AbstractComponents of the sea urchin outer egg jelly layer such as speract drastically change second messenger levels and membrane permeability in sperm. Ion channels are deeply involved in the sperm–egg dialogue in sea urchin and other species. Yet, due to the small size of sperm, studies of ion channels and their modulation by second messengers in sperm are scarce. In this report we offer the first direct evidence that cation-selective channels upwardly regulated by cAMP operate in sea urchin sperm. Due to their poor selectivity among monovalent cations, channel activation in seawater could contribute to sperm membrane repolarization during the speract response
AbstractThe acrosome reaction (AR), necessary for fertilization in many species, requires an increas...
Sperm guidance is controlled by chemical and physical cues. In many species, Ca2+ bursts in the flag...
AbstractMarine invertebrate oocytes establish chemoattractant gradients that guide spermatozoa towar...
AbstractComponents of the sea urchin outer egg jelly layer such as speract drastically change second...
AbstractIon channels are deeply involved in sperm physiology. In sea urchin sperm cyclic nucleotide ...
Ion channels are deeply involved in sperm physiology. In sea urchin sperm cyclic nucleotide levels i...
AbstractSignal transduction initiated by the egg peptide, speract, in sea urchin sperm is not fully ...
AbstractFunctional evidence indicates that voltage-dependent Ca2+ (Cav) channels participate in sea ...
AbstractSperact, an egg-derived sperm-activating peptide, induces changes in intracellular Ca2+, Na+...
AbstractIon fluxes through poorly understood channel-mediated mechanisms participate in the interact...
AbstractSperact, a decapeptide from Strongylocentrotus purpuratus sea urchin eggs, transiently stimu...
Ionic fluxes play a key role in the activation of respiration and motility, in chemotaxis, and in th...
AbstractSperact, a peptide from the egg jelly coat of certain sea urchin species, modulates sperm mo...
AbstractSperm entry was monitored in voltage-clamped sea urchin eggs following insemination in a var...
AbstractSperact, a sperm-activating peptide (SAP) from sea urchin eggs, increases the intracellular ...
AbstractThe acrosome reaction (AR), necessary for fertilization in many species, requires an increas...
Sperm guidance is controlled by chemical and physical cues. In many species, Ca2+ bursts in the flag...
AbstractMarine invertebrate oocytes establish chemoattractant gradients that guide spermatozoa towar...
AbstractComponents of the sea urchin outer egg jelly layer such as speract drastically change second...
AbstractIon channels are deeply involved in sperm physiology. In sea urchin sperm cyclic nucleotide ...
Ion channels are deeply involved in sperm physiology. In sea urchin sperm cyclic nucleotide levels i...
AbstractSignal transduction initiated by the egg peptide, speract, in sea urchin sperm is not fully ...
AbstractFunctional evidence indicates that voltage-dependent Ca2+ (Cav) channels participate in sea ...
AbstractSperact, an egg-derived sperm-activating peptide, induces changes in intracellular Ca2+, Na+...
AbstractIon fluxes through poorly understood channel-mediated mechanisms participate in the interact...
AbstractSperact, a decapeptide from Strongylocentrotus purpuratus sea urchin eggs, transiently stimu...
Ionic fluxes play a key role in the activation of respiration and motility, in chemotaxis, and in th...
AbstractSperact, a peptide from the egg jelly coat of certain sea urchin species, modulates sperm mo...
AbstractSperm entry was monitored in voltage-clamped sea urchin eggs following insemination in a var...
AbstractSperact, a sperm-activating peptide (SAP) from sea urchin eggs, increases the intracellular ...
AbstractThe acrosome reaction (AR), necessary for fertilization in many species, requires an increas...
Sperm guidance is controlled by chemical and physical cues. In many species, Ca2+ bursts in the flag...
AbstractMarine invertebrate oocytes establish chemoattractant gradients that guide spermatozoa towar...