Carbohydrate involvement in sperm-egg fusion in mice

The potential involvement of cell-surface carbohydrates in sperm-egg fusion in mice was evaluated in this study. Zona-free mouse eggs were inseminated in the presence of a variety of simple saccharides to determine if certain sugars would act as competitive inhibitors of sperm-egg fusion. Of the sug...

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Veröffentlicht in:Biology of reproduction 1989-04, Vol.40 (4), p.887-896
Hauptverfasser: BOLDT, J, HOWE, A. M, PARKERSON, J. B, GUNTER, L. E, KUEHN, E
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container_issue 4
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container_title Biology of reproduction
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creator BOLDT, J
HOWE, A. M
PARKERSON, J. B
GUNTER, L. E
KUEHN, E
description The potential involvement of cell-surface carbohydrates in sperm-egg fusion in mice was evaluated in this study. Zona-free mouse eggs were inseminated in the presence of a variety of simple saccharides to determine if certain sugars would act as competitive inhibitors of sperm-egg fusion. Of the sugars tested, L-fucose, galactose, and N-acetylglucosamine caused the greatest inhibition of sperm penetration levels relative to controls. A number of complex saccharides or glycoproteins with differing carbohydrate structures, including fucoidan, ascophyllan, ovomucoid, ovalbumin, fetuin, asialofetuin, and chondroitin sulfate, were also tested as competitive inhibitors of fusion. Only the L-fucose containing saccharides fucoidan and ascophyllan caused significant inhibition of fusion at concentrations of 0.05-1.0 mg/ml and 0.1-5.0 mg/ml, respectively. None of the other compounds tested had any inhibitory effect on fusion when tested at concentrations up to 5 mg/ml. The effect of the inhibitory saccharides was not due to the presence of residual zona material on the surface of the zona-free eggs, since zona-free eggs did not bind an 125I-labeled antibody directed against the ZP3 protein of the mouse zona pellucida. Pretreatment of either sperm or eggs with fucoidan (1 mg/ml) for 60 min prior to insemination caused only small decreases in sperm penetration levels, indicating that fucoidan exerted its major inhibitory effect on fusion only when present during insemination. Treatment of sperm, but not zona-free eggs, with fucosidase prior to insemination caused significant reductions in sperm penetration levels. Other glycosidic enzymes, including glucosidase, galactosidase, and N-acetylglucosaminidase, had no inhibitory effect on the sperm. These data suggest that an L-fucose component of the sperm surface is involved in sperm-egg fusion in the mouse.
doi_str_mv 10.1095/biolreprod40.4.887
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E</creatorcontrib><creatorcontrib>KUEHN, E</creatorcontrib><title>Carbohydrate involvement in sperm-egg fusion in mice</title><title>Biology of reproduction</title><addtitle>Biol Reprod</addtitle><description>The potential involvement of cell-surface carbohydrates in sperm-egg fusion in mice was evaluated in this study. Zona-free mouse eggs were inseminated in the presence of a variety of simple saccharides to determine if certain sugars would act as competitive inhibitors of sperm-egg fusion. Of the sugars tested, L-fucose, galactose, and N-acetylglucosamine caused the greatest inhibition of sperm penetration levels relative to controls. A number of complex saccharides or glycoproteins with differing carbohydrate structures, including fucoidan, ascophyllan, ovomucoid, ovalbumin, fetuin, asialofetuin, and chondroitin sulfate, were also tested as competitive inhibitors of fusion. Only the L-fucose containing saccharides fucoidan and ascophyllan caused significant inhibition of fusion at concentrations of 0.05-1.0 mg/ml and 0.1-5.0 mg/ml, respectively. None of the other compounds tested had any inhibitory effect on fusion when tested at concentrations up to 5 mg/ml. The effect of the inhibitory saccharides was not due to the presence of residual zona material on the surface of the zona-free eggs, since zona-free eggs did not bind an 125I-labeled antibody directed against the ZP3 protein of the mouse zona pellucida. Pretreatment of either sperm or eggs with fucoidan (1 mg/ml) for 60 min prior to insemination caused only small decreases in sperm penetration levels, indicating that fucoidan exerted its major inhibitory effect on fusion only when present during insemination. Treatment of sperm, but not zona-free eggs, with fucosidase prior to insemination caused significant reductions in sperm penetration levels. Other glycosidic enzymes, including glucosidase, galactosidase, and N-acetylglucosaminidase, had no inhibitory effect on the sperm. These data suggest that an L-fucose component of the sperm surface is involved in sperm-egg fusion in the mouse.