Related Experiment Videos
p53 negatively regulates cdc2 transcription via the CCAAT-binding NF-Y transcription factor
1Bioscience Research Division, Korea Research Institute of Bioscience and Biotechnology, Yusung, P.O. Box 115, Taejeon, 305-600, Korea.
Abstract:
The p53 tumor suppressor protein regulates the transcription of regulatory genes involved in cell cycle arrest and apoptosis. We have reported previously that inducible expression of the p53 gene leads to the cell cycle arrest both at G(1) and G(2)/M in association with induction of p21 and reduction of mitotic cyclins (cyclin A and B) and cdc2 mRNA. In this study, we investigated the mechanism by which p53 regulates transcription of the cdc2 gene. Transient transfection analysis showed that wild type p53 represses whereas various dominant negative mutants of p53 increase cdc2 transcription. The cdc2 promoter activity is not repressed in cells transfected with a transactivation mutant, p53(22/23). An adenovirus oncoprotein, E1B-55K inhibits the p53-mediated repression of the cdc2 promoter, while E1B-19K does not. Since the cdc2 promoter does not contain a TATA sequence, we performed deletion and point mutation analyses and identified the inverted CCAAT sequence located at -76 as a cis-acting element for the p53-mediated regulation. We found that a specific DNA-protein complex is formed at the CCAAT sequence and that this complex contains the NF-Y transcription factor. Consistently, a dominant negative mutant of the NF-YA subunit, NF-YAm29, decreases the cdc2 promoter, and p53 does not further decrease the promoter activity in the presence of NF-YAm29. These results suggest that p53 negatively regulates cdc2 transcription and that the NF-Y transcription factor is required for the p53-mediated regulation.
Insights
The p53 tumor suppressor protein negatively regulates the transcription of the cdc2 gene. This regulation requires the NF-Y transcription factor and involves a specific CCAAT sequence in the cdc2 promoter.
Area of Science:
- Molecular Biology
- Cancer Research
- Gene Regulation
Background:
- The p53 protein is a crucial tumor suppressor.
- p53 controls genes involved in cell cycle arrest and apoptosis.
- Previous work showed p53 induces cell cycle arrest and affects mitotic cyclins and cdc2 mRNA.
Purpose of the Study:
- To elucidate the mechanism of p53-mediated transcriptional regulation of the cdc2 gene.
- To identify the specific DNA elements and transcription factors involved in this regulation.
Main Methods:
- Transient transfection assays with wild-type and mutant p53.
- Analysis of cdc2 promoter activity using deletion and point mutations.
- Adenovirus oncoprotein inhibition assays.
- DNA-protein complex formation studies using electrophoretic mobility shift assays.
- Mutant NF-YA subunit transfection to assess its role.
Main Results:
- Wild-type p53 represses cdc2 transcription, while mutants enhance it.
- A transactivation-deficient p53 mutant did not repress cdc2 transcription.
- Adenovirus E1B-55K protein inhibited p53-mediated repression.
- An inverted CCAAT sequence at -76 was identified as a key cis-acting element.
- NF-Y transcription factor binds to this CCAAT element.
- Dominant-negative NF-YA mutant abolished p53-mediated repression.
Conclusions:
- p53 negatively regulates cdc2 gene transcription.
- The NF-Y transcription factor is essential for p53's repressive effect on the cdc2 promoter.
- Regulation occurs via interaction with a CCAAT sequence within the cdc2 promoter.