Identificador persistente para citar o vincular este elemento: http://hdl.handle.net/10662/20129
Títulos: The compound YK 3-237 promotes pig sperm capacitation-related events
Autores/as: Martín Hidalgo, David
Solar Málaga, Soraya
González Fernández, Lauro
Zamorano Quirantes, José
García Marín, Luis Jesús
Bragado González, María Julia
Palabras clave: Espermatozoide;Sperm;Cerdo;Pig;Reacción acrosómica;Acrosome reaction;Fosforilación tirosina;Phosphorylation tyrosine
Fecha de publicación: 2023
Editor/a: Springer
Resumen: Before fertilization of the oocyte, the spermatozoa must undergo through a series of biochemical changes in the female reproductive tract named sperm capacitation. Spermatozoa regulates its functions by post-translational modifications, being historically the most studied protein phosphorylation. In addition to phosphorylation, recently, protein acetylation has been described as an important molecular mechanism with regulatory roles in several reproductive processes. However, its role on the mammal's sperm capacitation process remains unraveled. Sirtuins are a deacetylase protein family with 7 members that regulate protein acetylation. Here, we investigated the possible role of SIRT1 on pig sperm capacitation-related events by using YK 3-237, a commercial SIRT1 activator drug. SIRT1 is localized in the midpiece of pig spermatozoa. Protein tyrosine phosphorylation (focused at p32) is an event associated to pig sperm capacitation that increases when spermatozoa are in vitro capacitated in presence of YK 3-237. Eventually, YK 3-237 induces acrosome reaction in capacitated spermatozoa: YK 3-237 treatment tripled (3.40 ± 0.40 fold increase) the percentage of acrosome-reacted spermatozoa compared to the control. In addition, YK 3-237 induces sperm intracellular pH alkalinization and raises the intracellular calcium levels through a CatSper independent mechanism. YK 3-237 was not able to bypass sAC inhibition by LRE1. In summary, YK 3-237 promotes pig sperm capacitation by a mechanism upstream of sAC activation and independent of CatSper calcium channel
URI: http://hdl.handle.net/10662/20129
ISSN: 0165-7380
DOI: 10.1007/s11259-023-10243-6
Colección:DFSIO - Artículos

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