Background K2P channels play a key role in stabilizing the resting membrane potential, thereby modulating cell excitability in the central and peripheral somatic nervous system. Whole-cell experiments revealed a riluzole-activated current (IRIL), transported by potassium, in mouse superior cervical ganglion (mSCG) neurons. The activation of this current by riluzole, linoleic acid, membrane stretch, and internal acidification, its open rectification and insensitivity to most classic potassium channel blockers, indicated that IRIL flows through channels of the TREK [two-pore domain weak inwardly rectifying K channel (TWIK)-related K channel] subfamily. Whole-ganglia and single-cell reverse transcription-PCR demonstrated the presence of TREK-1...
Recent evidence points to a pivotal contribution of a variety of different potassium channels, inclu...
Background K+ conductances are a major determinant of membrane resting potential and input resistanc...
K2P (KCNK) potassium channels form "background" or "leak" currents that have critical roles in cell ...
Two-pore domain potassium channels (K2P) constitute major candidates for the regulation of backgroun...
Two-pore domain potassium channels (K2P) constitute major candidates for the regulation of backgroun...
Bradykinin (BK), a hormone inducing pain and inflammation, is known to inhibit potassium M-currents ...
Two-pore domain potassium (K2P) channels are expressed in cells throughout the body and give rise to...
Riluzole (RP 54274) is a potent neuroprotective agent with anticonvulsant, sedative, and anti-ischem...
The ionic mechanisms controlling the resting membrane potential (RMP) in superior cervical ganglion ...
BACKGROUND AND PURPOSE: Pharmacological separation of the background potassium currents of closely r...
Several types of neurons within the central and peripheral somatic nervous system express two-pore-d...
Two-pore domain potassium (K2P) channels are expressed in cells throughout the body and give rise to...
The ionic mechanisms controlling the resting membrane potential (RMP) in superior cervical ganglion ...
TWIK-related potassium channels (TREK) belong to a subfamily of the two-pore domain potassium channe...
Two-pore-domain K(+) (K(2P)) channel subunits are made up of four transmembrane segments and two por...
Recent evidence points to a pivotal contribution of a variety of different potassium channels, inclu...
Background K+ conductances are a major determinant of membrane resting potential and input resistanc...
K2P (KCNK) potassium channels form "background" or "leak" currents that have critical roles in cell ...
Two-pore domain potassium channels (K2P) constitute major candidates for the regulation of backgroun...
Two-pore domain potassium channels (K2P) constitute major candidates for the regulation of backgroun...
Bradykinin (BK), a hormone inducing pain and inflammation, is known to inhibit potassium M-currents ...
Two-pore domain potassium (K2P) channels are expressed in cells throughout the body and give rise to...
Riluzole (RP 54274) is a potent neuroprotective agent with anticonvulsant, sedative, and anti-ischem...
The ionic mechanisms controlling the resting membrane potential (RMP) in superior cervical ganglion ...
BACKGROUND AND PURPOSE: Pharmacological separation of the background potassium currents of closely r...
Several types of neurons within the central and peripheral somatic nervous system express two-pore-d...
Two-pore domain potassium (K2P) channels are expressed in cells throughout the body and give rise to...
The ionic mechanisms controlling the resting membrane potential (RMP) in superior cervical ganglion ...
TWIK-related potassium channels (TREK) belong to a subfamily of the two-pore domain potassium channe...
Two-pore-domain K(+) (K(2P)) channel subunits are made up of four transmembrane segments and two por...
Recent evidence points to a pivotal contribution of a variety of different potassium channels, inclu...
Background K+ conductances are a major determinant of membrane resting potential and input resistanc...
K2P (KCNK) potassium channels form "background" or "leak" currents that have critical roles in cell ...