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1.
Biol. Res ; 44(2): 135-138, 2011. ilus
Article in English | LILACS | ID: lil-602968

ABSTRACT

Epididymal protein CRISPI is a member of the CRISP (Cysteine-RIch Secretory proteins) family and is involved in sperm-egg fusion through its interaction with complementary sites on the egg surface. Results from our laboratory have shown that this binding ability resides in a 12-amino-acid region corresponding to a highly conserved motif of the CRISP family, named Signature 2 (S2). In addition to this, our results revealed that CRISP1 could also be involved in the previous step of sperm binding to the zona pellucida, identifying a novel role for this protein in fertilization. As another approach to elucidate the participation of CRISP1 in fertilization, a mouse line containing a targeted disruption of CRISP1 was generated. Although CRISP1-deficient mice exhibited normal fertility, CRISP1-defficient sperm presented a decreased level of protein tyrosine phosphorylation during capacitation, and an impaired ability to fertilize both zona-intact and zona-free eggs in vitro, confirming the proposed roles for the protein in fertilization. Evidence obtained in our laboratory indicated that testicular CRISP2 would also be involved in sperm-egg fusion. Competition assays between CRISP1 and CRISP2, as well as the comparison of their corresponding S2 regions, suggest that both proteins bind to common complementary sites in the egg. Together, these results suggest a functional cooperation between CRISP1 and CRISP2 to ensure the success of fertilization.


Subject(s)
Animals , Female , Humans , Male , Mice , Glycoproteins/physiology , Membrane Glycoproteins/physiology , Sperm-Ovum Interactions/physiology , Zona Pellucida/metabolism
2.
Biol. Res ; 44(2): 145-150, 2011. ilus
Article in English | LILACS | ID: lil-602970

ABSTRACT

The interaction between acrosome-reacted sperm and zona pellucida proteins is not yet fully understood. Serine protease acrosin and its zymogen proacrosin have been proposed to fulfill this function due to their capacity to bind zona pellucida glycoproteins. However, the molecular mechanism underlying this interaction has been merely speculative. Here we show that fucoidan (a sulfated polysaccharide) and solubilized zona pellucida glycoproteins, but not soybean trypsin inhibitor, are able to detach bound spermatozoa, which suggests that live sperm binds to the zona pellucida in a non-enzymatical way. Interestingly, mild proteolytic digestion with acrosin or trypsin does not modify the structure of the zona pellucida, but rather results in fewer spermatozoa binding to the zona. These results agree with a model where the active site of acrosin digests the zona pellucida and binds through the polysulfate-binding domain through a three-dimensional zona structure rather than a single ligand.


Subject(s)
Animals , Cricetinae , Male , Acrosin/metabolism , Acrosome Reaction/physiology , Serine Proteases/metabolism , Spermatozoa/enzymology , Zona Pellucida/metabolism , Spermatozoa/physiology
3.
Article in English | IMSEAR | ID: sea-135861

ABSTRACT

Background & objectives: An inability or decreased ability of spermatozoa to bind to the zona pellucida (ZP), an extracellular glycoproteinaceous matrix surrounding egg, is one of the plausible causes of idiopathic infertility. It will be clinically useful to distinguish this condition from other causes of infertility. An assay system, investigating binding of human sperm with ZP glycoprotein may prove useful in this regard. We attempted to develop a simple assay system to analyse the binding of capacitated human spermatozoa to human zona pellucida glycoprotein-3 (ZP3) using baculovirus-expressed recombinant human ZP3 coated beads. Methods: Recombinant baculovirus-expressed ZP3 was purified, labelled with biotin and coated on streptavidin sepharose beads. An in vitro assay system was optimized to study binding of capacitated human sperm to ZP3 coated beads. Results: A higher percentage of baculovirus-expressed recombinant human ZP3 coated beads showed significant (P<0.05) binding of capacitated human sperm as compared to beads coated with fetuin. An inhibition in the binding of sperm to ZP3 coated beads was observed in presence of cold recombinant human ZP3. Further, prior incubation of ZP3 coated beads with monoclonal antibodies (MAbs) against ZP3 but not against ZP2 resulted in the decrease in number of sperm bound to bead. Interpretation & conclusion: An in vitro assay system to study the binding of human sperm to ZP3- primary sperm receptor was established, which may be useful to determine the functional competence of spermatozoa.


