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Knockdown of FAM83A to Verify Its Role in Cervical Cancer Cell Growth and Cisplatin Sensitivity
Published on: February 9, 2024
Cisplatin causes cell death via TAB1 regulation of p53/MDM2/MDMX circuitry
Yan Zhu1, Kausik Regunath, Xavier Jacq
1Department of Biological Sciences, Columbia University, New York, New York 10027, USA.
Abstract:
The interdependence of p53 and MDM2 is critical for proper cell survival and cell death and, when altered, can lead to tumorigenesis. Mitogen-activated protein kinase (MAPK) signaling pathways function in a wide variety of cellular processes, including cell growth, migration, differentiation, and death. Here we discovered that transforming growth factor β-activated kinase 1 (TAK1)-binding protein 1 (TAB1), an activator of TAK1 and of p38α, associates with and inhibits the E3 ligase activity of MDM2 toward p53 and its homolog, MDMX. Depletion of TAB1 inhibits MDM2 siRNA-mediated p53 accumulation and p21 induction, partially rescuing cell cycle arrest induced by MDM2 ablation. Interestingly, of several agents commonly used as DNA-damaging therapeutics, only cell death caused by cisplatin is mitigated by knockdown of TAB1. Two mechanisms are required for TAB1 to regulate apoptosis in cisplatin-treated cells. First, p38α is activated by TAB1 to phosphorylate p53 N-terminal sites, leading to selective induction of p53 targets such as NOXA. Second, MDMX is stabilized in a TAB1-dependent manner and is required for cell death after cisplatin treatment. Interestingly TAB1 levels are relatively low in cisplatin-resistant clones of ovarian cells and in ovarian patient's tumors compared with normal ovarian tissue. Together, our results indicate that TAB1 is a potential tumor suppressor that serves as a functional link between p53-MDM2 circuitry and a key MAPK signaling pathway.
Insights
Transforming growth factor β-activated kinase 1-binding protein 1 (TAB1) inhibits MDM2
Area of Science:
- Molecular Biology
- Cell Biology
- Cancer Research
Background:
- The p53-MDM2 interaction is crucial for cell fate, with alterations linked to cancer.
- Mitogen-activated protein kinase (MAPK) pathways regulate vital cellular processes.
Purpose of the Study:
- To investigate the role of TAB1 in regulating p53, MDM2, and MAPK signaling.
- To explore TAB1's function in cellular responses to DNA-damaging agents, particularly cisplatin.
Main Methods:
- Investigated TAB1's association with MDM2 and its effect on MDM2's E3 ligase activity towards p53 and MDMX.
- Utilized siRNA to deplete TAB1 and assessed its impact on p53 accumulation, p21 induction, and cell cycle arrest.
- Examined TAB1's role in cisplatin-induced apoptosis, including p38α activation and p53/MDMX phosphorylation/stabilization.
- Compared TAB1 levels in cisplatin-resistant ovarian cells and patient tumors versus normal tissue.
Main Results:
- TAB1 directly inhibits MDM2's ligase activity toward p53 and MDMX.
- TAB1 depletion partially rescues cell cycle arrest caused by MDM2 inhibition.
- TAB1 regulates cisplatin-induced apoptosis via p38α-mediated p53 phosphorylation and MDMX stabilization.
- Lower TAB1 levels correlate with cisplatin resistance in ovarian cancer cells and tumors.
Conclusions:
- TAB1 acts as a tumor suppressor by linking p53-MDM2 regulation with MAPK signaling.
- TAB1 is a key mediator of apoptosis in response to cisplatin treatment.
- TAB1 represents a potential therapeutic target in ovarian cancer.
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