Identification of transformation-related pathways in a breast epithelial cell model using a ribonomics approach

Krystyna Mazan-Mamczarz1, Patrick R Hagner, Bojie Dai

  • 1Marlene and Stewart Greenebaum Cancer Center, University of Maryland, Baltimore, MD 21201, USA.

Cancer Research
|October 3, 2008
PubMed

Insights

RNA-binding proteins AUF1 and HuR regulate gene expression during cell transformation. Altered binding impacts cancer-related pathways, with HuR knockdown reducing growth in transformed breast cells.

Area of Science:

  • Molecular Biology
  • Cancer Research
  • Gene Regulation

Background:

  • Aberrant gene expression drives malignant cell transformation.
  • Posttranscriptional gene regulation by RNA-binding proteins (RBPs) is crucial in normal and disease states.
  • AUF1 and HuR are RBPs known to interact with mRNAs, sometimes antagonistically.

Purpose of the Study:

  • To investigate the reciprocal association of AUF1 and HuR with target mRNAs during breast epithelial cell transformation.
  • To understand the impact of these RNA-binding proteins on protein expression and cellular transformation.
  • To identify cancer-related pathways regulated by AUF1 and HuR using a ribonomics approach.

Main Methods:

  • Utilized MCT-1 oncogene-mediated transformation of MCF10A breast epithelial cells.
  • Employed a ribonomics approach to identify mRNA targets of AUF1 and HuR.
  • Used RNA interference to knock down HuR expression.

Main Results:

  • Identified altered associations of AUF1 and HuR with mRNAs in cancer-related pathways during cell transformation.
  • Demonstrated that HuR knockdown reduced anchorage-independent growth in transformed cells.
  • Showed decreased protein expression of validated HuR target genes upon knockdown.

Conclusions:

  • Global changes in HuR and AUF1 binding to transcripts critically regulate genes in breast epithelial cell transformation.
  • Ribonomics is a feasible approach for identifying cancer-related pathways involved in cell transformation.
  • These findings highlight the role of posttranscriptional regulation in oncogenesis.