Redox control of surface protein sulphhydryls in bovine spermatozoa reversibly modulates sperm adhesion to the oviductal epithelium and capacitation

R Gualtieri, V Mollo, G Duma, R Talevi - Reproduction, 2009 - rep.bioscientifica.com
R Gualtieri, V Mollo, G Duma, R Talevi
Reproduction, 2009rep.bioscientifica.com
Oviductal fluid molecules, such as sulphated glycosaminoglycans and disulphide-
reductants, may represent periovulatory signals for the release of spermatozoa from the
oviductal reservoir in the bovine species. Disulphide-reductants release spermatozoa
through the reduction of sperm-surface disulphides to sulphhydryls (SH). Herein, we studied
sperm-surface protein SH through labelling with maleimidylpropionyl biocytin in the initial
sperm suspension, in the subpopulations able and unable to adhere to the in vitro cultured …
Abstract
Oviductal fluid molecules, such as sulphated glycosaminoglycans and disulphide-reductants, may represent periovulatory signals for the release of spermatozoa from the oviductal reservoir in the bovine species. Disulphide-reductants release spermatozoa through the reduction of sperm-surface disulphides to sulphhydryls (SH). Herein, we studied sperm-surface protein SH through labelling with maleimidylpropionyl biocytin in the initial sperm suspension, in the subpopulations able and unable to adhere to the in vitro cultured oviductal epithelium, and in spermatozoa released either through the disulphide-reductant penicillamine (PEN) or the sulphated glycosaminoglycan heparin (HEP). Adhesion assays were performed to study the ability of released spermatozoa to readhere to the oviductal epithelium. Results showed that the level of SH in sperm-surface proteins was: 1) low in adhering spermatozoa; 2) high in spermatozoa unable to adhere; and 3) markedly increased in released spermatozoa. Adhesion assays showed that: 1) PEN-released spermatozoa promptly recovered adhesion after removal of the disulphide-reductant and could be released again in response to PEN; 2) conversely, a limited number of HEP-released spermatozoa was able to readhere to the oviductal epithelium and this ability was not affected by HEP removal. Recovery of adhesion was associated to reoxidation of sperm-surface protein SH and to the reversal of capacitation. In conclusion, redox modulation of sperm-surface protein SH is involved in the release of spermatozoa adhering to the oviduct in vitro; the reversible action of disulphide-reductants might be responsible for intermittent phases of adhesions and releases; and the irreversible action of HEP indicates that it may represent a terminal releasing signal.
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