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Mutations of p16Ink4/CDKN2 and p15Ink4B/MTS2 genes in biliary tract cancers
S Yoshida1, T Todoroki, Y Ichikawa
1Department of Biochemistry and Molecular Oncology, University of Tsukuba, Japan.
Abstract:
p16Ink4 and p15Ink4B are cyclin-dependent kinase 4 inhibitors and link to the regulation of cell cycle in mammalian cells. The genes encoding these inhibitors are located at 9p21, which is a frequent site of allelic loss in various types of tumors. Twenty-five primary biliary tract cancers were examined for somatic mutations in p16Ink4/CDKN2, p15Ink4B/MTS2, p53, and K-ras genes and allelic loss of 9p21 by microsatellite analysis. Four biliary tract cancer cell lines were analyzed for homozygous deletions and point mutations. We found frequent homozygous deletions in p16Ink4/CDKN2 and p15Ink4B/MTS2 genes in the biliary tract cancer cell lines. Each cancer cell line had alteration of either p16Ink4/CDKN2, p15Ink4B/MTS2, or p53 genes. In primary tumors, 16 of 25 (64%) biliary tract cancers had point mutations in the p16Ink4/CDKN2 gene. These include 14 missense and 2 silent mutations. The frequency of mutations in gall bladder cancer and hilar bile duct cancer were 80% (8 of 10) and 63% (5 of 8), respectively. Each of codons 1, 80, and 111 was changed in two cases of these cancers. One of three intrahepatic bile duct cancers, one of two common bile duct cancers, and one of two ampullary cancers had mutations in the p16Ink4/CDKN2 gene. In contrast, no mutation in the p15Ink4B/MTS2 gene, one base change in the K-ras gene, and one loss of heterozygosity at the IFN alpha locus in 25 cancers and one base change in the p53 gene in 19 cancers were observed. These results suggest that p16Ink4/CDKN2, rather than p15Ink4B/MTS2 or p53 genes, and its inactivation may be important in biliary tract carcinogenesis.
Insights
The p16Ink4/CDKN2 gene, not p15Ink4B/MTS2 or p53, is frequently altered in biliary tract cancers. Its inactivation appears crucial for the development of these tumors.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- The p16Ink4 (CDKN2) and p15Ink4B (MTS2) genes encode cyclin-dependent kinase 4 inhibitors, regulating mammalian cell cycle progression.
- These critical genes are located at chromosomal region 9p21, a common site for allelic loss in various human cancers.
Purpose of the Study:
- To investigate somatic mutations and allelic loss in p16Ink4/CDKN2, p15Ink4B/MTS2, p53, and K-ras genes in biliary tract cancers.
- To analyze homozygous deletions and point mutations in biliary tract cancer cell lines.
Main Methods:
- Microsatellite analysis was used to assess allelic loss at 9p21 in 25 primary biliary tract cancers.
- Somatic mutations in p16Ink4/CDKN2, p15Ink4B/MTS2, p53, and K-ras genes were analyzed in primary tumors and cell lines.
- Four biliary tract cancer cell lines were examined for homozygous deletions and point mutations.
Main Results:
- Frequent homozygous deletions of p16Ink4/CDKN2 and p15Ink4B/MTS2 were observed in biliary tract cancer cell lines.
- All four analyzed cancer cell lines exhibited alterations in p16Ink4/CDKN2, p15Ink4B/MTS2, or p53.
- Point mutations in the p16Ink4/CDKN2 gene were found in 64% (16 of 25) of primary biliary tract cancers, with higher frequencies in gallbladder and hilar bile duct cancers.
Conclusions:
- Inactivation of the p16Ink4/CDKN2 gene is a significant event in biliary tract carcinogenesis.
- The p16Ink4/CDKN2 gene plays a more critical role than p15Ink4B/MTS2 or p53 in the development of biliary tract cancers.