GSK-3β protects fetal oocytes from premature death via modulating TAp63 expression in mice

Jia Wen1, Hao Yan1, Meina He1

  • 1State Key Laboratory of Agrobiotechnology, College of Biological Sciences, China Agricultural University, Beijing, 100193, China.

BMC Biology
|March 15, 2019
PubMed
Abstract

Insights

Glycogen synthase kinase-3 beta (GSK-3β) is crucial for maintaining fetal oocytes and preserving the primordial follicle pool in mice. Inhibiting GSK-3β triggers oocyte apoptosis and impairs DNA repair, impacting female fertility.

Area of Science:

  • Reproductive Biology
  • Developmental Biology
  • Molecular Genetics

Background:

  • Female reproductive lifespan is limited by the primordial follicle pool size.
  • Over two-thirds of fetal oocytes undergo programmed cell death during early folliculogenesis.
  • Mechanisms governing fetal oocyte attrition are not well understood.

Purpose of the Study:

  • To investigate the role of glycogen synthase kinase-3 beta (GSK-3β) in fetal oocyte maintenance.
  • To elucidate the molecular mechanisms underlying fetal oocyte attrition.

Main Methods:

  • In vitro inhibition of GSK-3β activity.
  • In vivo conditional deletion of Gsk-3β in the germline.
  • Assessment of oocyte apoptosis, meiotic progression, and DNA double-strand break (DSB) repair.

Main Results:

  • GSK-3β inhibition led to significant fetal oocyte loss via apoptosis.
  • Reduced GSK-3β activity impaired meiotic progression and DNA DSB repair.
  • Aberrant nuclear translocation of β-catenin caused abnormal TAp63 expression and oocyte attrition.

Conclusions:

  • GSK-3β is essential for fetal oocyte survival and folliculogenesis.
  • GSK-3β regulates oocyte maintenance by fine-tuning β-catenin translocation and TAp63 expression.
  • The study highlights the role of DNA damage checkpoint signaling in fetal oocyte protection and female fertility.

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