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Distinct mechanisms underlie sperm-induced and protease-induced oolemma block to sperm penetration
Sebastian Komorowski1, Katarzyna Szczepanska, Marek Maleszewski
1Department of Embryology, Institute of Zoology, University of Warsaw, Poland. komorowski@biol.uw.edu.pl
Abstract:
Fertilization of a mouse egg results in modification of the cytoplasmatic membrane (oolemma) which makes fusion with additional sperm impossible. CD9 is a transmembrane protein reported to be responsible for gamete fusion. Since the molecular mechanism of zygote membrane modification after fertilization remains unknown, we were interested to check whether lack of CD9 is the reason for non-penetrability of zona-free zygotes. We wanted also to determine the effect of different methods of zona pellucida removal on the presence of CD9 on the surface of unfertilized eggs and their ability to be fertilized afterwards. We demonstrated that CD9 is present on the surface of both zygotes and parthenogenotes. We showed also that the treatment of eggs with pronase completely removes CD9 from the membrane of eggs making them infertile. Eggs treated with chymotrypsin and acid Tyrode still posses CD9 on their surface and remain fertile. The results of our experiments indicate that modification of the zygote oolemma does not involve a lack of CD9. We cannot exclude however, that the amount of CD9 decreases after fertilization. In addition, our studies indicate that the previously reported infertility of eggs treated with different proteases may result from the decrease or removal of CD9 and probably other proteins responsible for gamete fusion from the surface of eggs.
Insights
Fertilization prevents further sperm entry by modifying the egg membrane, but CD9 protein remains present. Egg treatments that remove CD9 cause infertility, suggesting its crucial role in fertilization.
Area of Science:
- Reproductive Biology
- Cell Biology
- Molecular Biology
Background:
- Fertilization triggers egg membrane changes, preventing polyspermy.
- The transmembrane protein CD9 is implicated in gamete fusion.
- The molecular basis of post-fertilization oolemma modification is unclear.
Purpose of the Study:
- Investigate if CD9 absence causes zona-free zygote non-penetrability.
- Determine how zona pellucida removal affects surface CD9 and subsequent fertility.
Main Methods:
- Examined CD9 presence on mouse zygotes and parthenogenotes.
- Treated unfertilized eggs with pronase, chymotrypsin, and acid Tyrode.
- Assessed the impact of treatments on CD9 expression and egg fertility.
Main Results:
- CD9 is present on both zygotes and parthenogenotes.
- Pronase treatment removed CD9 and rendered eggs infertile.
- Chymotrypsin and acid Tyrode treatments preserved CD9 and fertility.
Conclusions:
- Oolemma modification post-fertilization does not involve CD9 absence.
- CD9 levels might decrease after fertilization.
- Protease-induced infertility may stem from CD9 and other fusion protein removal.