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.

Molecular Cancer
|September 2, 2014
PubMed
Abstract

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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