Update on mammalian sperm capacitation: How much does the horse differ from other species?

Publication date

2019

Authors

Leemans, BartISNI 0000000492904962
Stout, T.A.E.ORCID 0000-0001-5321-8095ISNI 0000000387838262
De Schauwer, Catharina
Heras, Sonia
Nelis, Hilde
Hoogewijs, Maarten
Van Soom, Ann
Gadella, B.M.ISNI 0000000395892373

Editors

Advisors

Supervisors

Document Type

Article
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License

taverne

Abstract

In contrast to various other mammalian species, conventional in vitro fertilization (IVF) with horse gametes is not reliably successful. In particular, stallion spermatozoa fail to penetrate the zona pellucida, most likely due to incomplete activation of stallion spermatozoa (capacitation) under in vitro conditions. In other mammalian species, specific capacitation triggers have been described; unfortunately, none of these is able to induce full capacitation in stallion spermatozoa. Nevertheless, knowledge of capacitation pathways and their molecular triggers might improve our understanding of capacitation-related events observed in stallion sperm. When sperm cells are exposed to appropriate capacitation triggers, several molecular and biochemical changes should be induced in the sperm plasma membrane and cytoplasm. At the level of the sperm plasma membrane, (1) an increase in membrane fluidity (2) cholesterol depletion and (3) lipid raft aggregation should occur consecutively; the cytoplasmic changes consist of protein tyrosine phosphorylation and elevated pH, cAMP, and Ca2+ concentrations. These capacitation-related events enable the switch from progressive to hyperactivated motility of the sperm cells, and the induction of the acrosome reaction. These final capacitation triggers are indispensable for sperm cells to migrate through the viscous oviductal environment, penetrate the cumulus cells and zona pellucida and, finally, fuse with the oolemma. This review will focus on molecular aspects of sperm capacitation and known triggers in various mammalian species. Similarities and differences with the horse will be highlighted to improve our understanding of equine sperm capacitation / fertilizing events.

Keywords

Protein-tyrosine phosphorylation, In-vitro fertilization, Induced acrosome reaction, Head plasma-membrane, Inositol 1,4,5-trisphosphate receptor, Soluble adenylyl-cyclase, Zona-pellucida binding, Mouse sperm, Stallion spermatozoa, Follicular-fluid, Taverne

Citation

Leemans, B, Stout, T A E, De Schauwer, C, Heras, S, Nelis, H, Hoogewijs, M, Van Soom, A & Gadella, B M 2019, 'Update on mammalian sperm capacitation : How much does the horse differ from other species?', Reproduction, vol. 157, no. 5, pp. R181-R197. https://doi.org/10.1530/REP-18-0541