Related Experiment Video
Updated: Mar 28, 2026

Whole Ovary Immunofluorescence, Clearing, and Multiphoton Microscopy for Quantitative 3D Analysis of the Developing Ovarian Reserve in Mouse
Published on: September 3, 2021
Conditional Deletion of Bmal1 in Ovarian Theca Cells Disrupts Ovulation in Female Mice
Amanda L Mereness1, Zachary C Murphy1, Andrew C Forrestel1
1Department of Medicine (A.L.M., Z.C.M., A.C.F., S.B., M.T.S.), Division of Endocrinology, Diabetes and Metabolism, University of Rochester School of Medicine and Dentistry, Rochester, New York 14642; Department of Comparative Biosciences (C.K.), College of Veterinary Medicine, University of Illinois Urbana-Champaign, Urbana, Illinois 61802; and Department of Molecular and Cellular Biology (J.S.R.), Baylor College of Medicine, Houston, Texas 77030.
Abstract:
Rhythmic events in female reproductive physiology, including ovulation, are tightly controlled by the circadian timing system. The molecular clock, a feedback loop oscillator of clock gene transcription factors, dictates rhythms of gene expression in the hypothalamo-pituitary-ovarian axis. Circadian disruption due to environmental factors (eg, shift work) or genetic manipulation of the clock has negative impacts on fertility. Although the central pacemaker in the suprachiasmatic nucleus classically regulates the timing of ovulation, we have shown that this rhythm also depends on phasic sensitivity to LH. We hypothesized that this rhythm relies on clock function in a specific cellular compartment of the ovarian follicle. To test this hypothesis we generated mice with deletion of the Bmal1 locus in ovarian granulosa cells (GCs) (Granulosa Cell Bmal1 KO; GCKO) or theca cells (TCs) (Theca Cell Bmal1 KO; TCKO). Reproductive cycles, preovulatory LH secretion, ovarian morphology and behavior were not grossly altered in GCKO or TCKO mice. We detected phasic sensitivity to LH in wild-type littermate control (LC) and GCKO mice but not TCKO mice. This decline in sensitivity to LH is coincident with impaired fertility and altered patterns of LH receptor (Lhcgr) mRNA abundance in the ovary of TCKO mice. These data suggest that the TC is a pacemaker that contributes to the timing and amplitude of ovulation by modulating phasic sensitivity to LH. The TC clock may play a critical role in circadian disruption-mediated reproductive pathology and could be a target for chronobiotic management of infertility due to environmental circadian disruption and/or hormone-dependent reprogramming in women.
Insights
The ovarian theca cell clock, not granulosa cells, is crucial for regulating ovulation timing and fertility in female reproduction. Disruption of this clock impairs fertility by altering sensitivity to luteinizing hormone (LH).
Area of Science:
- Chronobiology
- Reproductive Endocrinology
- Molecular Biology
Background:
- Female reproductive events, including ovulation, are regulated by the body's internal circadian timing system.
- The molecular clock, driven by clock genes, controls gene expression rhythms in the hypothalamo-pituitary-ovarian axis.
- Disruptions to circadian rhythms negatively impact fertility.
Purpose of the Study:
- To investigate the role of the molecular clock within specific ovarian cell types (granulosa and theca cells) in regulating ovulation.
- To test the hypothesis that ovarian follicle cell clock function is essential for the rhythmicity of ovulation.
Main Methods:
- Generated genetically modified mice lacking the Bmal1 gene in ovarian granulosa cells (GCKO) or theca cells (TCKO).
- Assessed reproductive cycles, preovulatory LH secretion, ovarian morphology, and fertility in GCKO, TCKO, and control mice.
- Evaluated phasic sensitivity to LH and LH receptor (Lhcgr) mRNA levels.
Main Results:
- GCKO and TCKO mice showed no gross alterations in reproductive cycles or ovarian morphology.
- Phasic sensitivity to LH was present in control and GCKO mice but absent in TCKO mice.
- TCKO mice exhibited impaired fertility and altered Lhcgr mRNA abundance, correlating with the loss of LH sensitivity.
Conclusions:
- Theca cells, not granulosa cells, function as a critical ovarian pacemaker regulating ovulation timing and amplitude.
- The theca cell clock modulates phasic sensitivity to LH, impacting fertility.
- The theca cell clock is a potential target for managing infertility linked to circadian disruption.
More Related Videos
05:32Author Spotlight: Investigating the Relationship Between FSH and Pathophysiological Changes in Perimenopausal Women - Insights from a Mouse Model
Published on: August 11, 2023
08:07Establishment of an Experimental Mouse Model of Endometrioma to Study its Related Infertility
Published on: April 5, 2024
Related Concept Videos
Oogenesis
Oogenesis
Each primary oocyte is surrounded by a layer of pre-granulosa cells, forming what is...