Thanks to the crosstalk between Na+ and Ca2+ channels, Na+ and Ca2+ homeostasis interplay in so-called excitable cells enables the generation of action potential in response to electrical stimulation. Here, we investigated the impact of persistent activation of voltage-gated Na+ (NaV) channels by neurotoxins, such as veratridine (VTD), on intracellular Ca2+ concentration ([Ca2+]i) in a model of excitable cells, the rat pituitary GH3b6 cells, in order to identify the molecular actors involved in Na+-Ca2+ homeostasis crosstalk. By combining RT-qPCR, immunoblotting, immunocytochemistry, and patch-clamp techniques, we showed that GH3b6 cells predominantly express the NaV1.3 channel subtype, which likely endorses their voltage-activated Na+ curr...
Animals from cockroaches to humans, utilize electrochemical gradients to perform rapid, long-distanc...
The human neuroblastoma cell line SH-SY5Y is a potentially useful model for the identification and c...
Voltage-gated sodium channels are critical determinants of nerve and muscle excitability. Although n...
Thanks to the crosstalk between Na+ and Ca2+ channels, Na+ and Ca2+ homeostasis interplay in so-call...
Voltage-gated Sodium Channels (VGSCs) are large transmembrane proteins that conduct sodium ions acro...
Voltage-gated sodium channels (VGSCs) are responsible for the action potential generation in excitab...
Na1.3 is a subtype of the voltage-gated sodium channel family. It has been implicated in the pathoge...
We identified Tf2, the first beta-scorpion toxin from the venom of the Brazilian scorpion Tityus fas...
International audienceVoltage-gated sodium channels (Nav) are key components for nerve excitability....
Ion channels lie at the heart of electrical excitability. They represent attractive targets for trea...
We report here the purification of glycerotoxin from the venom of Glycera convoluta, a novel 320 kDa...
We identified Tf2, the first beta-scorpion toxin from the venom of the Brazilian scorpion Tityus fas...
We identified Tf2, the first beta-scorpion toxin from the venom of the Brazilian scorpion Tityus fas...
Animals from cockroaches to humans, utilize electrochemical gradients to perform rapid, long-distanc...
Voltage-gated sodium channels (Nav) are key components for nerve excitability. They initiate and pro...
Animals from cockroaches to humans, utilize electrochemical gradients to perform rapid, long-distanc...
The human neuroblastoma cell line SH-SY5Y is a potentially useful model for the identification and c...
Voltage-gated sodium channels are critical determinants of nerve and muscle excitability. Although n...
Thanks to the crosstalk between Na+ and Ca2+ channels, Na+ and Ca2+ homeostasis interplay in so-call...
Voltage-gated Sodium Channels (VGSCs) are large transmembrane proteins that conduct sodium ions acro...
Voltage-gated sodium channels (VGSCs) are responsible for the action potential generation in excitab...
Na1.3 is a subtype of the voltage-gated sodium channel family. It has been implicated in the pathoge...
We identified Tf2, the first beta-scorpion toxin from the venom of the Brazilian scorpion Tityus fas...
International audienceVoltage-gated sodium channels (Nav) are key components for nerve excitability....
Ion channels lie at the heart of electrical excitability. They represent attractive targets for trea...
We report here the purification of glycerotoxin from the venom of Glycera convoluta, a novel 320 kDa...
We identified Tf2, the first beta-scorpion toxin from the venom of the Brazilian scorpion Tityus fas...
We identified Tf2, the first beta-scorpion toxin from the venom of the Brazilian scorpion Tityus fas...
Animals from cockroaches to humans, utilize electrochemical gradients to perform rapid, long-distanc...
Voltage-gated sodium channels (Nav) are key components for nerve excitability. They initiate and pro...
Animals from cockroaches to humans, utilize electrochemical gradients to perform rapid, long-distanc...
The human neuroblastoma cell line SH-SY5Y is a potentially useful model for the identification and c...
Voltage-gated sodium channels are critical determinants of nerve and muscle excitability. Although n...