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Published on: January 2, 2016
Identification of CDKN3 as a Key Gene that Regulates Neuroblastoma Cell Differentiation
Alexandra Vernaza1, Daniela F Cardus1, Jadyn L Smith1
1Department of Chemistry and Biochemistry, Texas State University, San Marcos, Texas.
Abstract:
We conducted a high-content screening (HCS) in neuroblastoma BE(2)-C cells to identify cell cycle regulators that control cell differentiation using a library of siRNAs against cell cycle-regulatory genes. We discovered that knocking down expression of cyclin dependent kinase inhibitor 3 (CDKN3) showed the most potent effect in inducing neurite outgrowth, the morphological cell differentiation marker of neuroblastoma cells. We then demonstrated that CDKN3 knockdown increased expression of neuroblastoma molecular differentiation markers, neuron specific enolase (NSE), βIII-tubulin and growth associated protein 43 (GAP43). We further showed that CDKN3 knockdown reduced expression of cell proliferation markers Ki67 and proliferating cell nuclear antigen (PCNA), and reduced colony formation of neuroblastoma cells. More importantly, we observed a correlation of high tumor CDKN3 mRNA levels with poor patient survival in the investigation of public neuroblastoma patient datasets. In exploring the mechanisms that regulate CDKN3 expression, we found that multiple strong differentiation-inducing molecules, including miR-506-3p and retinoic acid, down-regulated CDKN3 expression. In addition, we found that N-Myc promoted CDKN3 expression at the transcriptional level by directly binding to the CDKN3 promoter. Furthermore, we found that CDKN3 and two additional differentiation-regulating cell cycle proteins identified in our HCS, CDC6 and CDK4, form an interactive network to promote expression of each other. In summary, we for the first time discovered the function of CDKN3 in regulating neuroblastoma cell differentiation and characterized the transcriptional regulation of CDKN3 expression by N-Myc in neuroblastoma cells. Our findings support that CDKN3 plays a role in modulating neuroblastoma cell differentiation and that overexpression of CDKN3 may contribute to neuroblastoma progression.
Insights
Cyclin dependent kinase inhibitor 3 (CDKN3) knockdown induces neuroblastoma cell differentiation and neurite outgrowth. High CDKN3 levels correlate with poor patient survival, suggesting its role in neuroblastoma progression.
Area of Science:
- Oncology
- Cell Biology
- Molecular Biology
Background:
- Neuroblastoma is a pediatric cancer with complex cell cycle regulation.
- Identifying regulators of neuroblastoma differentiation is crucial for therapeutic strategies.
Purpose of the Study:
- To identify cell cycle regulators controlling neuroblastoma differentiation.
- To investigate the role of Cyclin dependent kinase inhibitor 3 (CDKN3) in neuroblastoma cell differentiation and progression.
Main Methods:
- High-content screening (HCS) using siRNA library in BE(2)-C neuroblastoma cells.
- Analysis of cell differentiation markers (neurite outgrowth, NSE, βIII-tubulin, GAP43) and proliferation markers (Ki67, PCNA).
- Correlation analysis with public neuroblastoma patient datasets and investigation of CDKN3 regulatory mechanisms (N-Myc, miR-506-3p, retinoic acid).
Main Results:
- CDKN3 knockdown significantly induced neuroblastoma cell differentiation and neurite outgrowth.
- CDKN3 knockdown reduced proliferation markers and colony formation.
- High tumor CDKN3 mRNA levels correlated with poor patient survival.
- N-Myc transcriptionally promoted CDKN3 expression, while miR-506-3p and retinoic acid down-regulated it.
- CDKN3 interacts with CDC6 and CDK4 in a differentiation-regulating network.
Conclusions:
- CDKN3 plays a critical role in regulating neuroblastoma cell differentiation.
- N-Myc-mediated transcriptional regulation of CDKN3 is a key mechanism in neuroblastoma.
- Overexpression of CDKN3 may contribute to neuroblastoma progression and warrants further investigation as a therapeutic target.
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