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Adult Apaf-1-deficient mice exhibit male infertility
N Honarpour1, C Du, J A Richardson
1Department of Molecular Genetics, University of Texas Southwestern Medical Center, Dallas, Texas 75235, USA.
Abstract:
Release of cytochrome c from the mitochondria, and subsequent binding to apoptotic protease-activating factor-1 (Apaf-1), is a key trigger of apoptotic events. A complex composed of Apaf-1, dATP, and cytochrome c activates a series of cytoplasmic proteases called caspases, leading to apoptotic cell death. We have disrupted the Apaf-1 gene in the mouse. Like previous reports on this knockout model, we find that most Apaf-1 mutants die perinatally and frequently exhibit exencephaly and cranioschesis. We additionally find that the neural lesions that develop in the knockout are due to an excess of neural progenitor cells that manifests as early as embryonic day 9.5 in development. In contrast to previous reports on the Apaf-1 knockout mice, we find that 5% of the mutants successfully survive to adulthood. In these survivors, the brain develops normally, but in males, there is degeneration of spermatogonia resulting in the virtual absence of sperm. Thus, cytochrome c-mediated apoptosis is not absolutely required for normal neural development, but is essential for spermatogenesis. These findings strongly suggest that alternative apoptotic pathways work in conjunction with and parallel to Apaf-1 and can modify its effect on programmed cell death.
Insights
Apoptotic protease-activating factor-1 (Apaf-1) is crucial for development, but not essential for neural development. Apaf-1 knockout mice reveal its critical role in male spermatogenesis, suggesting alternative apoptosis pathways.
Area of Science:
- Cell Biology
- Developmental Biology
- Genetics
Background:
- Cytochrome c release from mitochondria and binding to Apaf-1 initiates apoptosis.
- Apaf-1, dATP, and cytochrome c form a complex activating caspases for programmed cell death.
Purpose of the Study:
- To investigate the role of Apaf-1 in mouse development and apoptosis.
- To characterize the phenotype of Apaf-1 knockout mice.
Main Methods:
- Gene disruption of Apaf-1 in mice.
- Phenotypic analysis of Apaf-1 knockout embryos and adults.
Main Results:
- Most Apaf-1 mutants die perinatally with neural defects (exencephaly, cranioschesis) due to excess neural progenitors.
- 5% of mutants survive to adulthood with normal brain development but male sterility due to spermatogonia degeneration.
- Cytochrome c-mediated apoptosis is not essential for neural development but is critical for spermatogenesis.
Conclusions:
- Apaf-1 is essential for normal spermatogenesis but not absolutely required for neural development.
- Alternative apoptotic pathways function in parallel to Apaf-1, influencing programmed cell death outcomes.