TY - JOUR
T1 - Flow cytometry analysis reveals that only a subpopulation of mouse sperm undergoes hyperpolarization during capacitation
AU - Escoffier, Jessica
AU - Navarrete, Felipe
AU - Haddad, Doug
AU - Santi, Celia M.
AU - Darszon, Alberto
AU - Visconti, Pablo E.
N1 - Publisher Copyright:
© 2015 by the Society for the Study of Reproduction, Inc.
PY - 2015/5/1
Y1 - 2015/5/1
N2 - To gain fertilizing capacity, mammalian sperm should reside in the female tract for a period of time. The physiological changes that render the sperm able to fertilize are known as capacitation. Capacitation is associated with an increase in intracellular pH, an increase in intracellular calcium, and phosphorylation of different proteins. This process is also accompanied by the hyperpolarization of the sperm plasma membrane potential (Em). In the present work, we used flow cytometry to analyze changes in sperm Em during capacitation in individual cells. Our results indicate that a subpopulation of hyperpolarized mouse sperm can be clearly distinguished by sperm flow cytometry analysis. Using sperm bearing green fluorescent protein in their acrosomes, we found that this hyperpolarized subpopulation is composed of sperm with intact acrosomes. In addition, we show that the capacitation-associated hyperpolarization is blocked by high extracellular K+, by PKA inhibitors, and by SLO3 inhibitors in CD1 mouse sperm, and undetectable in Slo3 knockout mouse sperm. On the other hand, in sperm incubated in conditions that do not support capacitation, sperm membrane hyperpolarization can be induced by amiloride, high extracellular NaHCO3, and cAMP agonists. Altogether, our observations are consistent with a model in which sperm Em hyperpolarization is downstream of a cAMPdependent pathway and is mediated by the activation of SLO3 K+ channels.
AB - To gain fertilizing capacity, mammalian sperm should reside in the female tract for a period of time. The physiological changes that render the sperm able to fertilize are known as capacitation. Capacitation is associated with an increase in intracellular pH, an increase in intracellular calcium, and phosphorylation of different proteins. This process is also accompanied by the hyperpolarization of the sperm plasma membrane potential (Em). In the present work, we used flow cytometry to analyze changes in sperm Em during capacitation in individual cells. Our results indicate that a subpopulation of hyperpolarized mouse sperm can be clearly distinguished by sperm flow cytometry analysis. Using sperm bearing green fluorescent protein in their acrosomes, we found that this hyperpolarized subpopulation is composed of sperm with intact acrosomes. In addition, we show that the capacitation-associated hyperpolarization is blocked by high extracellular K+, by PKA inhibitors, and by SLO3 inhibitors in CD1 mouse sperm, and undetectable in Slo3 knockout mouse sperm. On the other hand, in sperm incubated in conditions that do not support capacitation, sperm membrane hyperpolarization can be induced by amiloride, high extracellular NaHCO3, and cAMP agonists. Altogether, our observations are consistent with a model in which sperm Em hyperpolarization is downstream of a cAMPdependent pathway and is mediated by the activation of SLO3 K+ channels.
KW - Capacitation
KW - ENac
KW - Flow cytometry
KW - Membrane potential
KW - SLO3
UR - https://www.scopus.com/pages/publications/84937041150
U2 - 10.1095/biolreprod.114.127266
DO - 10.1095/biolreprod.114.127266
M3 - Article
C2 - 25855261
AN - SCOPUS:84937041150
SN - 0006-3363
VL - 92
JO - Biology of reproduction
JF - Biology of reproduction
IS - 5
M1 - 121
ER -