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Updated: Jun 25, 2026

Cell-Specific Paired Interrogation of the Mouse Ovarian Epigenome and Transcriptome
Published on: February 24, 2023
Identification of microRNAs controlling human ovarian cell steroidogenesis via a genome-scale screen
Alexander V Sirotkin1, Dmitriy Ovcharenko, Roland Grossmann
1Research Institute of Animal Production, Slovak Centre of Agricultural Studies, Nitra, Slovakia. sirotkin@scpv.sk
Abstract:
The aim of our studies was to identify miRNAs affecting the release of the major ovarian steroid hormones progestagen, androgen and estrogen by human ovarian cells. The effect of transfection of cultured primary ovarian granulosa cells with 80 different gene constructs encoding human pre-miRNAs on release of progesterone, testosterone and estradiol was evaluated by enzyme immunoassay. In addition, effect of two selected antisense constructs blocking corresponding miRNA on progesterone release was tested. Efficiency of transfection (incorporation transfection reagent) and silencing of marker substances (GAPDH mRNA, GAPDH and CREB-1) were validated by fluorescent microscopy, real-time reverse transcription-PCR analysis and immunocytochemical analysis. Thirty-six out of 80 tested miRNA constructs resulted in inhibition of progesterone release in granulosa cells, and 10 miRNAs promoted progesterone release. Transfected of cells with antisense constructs to two selected miRNAs blocking progesterone release induced increase in progesterone output. Fifty-seven miRNAs tested inhibited testosterone release, and only one miRNA enhanced testosterone output. Fifty-one miRNAs suppressed estradiol release, while none of the miRNAs tested stimulated it. This is the first demonstration that miRNAs can control reproductive functions resulting in enhanced or inhibited release of ovarian progestagen, androgen and estrogen. We hypothesize that such miRNA-mediated effects could be potentially used for regulation of reproductive processes, including fertility, and for treatment of reproductive and other steroid-dependent disorders.
Insights
MicroRNAs (miRNAs) significantly influence the release of key ovarian hormones, including progesterone, androgens, and estrogens. This discovery opens new avenues for regulating reproductive functions and treating hormone-related disorders.
Area of Science:
- Endocrinology
- Molecular Biology
- Reproductive Science
Background:
- MicroRNAs (miRNAs) are crucial regulators of gene expression.
- Ovarian steroid hormone production is vital for reproductive health.
- The specific role of miRNAs in regulating ovarian steroidogenesis remains largely unexplored.
Purpose of the Study:
- To identify specific miRNAs that modulate the release of progesterone, androgens, and estrogens from human ovarian granulosa cells.
- To investigate the potential of miRNAs as therapeutic targets for reproductive and steroid-dependent disorders.
Main Methods:
- Primary human ovarian granulosa cells were transfected with 80 pre-miRNA constructs.
- Hormone levels (progesterone, testosterone, estradiol) were measured using enzyme immunoassays.
- miRNA inhibition was validated using antisense constructs and molecular techniques (RT-PCR, immunocytochemistry).
Main Results:
- 36 miRNA constructs inhibited progesterone release; 10 promoted it.
- 57 miRNA constructs inhibited testosterone release; 1 enhanced it.
- 51 miRNA constructs suppressed estradiol release; none stimulated it.
Conclusions:
- This study provides the first evidence that miRNAs directly control the release of major ovarian steroid hormones.
- miRNA-mediated regulation of ovarian steroidogenesis offers potential for novel reproductive therapies.
- Targeting miRNAs could offer new strategies for managing fertility and steroid-dependent conditions.
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