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Published on: August 19, 2014
c-Abl is required for development and optimal cell proliferation in the context of p53 deficiency
Y E Whang1, C Tran, C Henderson
1Department of Medicine, University of California, Los Angeles, CA 90095, USA.
Abstract:
The c-Abl tyrosine kinase and the p53 tumor suppressor protein interact functionally and biochemically in cellular genotoxic stress response pathways and are implicated as downstream mediators of ATM (ataxia-telangiectasia mutated). This fact led us to study genetic interactions in vivo between c-Abl and p53 by examining the phenotype of mice and cells deficient in both proteins. c-Abl-null mice show high neonatal mortality and decreased B lymphocytes, whereas p53-null mice are prone to tumor development. Surprisingly, mice doubly deficient in both c-Abl and p53 are not viable, suggesting that c-Abl and p53 together contribute to an essential function required for normal development. Fibroblasts lacking both c-Abl and p53 were similar to fibroblasts deficient in p53 alone, showing loss of the G(1)/S cell-cycle checkpoint and similar clonogenic survival after ionizing radiation. Fibroblasts deficient in both c-Abl and p53 show reduced growth in culture, as manifested by reduction in the rate of proliferation, saturation density, and colony formation, compared with fibroblasts lacking p53 alone. This defect could be restored by reconstitution of c-Abl expression. Taken together, these results indicate that the ATM phenotype cannot be explained solely by loss of c-Abl and p53 and that c-Abl contributes to enhanced proliferation of p53-deficient cells. Inhibition of c-Abl function may be a therapeutic strategy to target p53-deficient cells selectively.
Insights
The c-Abl tyrosine kinase and p53 tumor suppressor are essential for development. Loss of both proteins leads to non-viable mice, indicating a critical combined function in cell growth and genotoxic stress response.
Area of Science:
- Molecular Biology
- Genetics
- Cancer Research
Background:
- c-Abl tyrosine kinase and p53 tumor suppressor protein interact in genotoxic stress response pathways.
- Both proteins are downstream mediators of ATM (ataxia-telangiectasia mutated).
Purpose of the Study:
- To investigate the in vivo genetic interactions between c-Abl and p53.
- To examine the phenotype of mice and cells deficient in both c-Abl and p53.
Main Methods:
- Analysis of c-Abl-null, p53-null, and double-deficient mice phenotypes.
- Assessment of fibroblast cell-cycle checkpoint, clonogenic survival, proliferation, and growth in culture.
- Restoration of c-Abl expression in deficient fibroblasts.
Main Results:
- Mice doubly deficient in c-Abl and p53 are non-viable, suggesting a crucial combined function.
- Fibroblasts lacking both proteins showed reduced growth and proliferation compared to p53-deficient cells alone.
- Loss of c-Abl contributes to enhanced proliferation in p53-deficient cells.
Conclusions:
- The ATM phenotype is not solely explained by the loss of c-Abl and p53.
- c-Abl plays a significant role in the proliferation of p53-deficient cells.
- Inhibiting c-Abl function could be a therapeutic strategy for targeting p53-deficient cancers.
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