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Yeast As a Chassis for Developing Functional Assays to Study Human P53
Published on: August 4, 2019
The p53 family members have distinct roles during mammalian embryonic development
Jeanine L Van Nostrand1, Margot E Bowen1, Hannes Vogel2
1Division of Radiation and Cancer Biology, Department of Radiation Oncology, Stanford University School of Medicine, Stanford, CA 94305, USA.
Abstract:
The p53 tumor suppressor is a member of a multi-protein family, including the p63 and p73 transcription factors. These proteins can bind to the same consensus sites in DNA and activate the same target genes, suggesting that there could be functional redundancy between them. Indeed, double mutant mice heterozygous for any two family member-encoding genes display enhanced cancer phenotypes relative to single heterozygous mutants. However, whether the family members play redundant roles during embryonic development has remained largely unexplored. Although p53-/-; p73-/- mice are born and manifest phenotypes characteristic of each of the single mutants, the consequences of combined deficiency of p63 and either p53 or p73 have not been elucidated. To examine the functional overlap of p53 family members during development, we bred and analyzed compound mutant embryo phenotypes. We discovered that double knockout embryos and five allele knockout embryos only displayed obvious defects accounted for by loss of single p53 family members. Surprisingly, at mid-gestation (E11), we identified a single viable triple knockout embryo that appeared grossly normal. Together, these results suggest that the p53 family is not absolutely required for early embryogenesis and that p53 family members are largely non-redundant during early development.
Insights
The p53 protein family, including p53, p63, and p73, shows limited functional redundancy during early embryonic development. Compound mutant mice revealed no essential roles for these proteins in early embryogenesis.
Area of Science:
- Molecular Biology
- Developmental Biology
- Genetics
Background:
- The p53 protein family, comprising p53, p63, and p73, are transcription factors that bind similar DNA sequences.
- Functional redundancy is suggested by their ability to activate common target genes and by enhanced cancer phenotypes in compound heterozygous mutant mice.
Purpose of the Study:
- To investigate the functional overlap and redundant roles of p53 family members during embryonic development.
- To analyze the consequences of combined deficiencies in p63 with p53 or p73.
Main Methods:
- Breeding and analysis of compound mutant mice with deficiencies in p53 family member genes.
- Phenotypic characterization of double and multiple knockout embryos at mid-gestation.
Main Results:
- Double knockout embryos and five-allele knockout embryos exhibited defects consistent with the loss of single p53 family members.
- A single viable triple knockout embryo at mid-gestation (E11) showed no gross abnormalities.
- These findings indicate a lack of absolute requirement for the p53 family in early embryogenesis.
Conclusions:
- The p53 protein family is not essential for early embryogenesis.
- p53 family members demonstrate largely non-redundant roles during early embryonic development.
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