(3-pyridyl)-1-butanone (NNK) also causes liver toxicity and a high incidence of tumors. The purpose of the current investigation was to define the prevalence of genetic alterations in p16 and beta-catenin in NNK-induced rat liver cancer to determine if the molecular mechanisms seen in human tumors are the same in this animal model. DNA isolated from 15 adenomas and 14 carcinomas was examined for methylation of p16 by methylation-specific PCR. p16 methylation was detected in five of 15 adenomas and eight of 14 carcinomas (45% of all tumors). Methylation of p16 was extensive within the 5'-untranslated region and exon 1alpha, areas shown to correlate with loss of gene transcription. Liver tumors were also screened for mutations within exon 3 of beta-catenin. Single strand conformation polymorphism and DNA sequencing revealed five mutations in four of 29 tumors (14%). Mutations were present in three adenomas and one carcinoma and were located within codons 33, 36 or 37. All mutations resulted in amino acid substitutions; three of these mutations occurred at potential serine phosphorylation sites. Our results link two important regulatory pathways altered in human HCC to cancer induced in the rat NNK model. The fact that common genetic alterations are observed between rodent and human HCC suggests that the rat NNK model could be useful for identifying additional genetic alterations critical to the initiation of HCC.
Insights
Genetic alterations in p16INK4a (p16) and beta-catenin are common in human liver cancer. This study found similar genetic changes in NNK-induced rat liver tumors, validating the rat model for HCC research.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Hepatocellular carcinoma (HCC) frequently involves alterations in the p16INK4a (p16) tumor suppressor gene and beta-catenin.
- Hepatitis B/C viral infections and NNK exposure are linked to liver cancer development.
- The NNK-induced rat liver cancer model is used to study molecular mechanisms of HCC.
Purpose of the Study:
- To investigate the prevalence of p16 and beta-catenin genetic alterations in NNK-induced rat liver cancer.
- To determine if molecular mechanisms in this rat model mirror those in human HCC.
- To assess the utility of the NNK rat model for identifying critical HCC-initiating genetic alterations.
Main Methods:
- Analysis of p16 promoter methylation using methylation-specific PCR in rat liver tumors (adenomas and carcinomas).
- Screening for mutations in exon 3 of beta-catenin using single-strand conformation polymorphism and DNA sequencing.
- Correlation of genetic alterations with tumor type and specific mutation sites.
Main Results:
- p16 methylation was detected in 45% of rat liver tumors, primarily in regulatory regions affecting transcription.
- Mutations in beta-catenin exon 3 were found in 14% of tumors, affecting key codons and potential phosphorylation sites.
- Identified genetic alterations in p16 and beta-catenin link to pathways altered in human HCC.
Conclusions:
- The NNK-induced rat liver cancer model exhibits genetic alterations similar to human HCC.
- This model is valuable for studying HCC initiation and identifying novel genetic targets.
- Common molecular pathways implicated in human and rat HCC suggest conserved mechanisms in liver carcinogenesis.