Subject(s)
Egg Proteins/genetics , Egg Proteins/metabolism , Humans , Male , Membrane Glycoproteins/genetics , Membrane Glycoproteins/metabolism , Protein Binding , Receptors, Cell Surface/genetics , Receptors, Cell Surface/metabolism , Recombinant Fusion Proteins/genetics , Recombinant Fusion Proteins/metabolism , Sperm Capacitation/physiology , Spermatozoa/cytology , Spermatozoa/metabolism , Zona Pellucida/metabolism , alpha-Fetoproteins/metabolism
4.
Indian J Exp Biol ; 2005 Nov; 43(11): 1023-31
Article in English | IMSEAR | ID: sea-58694

ABSTRACT

With increasing medical utilization of assisted reproductive technology (ART), scientists and clinicians have been able to study extensively multiple cell functions operating synchronously and flawlessly during the events preceding, before and after fertilization. Critical evaluation of the functional status of spermatozoa for in vitro techniques such as sperm-mucus interaction, acrosome reaction status, sperm-zona pellucida binding and penetration tests, hyaluronic acid binding assay, and computer assisted semen analysis etc. can direct a male partner of an infertile couple to more aggressive forms of treatments. In vitro selection of functionally competent sperm cells is a pre-requisite for successful outcome in in vitro fertilization or in intracytoplasmic sperm injection (ICSI). Direct injections of acrosome-intact spermatozoa into oocyte during ICSI bypassing the normal events of sperm oocyte interaction and fusion events have raised concerns with regard to fertilization abnormalities and genetic issues. The present communication briefly reviews the sperm function tests with emphasis on its correlation with fertility outcome, and the currently employed sperm selection and manipulation procedures which may have implications in assisted conception programs.


Subject(s)
Acrosome Reaction , Animals , Cell Membrane/metabolism , Cell Nucleus/metabolism , Cell Survival , Embryo, Mammalian/cytology , Female , Fertilization , Germ Cells , Humans , Hyaluronic Acid/metabolism , Male , Protein Binding , Reproductive Techniques, Assisted , Sperm Injections, Intracytoplasmic/methods , Sperm-Ovum Interactions , Spermatozoa/metabolism , Zona Pellucida/metabolism
5.
Indian J Exp Biol ; 2000 Jan; 38(1): 18-25
Article in English | IMSEAR | ID: sea-62594

ABSTRACT

Polypeptides of goat sperm surface before and after capacitation were examined by radiolabelling and immunologically using polyclonal antisera. Radioiodination revealed five protein bands having mol wt of 14.8, 72.4, 81, 100 and 128 kDa in uncapacitated ejaculated spermatozoa and only three bands of 23.4, 27 and 72.4 KDa in capacitated spermatozoa. The protein band with mol wt 72.4 kDa was only feebly iodinated in uncapacitated sperm surface but in capacitated spermatozoa it was heavily labelled. Western blot analysis of detergent-extracted proteins using gamma-globulin fraction of antisera raised against purified goat sperm plasma membrane revealed six antigens (17.8, 29.1, 33.4, 45.6, 85.1, 123.2 kDa) in uncapacitated spermatozoa, four (26, 32.1, 40.1, 45.6 kDa) in capacitated spermatozoa and only one (45.6 kDa) in acrosome-reacted spermatozoa. High mol wt proteins were more numerous on the surface of uncapacitated spermatozoa while the capacitated spermatozoa had relatively low mol wt proteins. An apparent effect of capacitation is the metabolism and reorganisation of proteins on goat sperm surface. Polypeptides on capacitated sperm surface revealed through radiolabelling and polyclonal antisera may have a likely receptor(s) role in the recognition and binding to homologous zona pellucida during fertilization.


Subject(s)
Acrosome Reaction/physiology , Animals , Blotting, Western , Electrophoresis, Polyacrylamide Gel , Female , Goats/physiology , Immunohistochemistry , Male , Membrane Proteins/isolation & purification , Molecular Weight , Sperm Capacitation/physiology , Sperm-Ovum Interactions , Spermatozoa/chemistry , Zona Pellucida/metabolism
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