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Updated: Jul 18, 2025

Profiling of Estrogen-regulated MicroRNAs in Breast Cancer Cells
Published on: February 21, 2014
MicroRNA-143-5p Suppresses ER-Positive Breast Cancer Development by Targeting Oncogenic HMGA2
Behnaz Mansoori1, Shiva Kiani2, Alireza Ashrafi Mezajin3
1Immunology Research Center, Tabriz University of Medical Sciences, Tabriz, East Azerbaijan, Iran; Department of Molecular Genetics, Faculty of Biological Sciences, Tarbiat Modares University, Tehran, Iran.
Background:
About 70%-80% of breast cancers (BCs) express estrogen receptors (ER-positive). MicroRNAs (miRNAs) are a group of small endogenous noncoding RNAs that play a critical regulatory role in cancer development and progression, including in BC. MiRNA deficiency promotes the development of BCs. MiR-143-5p is one of the most commonly dysregulated miRNAs in BC but its role as a tumor suppressor remains unclear.
Materials And Methods:
MiR-143-3p and -5p expression in breast tissue was analyzed using TCGA and StarBase databases. Expression in BC subclasses and survival analyses were conducted. Clinical samples were collected, cell cultures created, and gene expression assays performed following previous studies. Protein expression, luciferase reporter, wound healing, DAPI staining, cell cycle, colony formation, spheroid, CD44 FACS, and proliferation assays were conducted following various protocols.
Results:
Here, we find that both miR-143-3p and miR-143-5p levels are considerably lower in BC tissue compared to normal breast tissue and low miR-143 expression predicts poor prognosis in ER+ BC patients. In-depth analyses identified 3 miR-143-5p binding sites in the 3' untranslated region (UTR) of the DNA binding protein High Mobility Group AT-Hook 2 (HMGA2). Luciferase reporter assays using wild-type and mutant HMGA2 3'UTR sequences and Western blot analyses demonstrated that HMGA2 is a direct and bona fide miR-143-5p target in BC cells. In addition, we show that restoration of miR-143-5p expression suppresses metastasis-related features of ER+ BC cells, including reduced tumor cell migration, increased E-cadherin expression, and decreased vimentin and N-cadherin expression. Furthermore, miR-143-5p reduces cell proliferation, cell cycle entry, and stemness, while promoting apoptosis moderately. Finally, patient sample pathway analyses demonstrated that these mechanisms are also active in BC.
Conclusions:
Altogether, our findings shed new light on miR-143-5p's anticancer biological functions in BC progression by directly targeting HMGA2. This suggests that restoration of miR-143-5p could be a promising new therapeutic approach for the treatment of ER+ BC.
Insights
Low miR-143-5p expression is linked to poor prognosis in estrogen receptor-positive breast cancer (ER+ BC). Restoring miR-143-5p suppresses BC progression by targeting HMGA2, suggesting a potential therapeutic strategy for ER+ BC.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Estrogen receptor-positive breast cancer (ER+ BC) accounts for 70-80% of breast cancers.
- MicroRNAs (miRNAs) are critical regulators of cancer development, and their deficiency can promote BC.
- The tumor suppressor role of miR-143-5p, a frequently dysregulated miRNA in BC, remains unclear.
Purpose of the Study:
- To investigate the role of miR-143-3p and miR-143-5p in ER+ BC.
- To identify the direct targets and molecular mechanisms of miR-143-5p in BC progression.
- To evaluate the therapeutic potential of miR-143-5p restoration in ER+ BC.
Main Methods:
- Analysis of miR-143-3p and -5p expression in breast cancer tissues using TCGA and StarBase databases.
- In vitro assays including luciferase reporter assays, Western blot, wound healing, cell cycle, colony formation, and apoptosis assays.
- Analysis of clinical samples and patient data for survival and pathway analyses.
Main Results:
- miR-143-3p and -5p expression is significantly lower in BC tissues compared to normal tissues.
- Low miR-143 expression predicts poor prognosis in ER+ BC patients.
- miR-143-5p directly targets HMGA2, suppressing BC cell migration, proliferation, stemness, and promoting apoptosis.
Conclusions:
- miR-143-5p functions as a tumor suppressor in ER+ BC by directly targeting HMGA2.
- Restoration of miR-143-5p exhibits anticancer effects, suppressing metastasis and promoting apoptosis.
- miR-143-5p represents a promising therapeutic target for ER+ BC treatment.
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