Related Experiment Video
Updated: Jun 28, 2025

Hypothalamic Kisspeptin Neurons as a Target for Whole-Cell Patch-Clamp Recordings
Published on: March 17, 2023
Does the miR-105-1-Kisspeptin Axis Promote Ovarian Cell Functions?
Zuzana Fabová1,2, Barbora Loncová3, Abdel Halim Harrath4
1Faculty of Natural Sciences, Constantine the Philosopher University in Nitra, Nitra, Slovakia. zuzka.fabova@gmail.com.
Abstract:
The objective of this study was to elucidate the intricate interplay among miR-105-1, kisspeptin, and their synergistic influence on basic ovarian granulosa cell functions. The effects of miR-105-1 mimics or miR-105-1 inhibitor, kisspeptin (0, 1, and 10 ng/ml), and its combinations with miR-105-1 mimics on porcine granulosa cells were assessed. The expression levels of miR-105-1, viability, proliferation (accumulation of PCNA, cyclin B1, XTT-, and BrdU-positive cells), apoptosis (accumulation of bcl-2, bax, caspase 3, p53, TUNEL-positive cells), proportion of kisspeptin-positive cells, and the release of steroid hormones and IGF-I were analyzed. Transfection of cells with miR-105-1 mimics promoted cell viability and proliferation, the occurrence of kisspeptin, and the release of progesterone and IGF-I; in contrast, miR-105-1 mimics inhibited apoptosis and estradiol output. MiR-105-1 inhibitor had the opposite effect. Kisspeptin amplified the expression of miR-105-1, cell viability, proliferation, steroid hormones, and IGF-I release and reduced apoptosis. Furthermore, the collaborative action of miR-105-1 mimics and kisspeptin revealed a synergistic relationship wherein miR-105-1 mimics predominantly supported the actions of kisspeptin, while kisspeptin exhibited a dual role in modulating the effects of miR-105-1 mimics. These findings not only affirm the pivotal role of kisspeptin in regulating basic ovarian cell functions but also represent the inaugural evidence underscoring the significance of miR-105-1 in this regulatory framework. Additionally, our results show the ability of kisspeptin to promote miR-105-1 expression and the ability of miR-105-1 to promote the occurrence and effects of kisspeptin and, therefore, indicate the existence of the self-stimulating kisspeptin-miR-105-1 axis.
Insights
This study reveals a self-stimulating axis between kisspeptin and microRNA-105-1 (miR-105-1) in ovarian granulosa cells. Kisspeptin boosts miR-105-1 expression, while miR-105-1 enhances kisspeptin
Area of Science:
- Reproductive Biology
- Molecular Endocrinology
- Cellular Physiology
Background:
- Ovarian granulosa cells are crucial for reproductive function.
- The roles of microRNAs and kisspeptin in ovarian physiology are increasingly recognized.
- Understanding their interplay is key to deciphering ovarian cell regulation.
Purpose of the Study:
- To investigate the synergistic effects of miR-105-1 and kisspeptin on porcine granulosa cell functions.
- To elucidate the regulatory relationship between miR-105-1 and kisspeptin.
- To identify the impact on cell viability, proliferation, apoptosis, and hormone release.
Main Methods:
- Porcine granulosa cells were treated with miR-105-1 mimics/inhibitor and varying concentrations of kisspeptin.
- Assessed miR-105-1 expression, cell viability, proliferation markers (PCNA, cyclin B1, XTT, BrdU).
- Analyzed apoptosis markers (bcl-2, bax, caspase 3, p53, TUNEL), kisspeptin levels, and steroid/IGF-I release.
Main Results:
- miR-105-1 mimics enhanced cell viability, proliferation, kisspeptin occurrence, progesterone, and IGF-I release, while inhibiting apoptosis and estradiol.
- Kisspeptin amplified miR-105-1 expression, cell viability, proliferation, steroid/IGF-I release, and reduced apoptosis.
- A synergistic relationship was observed, with miR-105-1 supporting kisspeptin's actions and kisspeptin modulating miR-105-1 effects.
Conclusions:
- Kisspeptin plays a pivotal role in regulating ovarian granulosa cell functions.
- miR-105-1 is significantly involved in ovarian cell regulation, interacting with kisspeptin.
- A novel self-stimulating kisspeptin-miR-105-1 axis exists, highlighting a new regulatory mechanism in ovarian physiology.
Related Concept Videos
Hormonal Control of the Ovarian Cycle
Before puberty, the hypothalamus releases GnRH in a low frequency, low amplitude pulsatile manner. This along with the immature hypothalamic-pituitary-gonadal axis activity, results in low estrogen levels and the absence of a fully functional ovarian cycle. At puberty, GnRH secretion increases in both frequency and...
Oogenesis
Folliculogenesis

