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Updated: Jun 2, 2026

Evaluation of Mammary Gland Development and Function in Mouse Models
Published on: July 21, 2011
MiR-126-3p regulates progesterone receptors and involves development and lactation of mouse mammary gland
Wei Cui1, Qingzhang Li, Li Feng
1Key Laboratory of Dairy Science of Education Ministry, Northeast Agricultural University, Harbin, 150030, People's Republic of China. cvqiancangnan@163.com
Abstract:
MicroRNAs (miRNAs) are small (18-22 nucleotide) non-coding, endogenous regulatory RNA molecules, and they regulate gene expression at the post-transcriptional level through binding to their target mRNAs by base-pairing and subsequently inducing either translational repression or mRNA destabilization by plants, animals, and some viruses. In this study, combining microarray techniques with qRT-PCR, we found that miR-126-3p expression showed significant difference in the mouse mammary cycle during pregnancy, particularly on transition from pregnancy to lactation. Bioinformatics were used to predict target gene of miR-126-3p, and luciferase activity assay to test it, it showed that the progesterone receptor (PGR) 3'UTR is directly targeted by miR-126-3p. In this study, mouse mammary epithelial cells as cell model in vitro were used to study the function of miR-126-3p. Using gene silencing and over-expression for miR-126-3p, the expression of PGR protein and the secretion of casein were detected by western blotting and HPLC, respectively. To determine whether miR-126-3p can affect mouse mammary epithelial cells viability, cells were analyzed by CASY-YY. In conclusion, PGR gene confirmed miR-126-3p target genes through luciferase activity and western blotting. And miR-126-3p could also inhibit proliferation of mouse mammary epithelial cells (P < 0.01) and expression of β-casein (P < 0.01), and down-regulate PGR protein (P < 0.05). Our results suggested that miR-126-3p inhibited expression of PGR protein level as well as the proliferation of mammary epithelial cells, therefore miR-126-3p could play an important role in the process of mammary gland development.
Insights
MicroRNAs (miRNAs) regulate gene expression. This study shows miR-126-3p targets progesterone receptor (PGR) and inhibits mammary epithelial cell proliferation and beta-casein expression during mammary gland development.
Area of Science:
- Molecular Biology
- Genetics
- Biochemistry
Background:
- MicroRNAs (miRNAs) are endogenous regulatory RNA molecules controlling gene expression post-transcriptionally.
- miRNAs play crucial roles in various biological processes, including development and disease.
- Understanding miRNA function in mammary gland development is essential for reproductive biology.
Purpose of the Study:
- To investigate the role of miR-126-3p in mouse mammary gland development.
- To identify the target genes of miR-126-3p in mammary epithelial cells.
- To elucidate the functional impact of miR-126-3p on cell proliferation and protein expression.
Main Methods:
- Microarray techniques and qRT-PCR for miRNA expression analysis.
- Bioinformatics for target gene prediction and luciferase activity assay for validation.
- In vitro studies using mouse mammary epithelial cells with gene silencing and overexpression.
Main Results:
- miR-126-3p expression significantly differed during the mouse mammary cycle, especially during the transition from pregnancy to lactation.
- Progesterone receptor (PGR) 3'UTR was identified as a direct target of miR-126-3p.
- miR-126-3p inhibited mouse mammary epithelial cell proliferation (P < 0.01) and beta-casein expression (P < 0.01), and downregulated PGR protein (P < 0.05).
Conclusions:
- miR-126-3p directly targets the progesterone receptor (PGR) gene.
- miR-126-3p negatively regulates mammary epithelial cell proliferation and beta-casein expression.
- miR-126-3p plays a significant role in mouse mammary gland development by modulating PGR protein levels.
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