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Updated: Jun 29, 2026

Studying TGF-β Signaling and TGF-β-induced Epithelial-to-mesenchymal Transition in Breast Cancer and Normal Cells
Published on: October 27, 2020
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.
Abstract:
The aberrant expression of many genes is a common feature in the malignant transformation of cells. In mammalian cells, posttranscriptional gene regulatory processes are emerging as critical determinants controlling gene expression both in physiologic and pathologic conditions. These regulatory mechanisms are directed primarily by the interaction of mRNAs with specific RNA-binding proteins (RBP). There is an emerging body of data demonstrating that two RBPs, AUF1 and HuR, can antagonistically affect the posttranscriptional fate of target mRNAs, as well as concurrently bind to common target transcripts. Employing MCT-1 oncogene-mediated transformation of immortalized breast epithelial MCF10A cells, we characterized the largely reciprocal association of these two RBPs with target mRNAs and their influence on protein expression vis-a-vis cellular transformation. Using a ribonomics approach, we identified mRNAs from cancer-related pathways whose association with AUF1 and/or HuR were altered when comparing immortalized with transformed MCF10A cells. Significantly, we were able to show that knockdown of HuR expression using RNA interference reduced anchorage-independent growth capacity in transformed MCF10A cells and decreased protein expression of a number of validated target genes. Our data show that the global alterations in binding of HuR and AUF1 with target transcripts have a critical role in posttranscriptional regulation of genes encoding proteins involved in breast epithelial cell transformation. These findings further support the feasibility of using a ribonomics approach for the identification of cancer-related pathways.
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.
