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Published on: February 6, 2018
Evidence for the involvement of testicular protein CRISP2 in mouse sperm-egg fusion
Dolores Busso1, Nadia M Goldweic, Masaru Hayashi
1Instituto de Biología y Medicina Experimental, 1428 Buenos Aires, Argentina.
Abstract:
CRISP2, originally known as Tpx-1, is a cysteine-rich secretory protein specifically expressed in male haploid germ cells. Although likely to be involved in gamete interaction, evidence for a functional role of CRISP2 in fertilization still remains poor. In the present study, we used a mouse model to examine the subcellular localization of CRISP2 in sperm and its involvement in the different stages of fertilization. Results from indirect immunofluorescence and protein extraction experiments indicated that mouse CRISP2 is an intraacrosomal component that remains associated with sperm after capacitation and the acrosome reaction (AR). In vitro fertilization assays using zona pellucida-intact mouse eggs showed that an antibody against the protein significantly decreased the percentage of penetrated eggs, with a coincident accumulation of perivitelline sperm. The failure to inhibit zona pellucida penetration excludes a detrimental effect of the antibody on sperm motility or the AR, supporting a specific participation of CRISP2 at the sperm-egg fusion step. In agreement with this evidence, recombinant mouse CRISP2 (recCRISP2) specifically bound to the fusogenic area of mouse eggs, as previously reported for rat CRISP1, an epididymal protein involved in gamete fusion. In vitro competition investigations showed that incubation of mouse zona-free eggs with a fixed concentration of recCRISP2 and increasing amounts of rat CRISP1 reduced the binding of recCRISP2 to the egg, suggesting that the proteins interact with common complementary sites on the egg surface. Our findings indicate that testicular CRISP2, as observed for epididymal CRISP1, is involved in sperm-egg fusion through its binding to complementary sites on the egg surface, supporting the idea of functional cooperation between homologous molecules to ensure the success of fertilization.
Insights
Cysteine-rich secretory protein 2 (CRISP2) is crucial for sperm-egg fusion during fertilization. This study shows CRISP2 binds to egg surfaces, facilitating successful fertilization by interacting with complementary sites.
Area of Science:
- Reproductive Biology
- Molecular Biology
- Cell Biology
Background:
- Cysteine-rich secretory protein 2 (CRISP2) is a protein found in male germ cells.
- Its precise role in fertilization, particularly in sperm-egg fusion, is not well understood.
Purpose of the Study:
- To investigate the subcellular localization and function of CRISP2 in mouse fertilization.
- To determine if CRISP2 plays a role in the sperm-egg fusion process.
Main Methods:
- Indirect immunofluorescence and protein extraction to determine CRISP2 localization in sperm.
- In vitro fertilization assays using antibodies against CRISP2.
- Binding assays with recombinant CRISP2 (recCRISP2) and rat CRISP1 on mouse eggs.
Main Results:
- CRISP2 was found to be an intraacrosomal component of sperm, remaining after capacitation and acrosome reaction.
- Antibodies against CRISP2 significantly reduced egg penetration rates in vitro.
- Recombinant CRISP2 bound to the fusogenic region of eggs, and competed with rat CRISP1 for binding sites, indicating shared interaction sites.
Conclusions:
- Testicular CRISP2 is involved in sperm-egg fusion, binding to specific sites on the egg surface.
- CRISP2 likely cooperates with homologous molecules like CRISP1 to ensure successful fertilization.
- These findings highlight CRISP2 as a key player in the final stages of fertilization.
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