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Updated: Apr 25, 2026

Genome-wide Screen for miRNA Targets Using the MISSION Target ID Library
Published on: April 6, 2012
microRNA-29 negatively regulates EMT regulator N-myc interactor in breast cancer
Jack W Rostas, Hawley C Pruitt, Brandon J Metge
1Department of Pathology, University of Alabama at Birmingham, WTI-320E, 1824 6th avenue South, Birmingham, AL 35294, USA. rsamant@uab.edu.
Background:
N-Myc Interactor is an inducible protein whose expression is compromised in advanced stage breast cancer. Downregulation of NMI, a gatekeeper of epithelial phenotype, in breast tumors promotes mesenchymal, invasive and metastatic phenotype of the cancer cells. Thus the mechanisms that regulate expression of NMI are of potential interest for understanding the etiology of breast tumor progression and metastasis.
Method:
Web based prediction algorithms were used to identify miRNAs that potentially target the NMI transcript. Luciferase reporter assays and western blot analysis were used to confirm the ability of miR-29 to target NMI. Quantitive-RT-PCRs were used to examine levels of miR29 and NMI from cell line and patient specimen derived RNA. The functional impact of miR-29 on EMT phenotype was evaluated using transwell migration as well as monitoring 3D matrigel growth morphology. Anti-miRs were used to examine effects of reducing miR-29 levels from cells. Western blots were used to examine changes in GSK3β phosphorylation status. The impact on molecular attributes of EMT was evaluated using immunocytochemistry, qRT-PCRs as well as Western blot analyses.
Results:
Invasive, mesenchymal-like breast cancer cell lines showed increased levels of miR-29. Introduction of miR-29 into breast cancer cells (with robust level of NMI) resulted in decreased NMI expression and increased invasion, whereas treatment of cells with high miR-29 and low NMI levels with miR-29 antagonists increased NMI expression and decreased invasion. Assessment of 2D and 3D growth morphologies revealed an EMT promoting effect of miR-29. Analysis of mRNA of NMI and miR-29 from patient derived breast cancer tumors showed a strong, inverse relationship between the expression of NMI and the miR-29. Our studies also revealed that in the absence of NMI, miR-29 expression is upregulated due to unrestricted Wnt/β-catenin signaling resulting from inactivation of GSK3β.
Conclusion:
Aberrant miR-29 expression may account for reduced NMI expression in breast tumors and mesenchymal phenotype of cancer cells that promotes invasive growth. Reduction in NMI levels has a feed-forward impact on miR-29 levels.
Insights
Aberrant miR-29 expression in breast cancer cells reduces N-Myc Interactor (NMI) levels, promoting tumor invasion and metastasis. This suggests miR-29 as a potential therapeutic target for breast cancer progression.
Area of Science:
- Molecular Oncology
- Cancer Biology
- MicroRNA Therapeutics
Background:
- N-Myc Interactor (NMI) is crucial for maintaining the epithelial phenotype in breast cancer.
- Decreased NMI expression is linked to the promotion of invasive and metastatic characteristics in breast tumors.
- Understanding NMI regulation is vital for deciphering breast cancer progression and metastasis.
Purpose of the Study:
- To investigate the regulatory mechanisms of NMI expression in breast cancer.
- To determine the role of miR-29 in regulating NMI and its impact on epithelial-mesenchymal transition (EMT).
- To explore the potential of targeting miR-29 for therapeutic intervention in breast cancer.
Main Methods:
- Bioinformatic prediction of miRNA targets for NMI.
- Luciferase reporter assays and Western blot analysis to validate miR-29 targeting of NMI.
- Quantitative RT-PCR to measure miR-29 and NMI levels in cell lines and patient samples.
- Functional assays including transwell migration and 3D matrigel growth to assess EMT.
- Analysis of Wnt/β-catenin signaling pathway components and GSK3β phosphorylation.
Main Results:
- Invasive breast cancer cell lines exhibited elevated miR-29 levels.
- miR-29 introduction decreased NMI expression and enhanced cell invasion; miR-29 antagonism increased NMI and reduced invasion.
- miR-29 promoted EMT, evidenced by changes in cell morphology and molecular markers.
- A significant inverse correlation was observed between NMI and miR-29 expression in patient-derived tumors.
- Upregulated miR-29 was linked to Wnt/β-catenin signaling activation due to GSK3β inactivation in the absence of NMI.
Conclusions:
- Aberrant miR-29 expression contributes to reduced NMI levels in breast tumors, driving a mesenchymal phenotype and promoting invasive growth.
- NMI downregulation appears to create a positive feedback loop, further increasing miR-29 levels.
- miR-29 emerges as a key regulator in breast cancer progression and a potential therapeutic target.
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