p53 gene mutations in human endometrial carcinoma
- 1 January 1992
- journal article
- research article
- Published by Wiley in Molecular Carcinogenesis
- Vol. 5 (4), 250-253
- https://doi.org/10.1002/mc.2940050403
Abstract
Although carcinoma of the uterine endometrium is the most frequently diagnosed malignancy of the female reproductive tract, the molecular genetic features of this tumor have yet to be described in significant detail. Since mutations of the p53 tumor suppressor gene are the single most common genetic alteration found in human malignancies, we examined the hypothesis that p53 mutations occur in human endometrial carcinoma. Sequencing analysis of exons 5–8 revealed point mutations in 3 of 21 (14%) tumors; one mutation was an unusual single‐base insertion at codons 176–177, resulting in a premature stop codon, whereas the other two were CGG→TGG transitions at codon 248. Two of these tumors showed reduction to homozygosity at the p53 allele, but one tumor apparently retained heterozygosity. These data indicate that p53 mutations occur in human endometrial carcinoma, although relatively infrequently, and that loss of the normal p53 allele does not necessarily occur with point mutation of the p53 gene in this tumor type.Keywords
This publication has 14 references indexed in Scilit:
- p53 Mutations in Human CancersScience, 1991
- The p53 tumour suppressor geneNature, 1991
- Mutational hot spot in the p53 gene in human hepatocellular carcinomasNature, 1991
- The epidemiology of endometrial cancerGynecologic Oncology, 1991
- Construction of T-vectors, a rapid and general system for direct cloning of unmodified PCR productsNucleic Acids Research, 1991
- An Alu polymorphism intragenic to the TP53 geneNucleic Acids Research, 1991
- Analysis of oncogene alterations in human endometrial carcinoma: Prevalence of ras mutationsMolecular Carcinogenesis, 1991
- Point mutations at codon 12 of C-K-ras in human endometrial carcinomasCancer Letters, 1990
- Endometrial CarcinomaPublished by Springer Nature ,1987
- Purification of DNA from formaldehyde fixed and paraffin embedded human tissueBiochemical and Biophysical Research Communications, 1985