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NADPH Oxidase 5 and Melatonin: Involvement in Ram Sperm Capacitation

Reactive oxygen species (ROS) play an essential role in mammalian sperm capacitation. NADPH oxidase 5 (NOX5) has been described as the main source of ROS production in some mammalian spermatozoa, such as human and equine. On the other hand, melatonin can decrease cellular ROS levels and regulates NO...

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Autores principales: Miguel-Jiménez, Sara, Pina-Beltrán, Blanca, Gimeno-Martos, Silvia, Carvajal-Serna, Melissa, Casao, Adriana, Pérez-Pe, Rosaura
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8138477/
https://www.ncbi.nlm.nih.gov/pubmed/34026754
http://dx.doi.org/10.3389/fcell.2021.655794
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author Miguel-Jiménez, Sara
Pina-Beltrán, Blanca
Gimeno-Martos, Silvia
Carvajal-Serna, Melissa
Casao, Adriana
Pérez-Pe, Rosaura
author_facet Miguel-Jiménez, Sara
Pina-Beltrán, Blanca
Gimeno-Martos, Silvia
Carvajal-Serna, Melissa
Casao, Adriana
Pérez-Pe, Rosaura
author_sort Miguel-Jiménez, Sara
collection PubMed
description Reactive oxygen species (ROS) play an essential role in mammalian sperm capacitation. NADPH oxidase 5 (NOX5) has been described as the main source of ROS production in some mammalian spermatozoa, such as human and equine. On the other hand, melatonin can decrease cellular ROS levels and regulates NOX activity in somatic cells. Therefore, the objectives of this work were (1) to identify NOX5 in ram spermatozoa and analyze its possible changes during in vitro capacitation and (2) to investigate the effect of melatonin on NOX5 expression and localization and on superoxide levels in capacitated ram spermatozoa. Protein bands associated with NOX5 were detected by Western blot analysis. Likewise, indirect immunofluorescence (IIF) revealed six different immunotypes for NOX5, which varied throughout in vitro capacitation. Superoxide (O(2)(⋅–)), evaluated by DHE/Yo-Pro-1, rose after in vitro capacitation and in the presence of the calcium ionophore A23187 but decreased in the presence of the NOX inhibitor GKT136901. GKT also reduced the percentage of capacitated and acrosome-reacted spermatozoa that had increased during incubation in capacitating conditions. The presence of melatonin at micromolar concentrations avoided the increment in O(2)(⋅–) and the changes in NOX5 immunotypes provoked by capacitation. In conclusion, NOX5 is present in ram spermatozoa and the changes in its distribution, associated with sperm capacitation, can be prevented by melatonin. To this extent, it could imply that melatonin exerts its antioxidant role, at least in part, by modulating NOX5 activity during ram sperm capacitation.
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spelling pubmed-81384772021-05-22 NADPH Oxidase 5 and Melatonin: Involvement in Ram Sperm Capacitation Miguel-Jiménez, Sara Pina-Beltrán, Blanca Gimeno-Martos, Silvia Carvajal-Serna, Melissa Casao, Adriana Pérez-Pe, Rosaura Front Cell Dev Biol Cell and Developmental Biology Reactive oxygen species (ROS) play an essential role in mammalian sperm capacitation. NADPH oxidase 5 (NOX5) has been described as the main source of ROS production in some mammalian spermatozoa, such as human and equine. On the other hand, melatonin can decrease cellular ROS levels and regulates NOX activity in somatic cells. Therefore, the objectives of this work were (1) to identify NOX5 in ram spermatozoa and analyze its possible changes during in vitro capacitation and (2) to investigate the effect of melatonin on NOX5 expression and localization and on superoxide levels in capacitated ram spermatozoa. Protein bands associated with NOX5 were detected by Western blot analysis. Likewise, indirect immunofluorescence (IIF) revealed six different immunotypes for NOX5, which varied throughout in vitro capacitation. Superoxide (O(2)(⋅–)), evaluated by DHE/Yo-Pro-1, rose after in vitro capacitation and in the presence of the calcium ionophore A23187 but decreased in the presence of the NOX inhibitor GKT136901. GKT also reduced the percentage of capacitated and acrosome-reacted spermatozoa that had increased during incubation in capacitating conditions. The presence of melatonin at micromolar concentrations avoided the increment in O(2)(⋅–) and the changes in NOX5 immunotypes provoked by capacitation. In conclusion, NOX5 is present in ram spermatozoa and the changes in its distribution, associated with sperm capacitation, can be prevented by melatonin. To this extent, it could imply that melatonin exerts its antioxidant role, at least in part, by modulating NOX5 activity during ram sperm capacitation. Frontiers Media S.A. 2021-05-07 /pmc/articles/PMC8138477/ /pubmed/34026754 http://dx.doi.org/10.3389/fcell.2021.655794 Text en Copyright © 2021 Miguel-Jiménez, Pina-Beltrán, Gimeno-Martos, Carvajal-Serna, Casao and Pérez-Pe. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Cell and Developmental Biology
Miguel-Jiménez, Sara
Pina-Beltrán, Blanca
Gimeno-Martos, Silvia
Carvajal-Serna, Melissa
Casao, Adriana
Pérez-Pe, Rosaura
NADPH Oxidase 5 and Melatonin: Involvement in Ram Sperm Capacitation
title NADPH Oxidase 5 and Melatonin: Involvement in Ram Sperm Capacitation
title_full NADPH Oxidase 5 and Melatonin: Involvement in Ram Sperm Capacitation
title_fullStr NADPH Oxidase 5 and Melatonin: Involvement in Ram Sperm Capacitation
title_full_unstemmed NADPH Oxidase 5 and Melatonin: Involvement in Ram Sperm Capacitation
title_short NADPH Oxidase 5 and Melatonin: Involvement in Ram Sperm Capacitation
title_sort nadph oxidase 5 and melatonin: involvement in ram sperm capacitation
topic Cell and Developmental Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8138477/
https://www.ncbi.nlm.nih.gov/pubmed/34026754
http://dx.doi.org/10.3389/fcell.2021.655794
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