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Updated: Apr 7, 2026

Studying TGF-β Signaling and TGF-β-induced Epithelial-to-mesenchymal Transition in Breast Cancer and Normal Cells
Published on: October 27, 2020
miR-141 as potential suppressor of β-catenin in breast cancer
Nairi Abedi1, Samira Mohammadi-Yeganeh2,3, Ameneh Koochaki4,5
1Department of New Sciences, Tehran Medical Branch, Islamic Azad University, Tehran, Iran.
Abstract:
Triple negative breast cancer (TNBC) is well known for its heterogeneous features and lack of targeted therapy. A variety of cell signaling pathways have been linked to the initiation and progression of these tumors where canonical Wnt signaling is one of the main candidate pathways. Considering past literatures on this matter and negative reports regarding mutations in β-catenin gene (CTNNB1), we focus our attention to another level of gene expression control level, microRNAs (miRNAs). For proper miRNA target detection, we utilized bioinformatics as a relatively new and reliable tool for miRNA: mRNA prediction. MDA-MB-231 (invasive breast cancer) and MCF-10A (normal breast) cell lines were chosen as models. We used different bioinformatic tools such as TargetScan, miRanda, etc. For miRNA targeting CTNNB1-3´UTR confirmation, luciferase assay was carried out. miRNA expression was induced in cell lines through viral constructs expressing desired miRNA. Quantitative real-time PCR was performed for the measurement of expression levels of selected miRNA and target gene. miR-141 was selected via expanded search among various bioinformatic tools. miR-141 expression level was downregulated in MDA-MB-231 cell line, and CTNNB1 gene expression was upregulated. After transduction with viral construct, miR-141 expression was elevated in both cell lines, and gene expression was notably decreased. β-Catenin can be considered as one of the main players in these tumors' pathogenesis. Also, it is the potential target of miR-141, in which its downregulation was detected in cell lines, and can be considered as a promising new targeted approach toward TNBC.
Insights
Triple negative breast cancer (TNBC) shows a lack of targeted therapy. This study identifies miR-141 as a potential therapeutic target by showing its downregulation in TNBC cells and its ability to inhibit beta-catenin, a key driver of tumor growth.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Triple negative breast cancer (TNBC) is characterized by its heterogeneity and limited targeted treatment options.
- Canonical Wnt signaling, involving beta-catenin (CTNNB1), is implicated in TNBC initiation and progression.
- While CTNNB1 mutations are infrequent, microRNAs (miRNAs) offer a regulatory mechanism for gene expression control in TNBC.
Purpose of the Study:
- To investigate the role of miRNAs in regulating CTNNB1 gene expression in TNBC.
- To identify specific miRNAs targeting CTNNB1 and evaluate their therapeutic potential.
- To explore novel targeted therapy approaches for TNBC.
Main Methods:
- Utilized bioinformatics tools (TargetScan, miRanda) for miRNA:mRNA target prediction.
- Employed luciferase assays to confirm miRNA targeting of CTNNB1 3'UTR.
- Induced miRNA expression using viral constructs and measured gene expression via quantitative real-time PCR in MDA-MB-231 and MCF-10A cell lines.
Main Results:
- Bioinformatic analysis identified miR-141 as a potential regulator of CTNNB1.
- miR-141 expression was found to be downregulated in MDA-MB-231 (TNBC) cells, correlating with upregulated CTNNB1.
- Restoring miR-141 expression in cell lines led to a significant decrease in CTNNB1 gene expression.
Conclusions:
- Beta-catenin is a key factor in TNBC pathogenesis.
- miR-141 directly targets and downregulates CTNNB1 expression.
- miR-141 represents a promising novel targeted therapeutic strategy for triple negative breast cancer.
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