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Yeast As a Chassis for Developing Functional Assays to Study Human P53
Published on: August 4, 2019
The p53/mouse double minute 2 homolog complex deregulation in merlin-deficient tumours
Sylwia Ammoun1, Marei Caroline Schmid1, Lu Zhou1
1Plymouth University, Peninsula Schools of Medicine and Dentistry, The Institute of Translational and Stratified Medicine, The John Bull Building, Tamar Science Park, Research Way, Plymouth PL6 8BU, UK.
Abstract:
Deficiency of the tumour suppressor merlin leads to the development of schwannomas, meningiomas and ependymomas occurring spontaneously or as a part of the hereditary disease Neurofibromatosis type 2 (NF2). Merlin loss is also found in a proportion of other cancers like mesothelioma, melanoma, breast cancer and glioblastoma. The tumour suppressor/transcription factor p53 regulates proliferation, survival and differentiation and its deficiency plays a role in the development of many tumours. 53 can be negatively regulated by FAK, PI3K/AKT and MDM2 and possibly positively regulated by merlin in different cell lines. In this study we investigated the role of p53 in merlin-deficient tumours. Using our in vitro model of primary human schwannoma cells we have previously demonstrated that FAK is overexpressed/activated and localises into the nucleus of schwannoma cells increasing proliferation. AKT is strongly activated via platelet-derived growth factor (PDGF) - and insulin-like growth factor 1 (IGF1) - receptors increasing survival. Here we investigated p53 regulation and its role in proliferation and survival of human primary schwannoma cells using western blotting, immunocytochemistry, immunohistochemistry and proliferation, survival and transcription factor assays. In human primary schwannoma cells p53 was found to be downregulated while MDM2 was upregulated leading to increased cell proliferation and survival. p53 is regulated by merlin involving FAK, AKT and MDM2. Merlin reintroduction into schwannoma cells increased p53 levels and activity, and treatment with Nutlin-3, a drug which increases p53 stability by disrupting the p53/MDM2 complex, decreased tumour growth and reduced cell survival. These findings are important to dissect the mechanisms responsible for the development of merlin-deficient tumours and to identify new therapeutic targets. We suggest that Nutlin-3, possibly in combination with FAK or PI3K inhibitors, can be employed as a novel treatment for schwannoma and other merlin-deficient tumours.
Insights
Merlin deficiency in tumors leads to decreased p53 and increased MDM2, promoting cancer growth. Restoring merlin or using Nutlin-3 drug inhibits tumor growth and survival in schwannoma cells.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Genetics
Background:
- Merlin deficiency causes schwannomas, meningiomas, ependymomas, and other cancers.
- Tumor suppressor p53 regulates cell proliferation and survival, and its deficiency contributes to tumorigenesis.
- p53 can be regulated by merlin, FAK, PI3K/AKT, and MDM2.
Purpose of the Study:
- To investigate the role of p53 in merlin-deficient human schwannoma cells.
- To explore the regulatory mechanisms of p53 involving merlin, FAK, AKT, and MDM2.
- To evaluate the therapeutic potential of targeting p53/MDM2 pathway in merlin-deficient tumors.
Main Methods:
- Utilized primary human schwannoma cells as an in vitro model.
- Employed western blotting, immunocytochemistry, and immunohistochemistry.
- Conducted proliferation, survival, and transcription factor assays.
Main Results:
- Human primary schwannoma cells showed downregulated p53 and upregulated MDM2, increasing proliferation and survival.
- Merlin reintroduction restored p53 levels and activity.
- Nutlin-3 treatment, which stabilizes p53, reduced tumor growth and cell survival.
Conclusions:
- p53 is downregulated and MDM2 is upregulated in merlin-deficient schwannoma cells, driving tumor progression.
- Merlin regulates p53 through FAK, AKT, and MDM2 pathways.
- Nutlin-3, potentially combined with FAK or PI3K inhibitors, shows promise as a novel therapeutic strategy for merlin-deficient tumors.
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