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Yeast As a Chassis for Developing Functional Assays to Study Human P53
Published on: August 4, 2019
Mutations in the p53 gene occur in diverse human tumour types
J M Nigro1, S J Baker, A C Preisinger
1Johns Hopkins Oncology Center, Baltimore, Maryland 21231.
Abstract:
The p53 gene has been a constant source of fascination since its discovery nearly a decade ago. Originally considered to be an oncogene, several convergent lines of research have indicated that the wild-type gene product actually functions as a tumour suppressor gene. For example, expression of the neoplastic phenotype is inhibited, rather than promoted, when rat cells are transfected with the murine wild-type p53 gene together with mutant p53 genes and/or other oncogenes. Moreover, in human tumours, the short arm of chromosome 17 is often deleted. In colorectal cancers, the smallest common region of deletion is centred at 17p13.1; this region harbours the p53 gene, and in two tumours examined in detail, the remaining (non-deleted) p53 alleles were found to contain mutations. This result was provocative because allelic deletion coupled with mutation of the remaining allele is a theoretical hallmark of tumour-suppressor genes. In the present report, we have attempted to determine the generality of this observation; that is, whether tumours with allelic deletions of chromosome 17p contain mutant p53 genes in the allele that is retained. Our results suggest that (1) most tumours with such allelic deletions contain p53 point mutations resulting in amino-acid substitutions, (2) such mutations are not confined to tumours with allelic deletion, but also occur in at least some tumours that have retained both parental 17p alleles, and (3) p53 gene mutations are clustered in four 'hot-spots' which exactly coincide with the four most highly conserved regions of the gene. These results suggest that p53 mutations play a role in the development of many common human malignancies.
Insights
The p53 gene, initially thought to be an oncogene, functions as a tumor suppressor. Mutations in the p53 gene are frequently observed in various human cancers, often alongside chromosome 17 deletions.
Area of Science:
- Molecular Biology
- Oncology
- Genetics
Background:
- The p53 gene's role has evolved from oncogene to tumor suppressor.
- Tumor suppressor genes are often inactivated by both deletion and mutation.
- Allelic deletions on chromosome 17p are common in human tumors, including colorectal cancers.
Purpose of the Study:
- To investigate the generality of p53 gene mutations in tumors with chromosome 17p allelic deletions.
- To determine if retained p53 alleles contain mutations in tumors with deletions.
- To identify mutation patterns within the p53 gene.
Main Methods:
- Analysis of p53 gene status (allelic deletion and mutation) in tumors exhibiting chromosome 17p deletions.
- Examination of p53 alleles in tumors with retained both parental 17p alleles.
- Identification of mutation 'hot-spots' within the p53 gene sequence.
Main Results:
- Most tumors with 17p allelic deletions harbor p53 point mutations leading to amino acid substitutions.
- p53 mutations occur in tumors with and without allelic deletions.
- p53 mutations are concentrated in four specific 'hot-spots' corresponding to conserved gene regions.
Conclusions:
- p53 gene mutations are implicated in the pathogenesis of numerous common human malignancies.
- The inactivation of the p53 tumor suppressor gene through mutation is a critical event in cancer development.
- Understanding p53 mutation patterns can provide insights into cancer etiology.
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