Targeting p53 pathways: mechanisms, structures and advances in therapy
Таргетное воздействие на пути p53: механизмы, структура и достижения в терапии
2023-03-01
SCID: 54.1/kqfu7k9e
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TP53 mutationsoncogenic p53 mutantsp53 signaling pathwayp53 tumor suppressorp53-targeted therapies
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Abstract (AI)
The TP53 tumor suppressor is the most frequently altered gene in human cancers, and has been a major focus of oncology research. The p53 protein is a transcription factor that can activate the expression of multiple target genes and plays critical roles in regulating cell cycle, apoptosis, and genomic stability, and is widely regarded as the "guardian of the genome". Accumulating evidence has shown that p53 also regulates cell metabolism, ferroptosis, tumor microenvironment, autophagy and so on, all of which contribute to tumor suppression. Mutations in TP53 not only impair its tumor suppressor function, but also confer oncogenic properties to p53 mutants. Since p53 is mutated and inactivated in most malignant tumors, it has been a very attractive target for developing new anti-cancer drugs. However, until recently, p53 was considered an "undruggable" target and little progress has been made with p53-targeted therapies. Here, we provide a systematic review of the diverse molecular mechanisms of the p53 signaling pathway and how TP53 mutations impact tumor progression. We also discuss key structural features of the p53 protein and its inactivation by oncogenic mutations. In addition, we review the efforts that have been made in p53-targeted therapies, and discuss the challenges that have been encountered in clinical development.
Key Findings
1
Although mutant or inactive p53 is an attractive therapeutic target, p53 was historically considered undruggable, and clinical development of p53-targeted therapies has faced substantial challenges.
2
TP53 is the most frequently altered gene in human cancers, and p53 mutations both disable tumor suppression and can confer oncogenic properties.
3
The review explains how structural features of p53 and oncogenic mutations contribute to p53 inactivation and tumor progression.
4
p53 suppresses tumors through transcriptional regulation of cell-cycle arrest, apoptosis, and genomic stability, while also controlling metabolism, ferroptosis, the tumor microenvironment, and autophagy.
Research Object
p53 protein / TP53 tumor suppressor
Research Subject
The molecular mechanisms, structural features, cancer-promoting effects of TP53 mutations, and therapeutic targeting of p53
Publication Details
Publication Date
2023-03-01
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