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A Reporter Assay to Analyze Intronic microRNA Maturation in Mammalian Cells
Published on: June 16, 2022
MicroRNA-223 regulates cyclin E activity by modulating expression of F-box and WD-40 domain protein 7
Yanfei Xu1, Tanushri Sengupta, Lokesh Kukreja
1Department of Medicine, Division of Hematology/Oncology, Northwestern University Feinberg School of Medicine, Chicago, Illinois 60611, USA.
Abstract:
F-box and WD-40 domain protein 7 (Fbw7) provides substrate specificity for the Skp1-Cullin1-F-box protein (SCF) ubiquitin ligase complex that targets multiple oncoproteins for degradation, including cyclin E, c-Myc, c-Jun, Notch, and mammalian target of rapamycin (mTOR). Fbw7 is a bona fide tumor suppressor, and loss-of-function mutations in FBXW7 have been identified in diverse human tumors. Although much is known about targets of the Fbw7 ubiquitin ligase pathway, relatively little is known about the regulation of Fbw7 expression. We identified a panel of candidate microRNA regulators of Fbw7 expression within a study of gene expression alterations in primary erythroblasts obtained from cyclin E(T74A T393A) knock-in mice, which have markedly dysregulated cyclin E expression. We found that overexpression of miR-223, in particular, significantly reduces FBXW7 mRNA levels, increases endogenous cyclin E protein and activity levels, and increases genomic instability. We next confirmed that miR-223 targets the FBXW7 3'-untranslated region. We then found that reduced miR-223 expression in primary mouse embryonic fibroblasts leads to increased Fbw7 expression and decreased cyclin E activity. Finally, we found that miR-223 expression is responsive to acute alterations in cyclin E regulation by the Fbw7 pathway. Together, our data indicate that miR-223 regulates Fbw7 expression and provide the first evidence that activity of the SCF(Fbw7) ubiquitin ligase can be modulated directly by the microRNA pathway.
Insights
MicroRNA-223 (miR-223) directly regulates F-box and WD-40 domain protein 7 (Fbw7) expression. This interaction impacts tumor suppressor activity and oncogenic protein levels, revealing a novel microRNA-mediated control mechanism for the SCF(Fbw7) ubiquitin ligase.
Area of Science:
- Cellular Biology
- Molecular Biology
- Oncology
Background:
- F-box and WD-40 domain protein 7 (Fbw7) is a tumor suppressor targeting oncoproteins like cyclin E for degradation via the SCF ubiquitin ligase.
- Loss-of-function mutations in FBXW7 are common in human cancers, but Fbw7 expression regulation is poorly understood.
Purpose of the Study:
- To identify microRNA regulators of Fbw7 expression.
- To investigate the functional consequences of miR-223-mediated Fbw7 regulation on oncogenic pathways and genomic stability.
Main Methods:
- Gene expression analysis in mouse erythroblasts and fibroblasts.
- MicroRNA mimic and inhibitor transfections.
- Western blotting for protein levels.
- Reporter assays to confirm 3'-UTR targeting.
Main Results:
- Overexpression of miR-223 significantly reduced FBXW7 mRNA and protein levels.
- miR-223 overexpression led to increased cyclin E protein, elevated cyclin E activity, and increased genomic instability.
- miR-223 was confirmed to directly target the FBXW7 3'-untranslated region.
- Reduced miR-223 expression resulted in increased Fbw7 expression and decreased cyclin E activity.
Conclusions:
- miR-223 directly regulates Fbw7 expression by targeting its 3'-UTR.
- This miR-223/Fbw7 axis influences oncogenic protein levels and genomic stability.
- The study reveals a novel mechanism of SCF(Fbw7) ubiquitin ligase regulation by microRNAs.
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