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Yeast As a Chassis for Developing Functional Assays to Study Human P53
Published on: August 4, 2019
Necdin, a p53-target gene, is an inhibitor of p53-mediated growth arrest
Julie Lafontaine1, Francis Rodier, Véronique Ouellet
1Centre de recherche du Centre hospitalier de l'Université de Montréal and Institut du cancer de Montréal, Montréal, Québec, Canada.
Abstract:
In vitro, cellular immortalization and transformation define a model for multistep carcinogenesis and current ongoing challenges include the identification of specific molecular events associated with steps along this oncogenic pathway. Here, using NIH3T3 cells, we identified transcriptionally related events associated with the expression of Polyomavirus Large-T antigen (PyLT), a potent viral oncogene. We propose that a subset of these alterations in gene expression may be related to the early events that contribute to carcinogenesis. The proposed tumor suppressor Necdin, known to be regulated by p53, was within a group of genes that was consistently upregulated in the presence of PyLT. While Necdin is induced following p53 activation with different genotoxic stresses, Necdin induction by PyLT did not involve p53 activation or the Rb-binding site of PyLT. Necdin depletion by shRNA conferred a proliferative advantage to NIH3T3 and PyLT-expressing NIH3T3 (NIHLT) cells. In contrast, our results demonstrate that although overexpression of Necdin induced a growth arrest in NIH3T3 and NIHLT cells, a growing population rapidly emerged from these arrested cells. This population no longer showed significant proliferation defects despite high Necdin expression. Moreover, we established that Necdin is a negative regulator of p53-mediated growth arrest induced by nutlin-3, suggesting that Necdin upregulation could contribute to the bypass of a p53-response in p53 wild type tumors. To support this, we characterized Necdin expression in low malignant potential ovarian cancer (LMP) where p53 mutations rarely occur. Elevated levels of Necdin expression were observed in LMP when compared to aggressive serous ovarian cancers. We propose that in some contexts, the constitutive expression of Necdin could contribute to cancer promotion by delaying appropriate p53 responses and potentially promote genomic instability.
Insights
Necdin, a tumor suppressor, is upregulated by Polyomavirus Large-T antigen (PyLT) in NIH3T3 cells, potentially promoting cancer by interfering with p53 responses and cell cycle arrest.
Area of Science:
- Oncology
- Molecular Biology
- Cell Biology
Background:
- Cellular immortalization and transformation are key models for multistep carcinogenesis.
- Identifying molecular events in oncogenesis remains a challenge.
- Polyomavirus Large-T antigen (PyLT) is a potent viral oncogene used to study these events.
Purpose of the Study:
- To identify molecular events associated with PyLT expression in NIH3T3 cells.
- To investigate the role of Necdin in cellular immortalization and carcinogenesis.
- To explore Necdin's interaction with the p53 pathway and its implications in ovarian cancer.
Main Methods:
- Gene expression analysis in NIH3T3 cells expressing PyLT.
- RNA interference (shRNA) to deplete Necdin.
- Overexpression studies of Necdin.
- Assessment of p53-mediated growth arrest using nutlin-3.
- Analysis of Necdin expression in ovarian cancer tissues.
Main Results:
- PyLT upregulated Necdin expression independently of p53 activation.
- Necdin depletion enhanced NIH3T3 and NIHLT cell proliferation.
- Necdin overexpression induced transient growth arrest, with a rapidly proliferating population emerging.
- Necdin negatively regulated p53-mediated growth arrest.
- Elevated Necdin expression was found in low malignant potential ovarian cancer compared to aggressive serous ovarian cancer.
Conclusions:
- Necdin upregulation by PyLT may contribute to early carcinogenic events.
- Necdin can promote proliferation and bypass p53-mediated growth arrest.
- Constitutive Necdin expression in certain cancers might delay p53 responses, potentially promoting genomic instability and cancer progression.
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