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Yeast As a Chassis for Developing Functional Assays to Study Human P53
Published on: August 4, 2019
The Undervalued Avenue to Reinstate Tumor Suppressor Functionality of the p53 Protein Family for Improved Cancer
1Faculty of Chemistry, University of Warsaw, Pasteura 1, 02-093 Warsaw, Poland.
Abstract:
p53 and p73 are critical tumor suppressors that are often inactivated in human cancers through various mechanisms. Owing to their high structural homology, the proteins have many joined functions and recognize the same set of genes involved in apoptosis and cell cycle regulation. p53 is known as the 'guardian of the genome' and together with p73 forms a barrier against cancer development and progression. The TP53 is mutated in more than 50% of all human cancers and the germline mutations in TP53 predispose to the early onset of multiple tumors in Li-Fraumeni syndrome (LFS), the inherited cancer predisposition. In cancers where TP53 gene is intact, p53 is degraded. Despite the ongoing efforts, the treatment of cancers remains challenging. This is due to late diagnoses, the toxicity of the current standard of care and marginal benefit of newly approved therapies. Presently, the endeavors focus on reactivating p53 exclusively, neglecting the potential of the restoration of p73 protein for cancer eradication. Taken that several small molecules reactivating p53 failed in clinical trials, there is a need to develop new treatments targeting p53 proteins in cancer. This review outlines the most advanced strategies to reactivate p53 and p73 and describes drug repurposing approaches for the efficient reinstatement of the p53 proteins for cancer therapy.
Insights
The tumor suppressor proteins p53 and p73 are crucial for preventing cancer. This review explores advanced strategies to reactivate these proteins, offering new hope for cancer treatment.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- p53 and p73 are key tumor suppressors often inactivated in human cancers.
- Their structural homology leads to shared functions in apoptosis and cell cycle regulation.
- TP53 mutations are prevalent in cancers and Li-Fraumeni syndrome, while p53 degradation occurs in cancers with intact TP53.
Purpose of the Study:
- To review advanced strategies for reactivating p53 and p73.
- To explore drug repurposing for p53 protein reinstatement in cancer therapy.
- To address the limitations of current cancer treatments and the need for novel therapeutic approaches.
Main Methods:
- Literature review of current research on p53 and p73.
- Analysis of therapeutic strategies targeting tumor suppressor proteins.
- Examination of drug repurposing opportunities for cancer treatment.
Main Results:
- Existing efforts often focus solely on p53 reactivation, neglecting p73.
- Several small molecules targeting p53 have failed in clinical trials.
- There is a significant need for novel treatments targeting both p53 and p73 proteins.
Conclusions:
- Reactivating both p53 and p73 holds potential for cancer eradication.
- Drug repurposing offers a promising avenue for reinstating p53 protein function.
- Novel therapeutic strategies targeting these tumor suppressors are essential for improving cancer treatment outcomes.
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