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An Orthotopic Bladder Cancer Model for Gene Delivery Studies
Published on: December 2, 2013
Point mutation and homozygous deletion of PTEN/MMAC1 in primary bladder cancers
1Head and Neck Cancer Research, Department of Otolaryngology, Johns Hopkins University School of Medicine, Baltimore, Maryland 21205, USA.
Abstract:
A new tumor suppressor gene PTEN/MMAC1 was recently isolated at chromosome 10q23 and found to be inactivated by point mutation or homozygous deletion in glioma, prostate and breast cancer. PTEN/MMAC1 was also identified as the gene predisposing to Cowden disease, an autosomal dominant cancer predisposition syndrome associated with an increased risk of breast, skin and thyroid tumors and occasional cases of other cancers including bladder and renal cell carcinoma. We screened 345 urinary tract cancers by microsatellite analysis and found chromosome 10q to be deleted in 65 of 285 (23%) bladder and 15 of 60 (25%) renal cell cancers. We then screened the entire PTEN/MMAC1 coding region for mutation in 25 bladder and 15 renal cell primary tumors with deletion of chromosome 10q. Two somatic point mutations, a frameshift and a splicing variant, were found in the panel of bladder tumors while no mutation was observed in the renal cell carcinomas. To screen for homozygous deletion, we isolated two polymorphic microsatellite repeats from genomic BAC clones containing the PTEN/MMAC1 gene. Using these new informative markers, we identified apparent retention at the gene locus indicative of homozygous deletion of PTEN/MMAC1 in four of 65 bladder and 0 of 15 renal cell tumors with LOH through chromosome 10q. Identification of the second inactivation event in six bladder tumors with LOH of 10q implies that the PTEN/MMAC1 gene is occasionally involved in bladder tumorigenesis. However, the low frequency of biallelic inactivation suggests that either PTEN/MMAC1 is inactivated by other mechanisms or it is not the only target of chromosome 10q deletion in primary bladder and renal cell cancer.
Insights
The tumor suppressor gene PTEN/MMAC1 is occasionally mutated in bladder cancer but rarely in kidney cancer. Biallelic inactivation of PTEN/MMAC1 is infrequent in urinary tract tumors, suggesting other mechanisms or targets are involved.
Area of Science:
- Oncology
- Genetics
- Molecular Biology
Background:
- The PTEN/MMAC1 gene, a tumor suppressor, is located on chromosome 10q23.
- It is frequently inactivated in glioma, prostate, and breast cancers.
- PTEN/MMAC1 is also linked to Cowden disease, increasing risks for breast, skin, and thyroid tumors.
Purpose of the Study:
- To investigate the role of PTEN/MMAC1 in urinary tract cancers, specifically bladder and renal cell carcinoma.
- To determine the frequency of PTEN/MMAC1 alterations (deletion, mutation, homozygous deletion) in these cancers.
Main Methods:
- Microsatellite analysis was used to screen 345 urinary tract cancers for chromosome 10q deletions.
- The PTEN/MMAC1 coding region was screened for mutations in tumors with 10q deletion.
- Polymorphic microsatellite markers were developed to detect homozygous deletion of PTEN/MMAC1.
Main Results:
- Chromosome 10q deletions were found in 23% of bladder and 25% of renal cell cancers.
- Two somatic point mutations, a frameshift, and a splicing variant were identified in bladder tumors, but none in renal cell carcinomas.
- Apparent homozygous deletion of PTEN/MMAC1 was detected in four bladder tumors with 10q loss of heterozygosity (LOH).
Conclusions:
- PTEN/MMAC1 is occasionally involved in bladder tumorigenesis, indicated by identified mutations and homozygous deletions.
- The low frequency of biallelic inactivation suggests PTEN/MMAC1 may not be the sole target of chromosome 10q deletions in these cancers.
- Alternative inactivation mechanisms for PTEN/MMAC1 or other chromosome 10q targets warrant further investigation in bladder and renal cell carcinoma.
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