Mutant p53 in cancer: from molecular mechanism to therapeutic modulation
Мутантный p53 при раке: от молекулярного механизма к терапевтической модуляции
2022-11-18
SCID: 54.1/ny52ayk2
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ferroptosisgain-of-functionmutant p53therapeutic targetingtumor suppressor gene
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Abstract (AI)
TP53, a crucial tumor suppressor gene, is the most commonly mutated gene in human cancers. Aside from losing its tumor suppressor function, mutant p53 (mutp53) often acquires inherent, novel oncogenic functions, which is termed "gain-of-function". Emerging evidence suggests that mutp53 is highly associated with advanced malignancies and poor prognosis, which makes it a target for development of novel cancer therapies. Herein, we provide a summary of our knowledge of the mutp53 types and mutp53 spectrum in cancers. The mechanisms of mutp53 accumulation and gain-of-function are also summarized. Furthermore, we discuss the gain-of-function of mutp53 in cancers: genetic instability, ferroptosis, microenvironment, and stemness. Importantly, the role of mutp53 in the clinic is also discussed, particularly with regard to chemotherapy and radiotherapy. Last, emphasis is given to emerging strategies on how to target mutp53 for tumor therapy. Thus, this review will contribute to better understanding of the significance of mutp53 as a target for therapeutic strategies.
Key Findings
1
Emerging therapeutic strategies aim to directly target mutant p53 and exploit its cancer-specific vulnerabilities.
2
Mutant TP53 not only loses tumor-suppressor activity but often acquires novel oncogenic gain-of-function properties.
3
Mutant p53 gain-of-function contributes to genetic instability, ferroptosis regulation, tumor microenvironment remodeling, and cancer stemness.
4
Mutant p53 influences clinical responses to chemotherapy and radiotherapy, making it relevant to treatment outcomes.
5
Mutant p53 is strongly associated with advanced malignancies and poor prognosis, supporting its relevance as a therapeutic target.
Research Object
mutant p53 in human cancers
Research Subject
the molecular mechanisms, oncogenic gain-of-function, clinical significance, and therapeutic modulation of mutant p53
Publication Details
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2022-11-18
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