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Updated: Aug 13, 2025

Using Mouse Oocytes to Assess Human Gene Function During Meiosis I
Published on: April 10, 2018
Regulation of Oocyte Apoptosis: A View from Gene Knockout Mice
Sandeep Kaur1, Manabu Kurokawa1
1Department of Biological Sciences, Kent State University, Room 108, Kent, OH 44242, USA.
Abstract:
Apoptosis is a form of programmed cell death that plays a critical role in cellular homeostasis and development, including in the ovarian reserve. In humans, hundreds of thousands of oocytes are produced in the fetal ovary. However, the majority die by apoptosis before birth. After puberty, primordial follicles develop into mature follicles. While only a large dominant follicle is selected to ovulate, smaller ones undergo apoptosis. Despite numerous studies, the mechanism of oocyte death at the molecular level remains elusive. Over the last two and a half decades, many knockout mouse models disrupting key genes in the apoptosis pathway have been generated. In this review, we highlight some of the phenotypes and discuss distinct and overlapping roles of the apoptosis regulators in oocyte death and survival. We also review how the transcription factor p63 and its family members may trigger oocyte apoptosis in response to DNA damage.
Insights
Programmed cell death (apoptosis) is vital for ovarian reserve maintenance. This review examines apoptosis regulators and the transcription factor p63
Area of Science:
- Reproductive biology
- Cellular biology
- Developmental biology
Background:
- Apoptosis, or programmed cell death, is crucial for maintaining cellular balance and development, particularly in the human ovarian reserve.
- Most oocytes undergo apoptosis before birth, and smaller developing follicles also die via this process after puberty.
- The precise molecular mechanisms driving oocyte apoptosis remain incompletely understood.
Purpose of the Study:
- To review the distinct and overlapping roles of apoptosis regulators in oocyte survival and death.
- To discuss findings from knockout mouse models that have elucidated apoptosis pathways.
- To explore the potential role of the transcription factor p63 in initiating oocyte apoptosis following DNA damage.
Main Methods:
- Literature review of studies on apoptosis in oocytes.
- Analysis of knockout mouse models targeting key genes in apoptosis pathways.
- Examination of research on the p63 transcription factor family in relation to DNA damage and apoptosis.
Main Results:
- Various apoptosis regulators exhibit distinct and overlapping functions in controlling oocyte fate.
- Knockout mouse models have provided significant insights into the genetic regulation of oocyte apoptosis.
- Evidence suggests that the p63 transcription factor family may induce oocyte apoptosis in response to DNA damage.
Conclusions:
- Understanding apoptosis regulators is key to comprehending oocyte survival and death.
- The p63 pathway represents a potential mechanism for oocyte loss, particularly after DNA damage.
- Further research into these molecular pathways is essential for reproductive health.
Related Concept Videos
In-vitro Mutagenesis
Oogenesis
Apoptosis

