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Published on: February 3, 2022
DNA replication licensing factor minichromosome maintenance deficient 5 rescues p53-mediated growth arrest
Mukesh K Agarwal1, A R M Ruhul Amin, Munna L Agarwal
1Department of Genetics, Case Western Reserve University, Cleveland, OH 44106, USA.
Abstract:
Inactivation of p53 signaling by mutation of p53 itself or abrogation of its normal function by other transfactors, such as MDM2, is a key event in the development of most human cancers. To identify novel regulators of p53, we have used a phenotype-based selection in which a total cDNA library in a retroviral vector has been introduced into TR9-7ER cells, which arrest when p53 is expressed from a tetracycline-regulated promoter. We have isolated several clones derived from cells that are not growth-arrested when p53 is overexpressed. In one clone, the levels of p53, p21, and MDM2 are comparable with those in TR9-7ER cells and, therefore, the abrogation of growth arrest by an exogenous cDNA is likely to be distal to p21. Using reverse transcription-PCR, we were able to isolate a cDNA of approximately 2.2 kb, which was found to have 99% identity to the nucleotides between about 80 and 2,288 of the open reading frame of a gene encoding DNA replication licensing factor. It encodes complete peptide of 734 residues of this protein also called minichromosome maintenance deficient 5 (MCM5) or cell division cycle 46 (Saccharomyces cerevisiae). Northern and Western blot analyses revealed that the expression of MCM5 and its transcriptional regulator, E2F1, is negatively regulated by p53. When MCM5 cDNA was reintroduced into fresh TR9-7ER cells, numerous colonies that grow in the absence of tetracycline were formed. This novel observation establishes a role for MCM5 in negating the growth arrest function of p53.
Insights
Researchers identified MCM5 as a novel regulator that negates the growth arrest function of p53. This finding is crucial for understanding cancer development and identifying new therapeutic targets.
Area of Science:
- Molecular Biology
- Cancer Research
- Cell Cycle Regulation
Background:
- p53 signaling inactivation is critical in human cancer development.
- MDM2 is a transfactor that abrogates p53 function.
- Identifying novel p53 regulators is key to cancer research.
Purpose of the Study:
- To identify novel regulators of p53.
- To investigate the role of MCM5 in p53-mediated growth arrest.
Main Methods:
- Phenotype-based selection using a cDNA library in TR9-7ER cells.
- Reverse transcription-PCR to isolate cDNA.
- Northern and Western blot analyses to assess gene expression.
Main Results:
- Isolated a cDNA encoding minichromosome maintenance deficient 5 (MCM5).
- Found MCM5 expression and E2F1 are negatively regulated by p53.
- Reintroduction of MCM5 cDNA into cells abrogated p53-induced growth arrest.
Conclusions:
- MCM5 plays a novel role in negating the growth arrest function of p53.
- MCM5 is a potential therapeutic target in cancers with p53 pathway alterations.
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