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A Seminiferous Tubule Squash Technique for the Cytological Analysis of Spermatogenesis Using the Mouse Model
Published on: February 6, 2018
Polypeptide encoded by mouse ZP3 exon-7 is necessary and sufficient for binding of mouse sperm in vitro
Zev Williams1, Eveline S Litscher, Luca Jovine
1Brookdale Department of Molecular, Cell and Developmental Biology, Mount Sinai School of Medicine, New York, New York, USA.
Abstract:
Fertilization in mice is initiated by species-specific binding of sperm to mZP3, one of three mouse zona pellucida (ZP) glycoproteins. At nanomolar concentrations, purified egg mZP3 binds to acrosome-intact sperm heads and inhibits binding of sperm to eggs in vitro. Although several reports suggest that sperm recognize and bind to a region of mZP3 encoded by mZP3 exon-7 (so-called, sperm combining-site), this issue remains controversial. Here, exon-swapping and an IgG(Fc) fusion construct were used to further evaluate whether mZP3 exon-7 is essential for binding of sperm to mZP3. In one set of experiments, hamster ZP3 (hZP3) exon-6, -7, and -8 were individually replaced with the corresponding exon of mZP3. Stably transfected embryonal carcinoma (EC) cell lines carrying the recombinant genes were produced and secreted recombinant glycoprotein was purified and assayed for the ability to inhibit binding of sperm to eggs. While EC-hZP3, a recombinant form of hZP3 made by EC cells, is unable to inhibit binding of mouse sperm to eggs in vitro, the results suggest that substitution of mZP3 exon-7 for hZP3 exon-7, but not mZP3 exon-6 or -8, can impart inhibitory activity to EC-hZP3. In this context, a fusion construct consisting of human IgG(Fc) and mZP3 exon-7 and -8 was prepared, an EC cell line carrying the recombinant gene was produced, and secreted chimeric glycoprotein, called EC-huIgG(Fc)/mZP3(7), was purified and assayed. It was found that the chimeric glycoprotein binds specifically to plasma membrane overlying sperm heads to a similar extent as egg mZP3 and, at nanomolar concentrations, inhibits binding of mouse sperm to eggs in vitro. Collectively, these observations provide new evidence that sperm recognize and bind to a region of mZP3 polypeptide immediately downstream of its ZP domain that is encoded by mZP3 exon-7. The implications of these findings are discussed.
Insights
Mouse sperm bind to the zona pellucida glycoprotein mZP3, initiating fertilization. Research confirms mZP3 exon-7 is crucial for sperm binding to mZP3, essential for fertilization.
Area of Science:
- Reproductive Biology
- Molecular Biology
- Glycoprotein Function
Background:
- Fertilization involves species-specific sperm binding to the mouse zona pellucida glycoprotein mZP3.
- The exact region of mZP3 responsible for sperm binding, particularly exon-7, remains a subject of debate.
Purpose of the Study:
- To investigate the essential role of mZP3 exon-7 in sperm binding to mZP3.
- To determine if mZP3 exon-7 is the primary site for sperm recognition during fertilization.
Main Methods:
- Exon-swapping experiments were conducted using hamster ZP3 (hZP3) and mouse ZP3 (mZP3) exons.
- Recombinant glycoproteins were expressed in embryonal carcinoma (EC) cell lines and purified.
- An IgG(Fc) fusion construct of mZP3 exon-7 and -8 was created and tested.
Main Results:
- Substitution of mZP3 exon-7 into hZP3 conferred inhibitory activity on sperm-egg binding.
- A chimeric glycoprotein (EC-huIgG(Fc)/mZP3(7)) specifically bound to sperm heads.
- This chimeric glycoprotein inhibited sperm-egg binding in vitro at nanomolar concentrations.
Conclusions:
- The findings provide strong evidence that mZP3 exon-7 encodes a critical region for sperm binding.
- Sperm recognize a specific polypeptide region of mZP3 immediately downstream of its ZP domain.
- This study clarifies the molecular basis of sperm-mZP3 interaction in mouse fertilization.