</description><subject>Acetylglucosamine - pharmacology</subject><subject>alpha-L-Fucosidase - pharmacology</subject><subject>Animals</subject><subject>Binding, Competitive</subject><subject>Biological and medical sciences</subject><subject>Birth control</subject><subject>Carbohydrates - physiology</subject><subject>eggs</subject><subject>Female</subject><subject>Fucose - pharmacology</subject><subject>Fucose - physiology</subject><subject>Galactose - pharmacology</subject><subject>Gynecology. Andrology. Obstetrics</subject><subject>Male</subject><subject>Medical sciences</subject><subject>Mice</subject><subject>Ovum - drug effects</subject><subject>Ovum - physiology</subject><subject>Polysaccharides - pharmacology</subject><subject>Sperm-Ovum Interactions - drug effects</subject><subject>Spermatozoa - drug effects</subject><subject>Spermatozoa - physiology</subject><subject>Sterility. 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Obstetrics</topic><topic>Male</topic><topic>Medical sciences</topic><topic>Mice</topic><topic>Ovum - drug effects</topic><topic>Ovum - physiology</topic><topic>Polysaccharides - pharmacology</topic><topic>Sperm-Ovum Interactions - drug effects</topic><topic>Spermatozoa - drug effects</topic><topic>Spermatozoa - physiology</topic><topic>Sterility. Assisted procreation</topic><topic>Zona Pellucida - physiology</topic><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>BOLDT, J</creatorcontrib><creatorcontrib>HOWE, A. M</creatorcontrib><creatorcontrib>PARKERSON, J. B</creatorcontrib><creatorcontrib>GUNTER, L. 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E</au><au>KUEHN, E</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Carbohydrate involvement in sperm-egg fusion in mice</atitle><jtitle>Biology of reproduction</jtitle><addtitle>Biol Reprod</addtitle><date>1989-04-01</date><risdate>1989</risdate><volume>40</volume><issue>4</issue><spage>887</spage><epage>896</epage><pages>887-896</pages><issn>0006-3363</issn><eissn>1529-7268</eissn><coden>BIREBV</coden><abstract>The potential involvement of cell-surface carbohydrates in sperm-egg fusion in mice was evaluated in this study. Zona-free mouse eggs were inseminated in the presence of a variety of simple saccharides to determine if certain sugars would act as competitive inhibitors of sperm-egg fusion. Of the sugars tested, L-fucose, galactose, and N-acetylglucosamine caused the greatest inhibition of sperm penetration levels relative to controls. A number of complex saccharides or glycoproteins with differing carbohydrate structures, including fucoidan, ascophyllan, ovomucoid, ovalbumin, fetuin, asialofetuin, and chondroitin sulfate, were also tested as competitive inhibitors of fusion. Only the L-fucose containing saccharides fucoidan and ascophyllan caused significant inhibition of fusion at concentrations of 0.05-1.0 mg/ml and 0.1-5.0 mg/ml, respectively. None of the other compounds tested had any inhibitory effect on fusion when tested at concentrations up to 5 mg/ml. The effect of the inhibitory saccharides was not due to the presence of residual zona material on the surface of the zona-free eggs, since zona-free eggs did not bind an 125I-labeled antibody directed against the ZP3 protein of the mouse zona pellucida. Pretreatment of either sperm or eggs with fucoidan (1 mg/ml) for 60 min prior to insemination caused only small decreases in sperm penetration levels, indicating that fucoidan exerted its major inhibitory effect on fusion only when present during insemination. Treatment of sperm, but not zona-free eggs, with fucosidase prior to insemination caused significant reductions in sperm penetration levels. Other glycosidic enzymes, including glucosidase, galactosidase, and N-acetylglucosaminidase, had no inhibitory effect on the sperm. These data suggest that an L-fucose component of the sperm surface is involved in sperm-egg fusion in the mouse.</abstract><cop>Madison, WI</cop><pub>Society for the Study of Reproduction</pub><pmid>2752078</pmid><doi>10.1095/biolreprod40.4.887</doi><tpages>10</tpages></addata></record>
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subjects Acetylglucosamine - pharmacology
alpha-L-Fucosidase - pharmacology
Animals
Binding, Competitive
Biological and medical sciences
Birth control
Carbohydrates - physiology
eggs
Female
Fucose - pharmacology
Fucose - physiology
Galactose - pharmacology
Gynecology. Andrology. Obstetrics
Male
Medical sciences
Mice
Ovum - drug effects
Ovum - physiology
Polysaccharides - pharmacology
Sperm-Ovum Interactions - drug effects
Spermatozoa - drug effects
Spermatozoa - physiology
Sterility. Assisted procreation
Zona Pellucida - physiology
title Carbohydrate involvement in sperm-egg fusion in mice
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