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.

Endocrinology
|December 17, 2015
PubMed

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.