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Yeast As a Chassis for Developing Functional Assays to Study Human P53
Published on: August 4, 2019
Amplification of a gene encoding a p53-associated protein in human sarcomas
J D Oliner1, K W Kinzler, P S Meltzer
1Department of Pediatrics, University of Michigan Cancer Center, Ann Arbor 48109.
Abstract:
Despite extensive data linking mutations in the p53 gene to human tumorigenesis, little is known about the cellular regulators and mediators of p53 function. MDM2 is a strong candidate for one such cellular protein; the MDM2 gene was originally identified by virtue of its amplification in a spontaneously transformed derivative of mouse BALB/c cells and the MDM2 protein subsequently shown to bind to p53 in rat cells transfected with p53 genes. To determine whether MDM2 plays a role in human cancer, we have cloned the human MDM2 gene. Here we show that recombinant-derived human MDM2 protein binds human p53 in vitro, and we use MDM2 clones to localize the human MDM2 gene to chromosome 12q13-14. Because this chromosomal position appears to be altered in many sarcomas, we looked for changes in human MDM2 in such cancers. The gene was amplified in over a third of 47 sarcomas, including common bone and soft tissue forms. These results are consistent with the hypothesis that MDM2 binds to p53, and that amplification of MDM2 in sarcomas leads to escape from p53-regulated growth control. This mechanism of tumorigenesis parallels that for virally-induced tumours, in which viral oncogene products bind to and functionally inactivate p53.
Insights
The mouse double minute 2 (MDM2) gene amplification is linked to human sarcomas. MDM2 protein binds to p53, potentially enabling tumor cells to evade p53-mediated growth control.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Mutations in the p53 gene are linked to human cancer.
- The cellular regulators of p53 function are not well understood.
- MDM2 protein binds to p53 and may regulate its function.
Purpose of the Study:
- To investigate the role of MDM2 in human cancer.
- To clone the human MDM2 gene and determine its function.
- To assess MDM2 gene alterations in sarcomas.
Main Methods:
- Cloning of the human MDM2 gene.
- In vitro binding assays of human MDM2 protein and p53.
- Localization of the human MDM2 gene to chromosome 12q13-14 using MDM2 clones.
- Analysis of MDM2 gene amplification in human sarcoma samples.
Main Results:
- Recombinant human MDM2 protein binds human p53 in vitro.
- The human MDM2 gene was localized to chromosome 12q13-14.
- MDM2 gene amplification was observed in over one-third of 47 sarcomas analyzed.
- Amplification included common bone and soft tissue sarcomas.
Conclusions:
- MDM2 binds to p53, suggesting a role in regulating p53 activity.
- MDM2 gene amplification in sarcomas may lead to the evasion of p53-dependent growth control.
- This mechanism contributes to tumorigenesis, similar to viral oncogene inactivation of p53.
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