AbstractT-type calcium channels (T-channels) contribute to a wide variety of physiological functions, especially in the cardiovascular and nervous systems. Recent studies using knock-out mouse models have been instrumental in documenting further the role of T-channels in sleep, heartbeat, pain and epilepsy. Importantly, several novel aspects of the regulation of these channels have been identified over the last few years, providing new insights into their physiological and pathophysiological roles. Here, we review recent evidence supporting that the Cav3 subunits of T-channels are modulated by endogenous ligands such as anandamide, zinc, redox and oxidizing agents, as well as G-protein and protein kinases pathways. The study of T-channel mu...
T-type calcium channels (T/Cav3-channels) are implicated in various physiologic and pathophysiologic...
T-type voltage-gated calcium (Ca2+) channels play critical roles in controlling neuronal excitabilit...
De nombreuses études expérimentales montrent que les canaux calciques activés par la dépolarisation ...
International audienceT-type calcium channels (T-channels) contribute to a wide variety of physiolog...
AbstractT-type calcium channels (T-channels) contribute to a wide variety of physiological functions...
AbstractLow-voltage-activated T-type Ca2+ channels contribute to a wide variety of physiological fun...
Voltage-gated calcium channels (VGCCs) are widely expressed in the brain, heart and vessels, smooth ...
T-type calcium channels are important modulators of both membrane potential and intracellular Ca2 c...
Phosphorylation is a major mechanism regulating the activity of ion channels that remains poorly und...
Low voltage-activated (LVA) T-type calcium channels are characterized by transient current and low t...
International audienceLow-voltage-activated T-type calcium channels act as a major pathway for calci...
International audienceKEY POINTS: In this study, we describe a new knock-in (KI) mouse model that al...
Family of T-type or low-voltage activated calcium channels consists of three members: CaV3.1, CaV3.2...
Low-voltage-activated T-type calcium channels play an important role in regulating cellular excitabi...
Low-voltage-activated T-type calcium channels play an important role in regulating cellular excitabi...
T-type calcium channels (T/Cav3-channels) are implicated in various physiologic and pathophysiologic...
T-type voltage-gated calcium (Ca2+) channels play critical roles in controlling neuronal excitabilit...
De nombreuses études expérimentales montrent que les canaux calciques activés par la dépolarisation ...
International audienceT-type calcium channels (T-channels) contribute to a wide variety of physiolog...
AbstractT-type calcium channels (T-channels) contribute to a wide variety of physiological functions...
AbstractLow-voltage-activated T-type Ca2+ channels contribute to a wide variety of physiological fun...
Voltage-gated calcium channels (VGCCs) are widely expressed in the brain, heart and vessels, smooth ...
T-type calcium channels are important modulators of both membrane potential and intracellular Ca2 c...
Phosphorylation is a major mechanism regulating the activity of ion channels that remains poorly und...
Low voltage-activated (LVA) T-type calcium channels are characterized by transient current and low t...
International audienceLow-voltage-activated T-type calcium channels act as a major pathway for calci...
International audienceKEY POINTS: In this study, we describe a new knock-in (KI) mouse model that al...
Family of T-type or low-voltage activated calcium channels consists of three members: CaV3.1, CaV3.2...
Low-voltage-activated T-type calcium channels play an important role in regulating cellular excitabi...
Low-voltage-activated T-type calcium channels play an important role in regulating cellular excitabi...
T-type calcium channels (T/Cav3-channels) are implicated in various physiologic and pathophysiologic...
T-type voltage-gated calcium (Ca2+) channels play critical roles in controlling neuronal excitabilit...
De nombreuses études expérimentales montrent que les canaux calciques activés par la dépolarisation ...