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Rare mutations and no hypermethylation at the CDKN2A locus in epithelial ovarian tumours
Abstract:
The tumour-suppressor gene CDKN2A (p16, MTS1, CDK4I) encodes a cell cycle-regulatory protein and is located on chromosome 9p21, a region deleted in a wide variety of human cancers. To determine the role of the CDKN2A gene in the development of ovarian adenocarcinomas, we examined a large series of benign, low malignant potential (LMP) and invasive ovarian neoplasms for evidence of loss of heterozygosity (LOH), homozygous deletions, point mutations and hypermethylation of the CDKN2A locus. We have previously reported LOH on 9p in 45% of malignant ovarian neoplasms and a smaller percentage of benign and LMP tumours. In the current study, 6 malignant tumours were identified with partial deletions of 9p21. In 5 of these, the CDKN2A gene lays within the minimal deleted region. Homozygous deletions of CDKN2A were observed in only 2/88 invasive ovarian tumours and in 5/11 ovarian cancer cell lines. Of 15 primary ovarian tumours analyzed, one nonsense mutation was identified in a mucinous LMP tumour. No evidence of hypermethylation of the CDKN2A gene was found in 50 primary ovarian adenocarcinomas nor in 3 ovarian cancer cell lines. In conclusion, homozygous deletions, mutations and the de novo methylation of 5' CpG island are not frequent modes of inactivation of the CDKN2A gene in ovarian cancer. The target of 9p LOH in ovarian adenocarcinomas is therefore unknown.
Insights
The CDKN2A tumor suppressor gene is rarely inactivated by homozygous deletions or mutations in ovarian cancer. Its precise role in ovarian adenocarcinomas remains unclear despite frequent 9p loss of heterozygosity.
Area of Science:
- Oncology
- Cancer Genetics
Background:
- The CDKN2A tumor suppressor gene, located on chromosome 9p21, is frequently altered in various human cancers.
- Loss of heterozygosity (LOH) on 9p is observed in a significant proportion of ovarian neoplasms.
Purpose of the Study:
- To investigate the role of the CDKN2A gene in ovarian adenocarcinoma development.
- To analyze inactivation mechanisms of CDKN2A in benign, low malignant potential (LMP), and invasive ovarian tumors.
Main Methods:
- Examined ovarian neoplasms for loss of heterozygosity (LOH), homozygous deletions, point mutations, and hypermethylation of the CDKN2A locus.
- Utilized analysis of primary tumors and ovarian cancer cell lines.
Main Results:
- Homozygous deletions of CDKN2A were rare (2/88 invasive tumors, 5/11 cell lines).
- One nonsense mutation was found in a mucinous LMP tumor.
- No hypermethylation of the CDKN2A gene was detected in primary tumors or cell lines.
Conclusions:
- Homozygous deletions, mutations, and de novo methylation are infrequent mechanisms of CDKN2A inactivation in ovarian cancer.
- The specific target of 9p LOH in ovarian adenocarcinomas is currently unknown.