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Yeast As a Chassis for Developing Functional Assays to Study Human P53
Published on: August 4, 2019
p63 and p73 in tumor suppression and promotion
1Department of Cell Biology, Harvard Medical School, USA. fmckeon@hms.harvard.edu
Abstract:
The recent discovery of two genes, termed p63 and p73, encoding transcription factors highly homologous to p53 presents unexpected challenges and opportunities for the understanding and treatment of cancers. The questions raised are many but center on determining whether these new genes possess novel tumor suppressor functions, cooperate with p53, or impart oncogenic effects. At present there is considerable discord in the field concerning these concepts with some favoring a tumor suppressor role for the p53 family members and others an oncogenic influence. In support of a tumor suppressor role is the ability of p73 and p63 isoforms to transactivate p53 target genes and the large body of work linking p73, and to some extent p63, in apoptotic events in response to cellular stresses generally considered the purview of p53. More recently, p73 has been implicated in cell death following T cell activation, the response of cancers to chemotherapy, and finally, along with p63, to the function of p53 itself. Opposing this view is the fact that the p73 and p63 genes are rarely mutated in cancers and the stark absence of tumors in the p73 null mouse. Moreover, the high expression of dominant negative (dn) versions of the p73 and p63 proteins supports an anti-p53 function and therefore possibly an oncogenic effect. Indeed, the p63 gene is located in a region of chromosome three amplified in squamous cell carcinomas and the number of reports of dn-p63 overexpression in these diseases is increasing. This review will examine both sides of these arguments in an attempt to decipher common themes and to identify opportunities these genes represent for understanding tumorigenesis.
Insights
The p53 family genes p63 and p73 have dual roles in cancer, potentially acting as tumor suppressors or oncogenes. Research is ongoing to clarify their functions in tumorigenesis and cancer treatment.
Area of Science:
- Molecular Biology
- Cancer Genetics
- Cellular Biology
Background:
- Discovery of p63 and p73, genes homologous to p53, presents challenges in understanding cancer.
- Discord exists regarding whether p63/p73 act as tumor suppressors or oncogenes.
Purpose of the Study:
- To review evidence for both tumor suppressor and oncogenic roles of p63 and p73.
- To explore the implications of p63/p73 functions for cancer treatment and tumorigenesis.
Main Methods:
- Literature review of studies on p63 and p73.
- Analysis of genetic data, including mutations and gene expression.
- Examination of functional studies in cellular and animal models.
Main Results:
- Evidence supports a tumor suppressor role through transactivation of p53 target genes and involvement in apoptosis.
- Evidence suggests an oncogenic role due to rare mutations and overexpression of dominant-negative isoforms, particularly in squamous cell carcinomas.
- p73 null mice do not develop tumors, contrasting with p53 null mice.
Conclusions:
- The dual role of p63 and p73 in cancer requires further investigation.
- Understanding these roles may reveal new therapeutic strategies for cancer treatment.
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