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Abrogation of the Rb/p16 tumor-suppressive pathway in virtually all pancreatic carcinomas
M Schutte1, R H Hruban, J Geradts
1Department of Oncology, The Johns Hopkins Medical Institutions, Baltimore, Maryland 21205, USA.
Abstract:
The Rb/p16 tumor-suppressive pathway is abrogated frequently in human tumors, either through inactivation of the Rb or p16INK4a/CDKN2/MTS1 tumor-suppressor proteins, or through alteration or overexpression of the cyclin D1 or cyclin-dependent kinase 4 oncoproteins. We reported previously that the p16 gene was genetically inactivated in 82% of pancreatic carcinomas. Nearly half of these inactivations were by intragenic mutation of p16, and the remainder were by homozygous deletion of the gene. Here, we analyzed pancreatic carcinomas for additional mechanisms by which the Rb/p16 pathway might be inactivated. Transcriptional silencing of the p16 gene in association with methylation of its 5'-CpG island was examined by methylation-specific PCR in 18 pancreatic carcinomas. Nine of these were known to harbor an intragenic mutation in p16, and nine had a wild-type p16 coding sequence. Seven of the 18 tumors were hypermethylated, and all 7 were p16 wild-type (P = 0.001). Complete silencing of transcription from methylated wild-type gene sequences was demonstrated. Immunohistochemical analysis revealed normal expression levels of the Rb protein in all carcinomas studied. None of the carcinomas had genomic amplification of the cyclin D1 or CDK4 genes, and none had mutation of the p16-binding domain of CDK4. An additional p16 mutation was identified. In total, the Rb/p16 pathway was abrogated in 49 of the 50 carcinomas (98%) studied, all through inactivation of the p16 gene. Similar results were obtained in an independently analyzed series of 19 pancreatic carcinomas. These data demonstrate the central role of the Rb/p16 pathway in the development of pancreatic carcinoma.
Insights
The Rb/p16 tumor-suppressive pathway is frequently inactivated in pancreatic cancer, primarily through p16 gene alterations. This pathway
Area of Science:
- Molecular oncology
- Cancer genetics
- Tumor suppressor pathways
Background:
- The Retinoblastoma (Rb)/p16INK4a pathway is a critical tumor suppressor mechanism.
- Frequent abrogation of this pathway occurs in human tumors via inactivation of Rb, p16INK4a, or alterations in cyclin D1/CDK4.
- Previous studies identified genetic inactivation of p16 in 82% of pancreatic carcinomas.
Purpose of the Study:
- To investigate additional mechanisms of Rb/p16 pathway inactivation in pancreatic carcinomas.
- To analyze transcriptional silencing of the p16 gene through promoter methylation.
- To assess the overall role of Rb/p16 pathway abrogation in pancreatic cancer development.
Main Methods:
- Methylation-specific PCR to examine p16 gene 5'-CpG island methylation.
- Analysis of 18 pancreatic carcinomas with known p16 mutation status.
- Immunohistochemistry for Rb protein expression and analysis of cyclin D1/CDK4 gene status.
Main Results:
- Seven of 18 tumors exhibited p16 gene hypermethylation, all with wild-type p16 coding sequences.
- Transcriptional silencing of methylated wild-type p16 gene sequences was confirmed.
- The Rb/p16 pathway was abrogated in 98% of 50 analyzed pancreatic carcinomas, predominantly via p16 gene inactivation.
Conclusions:
- Transcriptional silencing by promoter methylation is a significant mechanism for p16 inactivation in pancreatic cancer.
- The Rb/p16 pathway plays a central role in the pathogenesis of pancreatic carcinoma.
- Comprehensive inactivation of the p16 gene is a hallmark of pancreatic cancer development.