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Yeast As a Chassis for Developing Functional Assays to Study Human P53
Published on: August 4, 2019
Mutant p53-Associated Molecular Mechanisms of ROS Regulation in Cancer Cells
Marco Cordani1, Giovanna Butera2, Raffaella Pacchiana2
1IMDEA Nanociencia, Ciudad Universitaria de Cantoblanco, 28049 Madrid, Spain.
Abstract:
The TP53 tumor suppressor gene is the most frequently altered gene in tumors and an increasing number of studies highlight that mutant p53 proteins can acquire oncogenic properties, referred to as gain-of-function (GOF). Reactive oxygen species (ROS) play critical roles as intracellular messengers, regulating numerous signaling pathways linked to metabolism and cell growth. Tumor cells frequently display higher ROS levels compared to healthy cells as a result of their increased metabolism as well as serving as an oncogenic agent because of its damaging and mutational properties. Several studies reported that in contrast with the wild type protein, mutant p53 isoforms fail to exert antioxidant activities and rather increase intracellular ROS, driving a pro-tumorigenic survival. These pro-oxidant oncogenic abilities of GOF mutant p53 include signaling and metabolic rewiring, as well as the modulation of critical ROS-related transcription factors and antioxidant systems, which lead ROS unbalance linked to tumor progression. The studies summarized here highlight that GOF mutant p53 isoforms might constitute major targets for selective therapeutic intervention against several types of tumors and that ROS enhancement driven by mutant p53 might represent an "Achilles heel" of cancer cells, suggesting pro-oxidant drugs as a therapeutic approach for cancer patients bearing the mutant TP53 gene.
Insights
Gain-of-function (GOF) mutant p53 proteins promote tumor growth by increasing reactive oxygen species (ROS). Targeting this ROS enhancement offers a potential therapeutic strategy for TP53-mutated cancers.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Genetics
Background:
- The TP53 gene, a tumor suppressor, is frequently altered in cancers.
- Mutant p53 proteins can gain oncogenic, gain-of-function (GOF) properties.
- Reactive oxygen species (ROS) are critical signaling molecules involved in cell growth and metabolism.
Purpose of the Study:
- To summarize the role of GOF mutant p53 in promoting tumor progression via ROS.
- To highlight the potential of targeting ROS-producing mutant p53 for cancer therapy.
Main Methods:
- Review and summarization of existing studies on TP53 mutations, p53 protein function, and ROS.
- Analysis of how GOF mutant p53 influences cellular signaling, metabolism, and antioxidant systems.
Main Results:
- Mutant p53 isoforms, unlike wild-type p53, lack antioxidant activity and increase intracellular ROS.
- GOF mutant p53 drives pro-tumorigenic survival by rewiring signaling and metabolic pathways.
- This ROS imbalance contributes to tumor progression and highlights a vulnerability in cancer cells.
Conclusions:
- GOF mutant p53 isoforms are significant therapeutic targets in various tumors.
- The ROS-enhancing effect of mutant p53 represents a potential "Achilles heel" for cancer cells.
- Pro-oxidant drugs may offer a viable therapeutic approach for patients with mutant TP53.
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