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Published on: August 17, 2015
Regulation of Nuclear Receptor Nur77 by miR-124
Alexa Tenga1,2, Jordan A Beard1,2, Apana Takwi1
1Department of Chemical Biology and Therapeutics, St. Jude Children's Research Hospital, Memphis, TN, United States of America.
Abstract:
The nuclear receptor Nur77 is commonly upregulated in adult cancers and has oncogenic functions. Nur77 is an immediate-early response gene that acts as a transcription factor to promote proliferation and protect cells from apoptosis. Conversely, Nur77 can translocate to the mitochondria and induce apoptosis upon treatment with various cytotoxic agents. Because Nur77 is upregulated in cancer and may have a role in cancer progression, it is of interest to understand the mechanism controlling its expression. MicroRNAs (miRNAs) are responsible for inhibiting translation of their target genes by binding to the 3'UTR and either degrading the mRNA or preventing it from being translated into protein, thereby making these non-coding endogenous RNAs vital regulators of every cellular process. Several miRNAs have been predicted to target Nur77; however, strong evidence showing the regulation of Nur77 by any miRNA is lacking. In this study, we used a luciferase reporter assay containing the 3'UTR of Nur77 to screen 296 miRNAs and found that miR-124, which is the most abundant miRNA in the brain and has a role in promoting neuronal differentiation, caused the greatest reduction in luciferase activity. Interestingly, we discovered an inverse relationship in Daoy medulloblastoma cells and undifferentiated granule neuron precursors in which Nur77 is upregulated and miR-124 is downregulated. Exogenous expression to further elevate Nur77 levels in Daoy cells increased proliferation and viability, but knocking down Nur77 via siRNA resulted in the opposite phenotype. Importantly, exogenous expression of miR-124 reduced Nur77 expression, cell viability, proliferation, and tumor spheroid size in 3D culture. In all, we have discovered miR-124 to be downregulated in instances of medulloblastoma in which Nur77 is upregulated, resulting in a proliferative state that abets cancer progression. This study provides evidence for increasing miR-124 expression as a potential therapy for cancers with elevated levels of Nur77.
Insights
MicroRNA-124 (miR-124) down-regulation in cancer allows the oncogene Nur77 to increase cell proliferation. Restoring miR-124 levels may offer a new cancer therapy by inhibiting Nur77 expression and reducing tumor growth.
Area of Science:
- Molecular Biology
- Cancer Research
- Genetics
Background:
- Nuclear receptor Nur77 is upregulated in cancers, promoting proliferation and inhibiting apoptosis.
- MicroRNAs (miRNAs) regulate gene expression by targeting mRNA, impacting cellular processes.
- Nur77's role in cancer progression necessitates understanding its regulatory mechanisms.
Purpose of the Study:
- To identify specific miRNAs regulating Nur77 expression.
- To investigate the functional consequences of Nur77 and miR-124 dysregulation in medulloblastoma.
- To explore the therapeutic potential of modulating miR-124 in Nur77-driven cancers.
Main Methods:
- Luciferase reporter assay screening of 296 miRNAs against the Nur77 3'UTR.
- Analysis of Nur77 and miR-124 expression in Daoy medulloblastoma cells and neuronal precursors.
- Manipulation of Nur77 and miR-124 levels via exogenous expression and siRNA knockdown.
- Assessment of cell viability, proliferation, and tumor spheroid formation in 3D culture.
Main Results:
- miR-124 significantly reduced luciferase activity driven by the Nur77 3'UTR, indicating direct targeting.
- An inverse correlation was observed between Nur77 and miR-124 levels in medulloblastoma cells.
- Elevated Nur77 increased proliferation and viability, while its knockdown decreased them.
- Exogenous miR-124 suppressed Nur77 expression, reduced cell viability and proliferation, and diminished tumor spheroid size.
Conclusions:
- miR-124 directly targets and downregulates Nur77 expression.
- Downregulation of miR-124 contributes to Nur77-mediated cancer cell proliferation in medulloblastoma.
- Restoring miR-124 levels presents a potential therapeutic strategy for cancers with elevated Nur77.
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