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Yeast As a Chassis for Developing Functional Assays to Study Human P53
Published on: August 4, 2019
Investigating the P53-dependent anti-cancer effect of ibutamoren in human cancer cell lines
Naeem Abdul Ghafoor1, Sabina Rasuli2, Özgür Tanriverdi3
1Department of Molecular Biology and Genetics, Graduate School of Natural and Applied Sciences, Mugla Sitki Kocman University, Mugla, Turkey.
Abstract:
The MDM2-p53 pathway plays a pivotal role in regulating cell cycle and apoptosis, with its dysfunction contributing to approximately 50% of human malignancies. MDM2, an E3 ubiquitin ligase, targets the tumour suppressor p53 for degradation, thereby promoting uncontrolled cell growth in cancers. Inhibiting the MDM2-p53 interaction represents a promising therapeutic strategy for reactivating p53's tumour-suppressive functions. This study explored the potential of ibutamoren (IBU) as a novel inhibitor of MDM2. In silico analyses utilizing molecular modelling revealed that IBU has a low IC50 for MDM2 inhibition and favourably binds to the p53-binding pocket of MDM2. In vitro experiments demonstrated that IBU treatment reduced the viability of immortalized cancer cell lines with a functional MDM2-p53 pathway but not in cell lines where this pathway harboured damaging mutations. This trend was further supported by RT-qPCR analysis, which showed differential expression of two p53 target genes upon IBU treatment in cell lines with wild MDM2-p53 pathways but not in those harbouring damaging mutations. These findings provide preliminary evidence supporting IBU's anticancer activity, plausibly through the MDM2-p53 pathway, and suggest that further studies are warranted to explore its mechanism of action and potential development as a lead compound in oncology research.
Insights
Ibutamoren (IBU) shows potential as an anticancer drug by inhibiting the MDM2-p53 pathway. This compound reduced cancer cell viability, suggesting a new therapeutic strategy for malignancies driven by this pathway.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- The MDM2-p53 pathway is crucial for cell cycle regulation and apoptosis.
- MDM2 targets the tumor suppressor p53 for degradation, promoting cancer cell growth.
- Inhibiting the MDM2-p53 interaction is a potential cancer therapy strategy.
Purpose of the Study:
- To investigate ibutamoren (IBU) as a novel inhibitor of the MDM2-p53 interaction.
- To evaluate IBU's potential anticancer activity by targeting MDM2.
Main Methods:
- In silico molecular modeling to assess IBU's binding affinity to MDM2.
- In vitro cell viability assays on cancer cell lines.
- RT-qPCR analysis to measure p53 target gene expression.
Main Results:
- IBU demonstrated a low IC50 for MDM2 inhibition and favorable binding to the p53-binding pocket.
- IBU reduced the viability of cancer cells with a functional MDM2-p53 pathway.
- IBU treatment altered p53 target gene expression in cell lines with wild-type MDM2-p53 pathways.
Conclusions:
- IBU exhibits preliminary anticancer activity, likely mediated through the MDM2-p53 pathway.
- Further research is warranted to explore IBU's mechanism and therapeutic potential in oncology.
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