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TP53 mutations in cancer: Molecular features and therapeutic opportunities (Review)
1Molecular Biology and Viral Oncology Unit, Istituto Nazionale Tumori IRCCS Fondazione G. Pascale, I-80131 Napoli, Italy.
Abstract:
The tumour suppressor factor p53 plays an essential role in regulating numerous cellular processes, including the cell cycle, DNA repair, apoptosis, autophagy, cell metabolism and immune response. TP53 is the most commonly mutated gene in human cancers. These mutations are primarily non‑synonymous changes that produce mutant p53 proteins characterized by loss of function, a dominant negative effect on p53 tetramerisation and gain of function (GOF). GOF mutations not only disrupt the tumour‑suppressive activities of p53 but also endow the mutant proteins with new oncogenic properties. Recent studies analysing different pathogenic features of mutant p53 in cancer‑derived cell lines have demonstrated that restoring wild‑type p53, rather than removing GOF mutations, reduces cancer cell growth. These findings suggest that therapeutic strategies for reactivating wild‑type p53 function in cancer cells may bring a greater benefit than approaches halting mutant p53. This approach could involve the use of small molecules, gene therapy and other methods to re‑establish wild‑type p53 activity. This review describes the complexity of the biological activities of different p53 mutants and summarizes the current therapeutic approaches to restore p53 function.
Insights
Restoring wild-type p53 function, rather than targeting mutant p53, is a promising cancer therapy. Reactivating the tumor suppressor p53 shows potential in reducing cancer cell growth.
Area of Science:
- Molecular Biology
- Cancer Biology
- Genetics
Background:
- The tumor suppressor p53 is crucial for cellular processes and is frequently mutated in cancers.
- TP53 mutations, often non-synonymous, lead to loss of function, dominant-negative effects, and gain-of-function (GOF) oncogenic properties.
Purpose of the Study:
- To review the complex biological activities of p53 mutants.
- To summarize current therapeutic strategies aimed at restoring wild-type p53 function in cancer.
Main Methods:
- Analysis of pathogenic features of mutant p53 in cancer cell lines.
- Review of existing literature on p53 mutations and therapeutic approaches.
Main Results:
- Restoring wild-type p53 function reduces cancer cell growth more effectively than removing GOF mutations.
- Mutant p53 proteins exhibit both loss of tumor-suppressive activities and new oncogenic properties.
Conclusions:
- Therapeutic strategies focusing on reactivating wild-type p53 are a promising avenue for cancer treatment.
- Approaches include small molecules, gene therapy, and other methods to re-establish p53 activity.
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