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Yeast As a Chassis for Developing Functional Assays to Study Human P53
Published on: August 4, 2019
p53 loss of function: implications for the processes of immortalization and tumorigenesis
1Department of Molecular Biology, Lewis Thomas Laboratory, Princeton University, NJ 08544-1014.
Abstract:
The complex process of cell immortalization and transformation is likely to involve the inactivation of growth regulatory genes. Mutations (deletions, missense mutations) in the p53 gene are the most frequently observed genetic alteration in human tumors, making p53 a candidate for a cellular protein involved in the control of cell growth. Two recent studies have examined the role of p53 in immortalization and tumorigenesis. In the first study, p53 expression was examined in both mortal and immortal chick embryo fibroblasts. All mortal clones expressed p53 but the loss of wild-type p53 expression was observed in every immortal cell line examined. In the second study, a line of mice carrying two null p53 alleles has been created and characterized. Although these mice develop normally, they show a predisposition to develop a variety of neoplasms at an early age (< 6 months). Although it is unclear whether p53 regulates the same, different, or overlapping pathways in the two experimental systems, these data demonstrate that p53 function is critical for the maintenance of normal growth control and support the current classification of p53 as a growth suppressive or tumor suppressor gene.
Insights
The p53 gene is critical for controlling cell growth. Loss of p53 function leads to cell immortalization and increased tumor development, classifying it as a tumor suppressor gene.
Area of Science:
- Molecular Biology
- Genetics
- Oncology
Background:
- Cellular immortalization and transformation involve growth regulatory gene inactivation.
- Mutations in the p53 gene are common in human tumors.
- p53 is a candidate protein for controlling cell growth.
Purpose of the Study:
- To examine the role of p53 in cell immortalization and tumorigenesis.
- To investigate p53 expression in mortal and immortal cell lines.
- To assess the impact of p53 gene knockout on tumor development.
Main Methods:
- Examined p53 expression in mortal and immortal chick embryo fibroblasts.
- Created and characterized mice with a complete knockout of the p53 gene (null p53 alleles).
Main Results:
- Loss of wild-type p53 expression was observed in all immortal cell lines.
- Mice lacking functional p53 developed various neoplasms at an early age.
- p53 function is critical for normal growth control.
Conclusions:
- p53 plays a critical role in preventing uncontrolled cell growth and tumor formation.
- These findings support the classification of p53 as a tumor suppressor gene.
- p53 function is essential for maintaining normal growth regulation.
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