K2P (KCNK) potassium channels form ‘background’ or ‘leak’ currents that are important for controlling cell excitability in the brain, cardiovascular system, and somatosensory neurons. K2P2.1 (TREK-1) is one of the founding members of this family and one of the first well-characterized polymodal ion channels capable of responding to a variety of physical and chemical gating cues. Of the six K2P subfamilies, the thermo-and mechano-sensitive TREK subfamily comprising K2P2.1 (TREK-1), K2P4.1 (TRAAK), and K2P10.1 (TREK-2) is the first to have structures determined for each subfamily member. These structural studies have revealed key architectural features that provide a framework for understanding how gating cues sensed by different channel elem...
International audiencePotassium (K+) channels are membrane proteins expressed in most living cells t...
ABSTRACT: K2P (KCNK) potassium channels generate “leak ” potassium currents that strongly influence ...
Two-pore domain potassium channels (K2Ps) are widely expressed ion channels which generate leak-type...
K2P (KCNK) potassium channels form ‘background’ or ‘leak’ currents that are important for controllin...
K2P (KCNK) potassium channels form "background" or "leak" currents that have critical roles in cell ...
Leak currents, defined as voltage and time independent flows of ions across cell membranes, are cent...
TREK channels are polymodal potassium channels which act as integrators of diverse chemical and phys...
Polymodal thermo- and mechanosensitive two-pore domain potassium (K-2P) channels of the TREK1 subfa...
Two-pore-domain K(+) (K(2P)) channel subunits are made up of four transmembrane segments and two por...
Two-pore domain potassium channels (K2Ps) are a family of dimeric potassium channels responsible for...
Two-pore domain potassium channels (K2Ps) are a family of dimeric potassium channels responsible for...
Biophysical techniques are widely used to determine the structure, function and ligand binding prope...
Two-pore potassium (K2P) channels are responsible for regulating the resting membrane potential of e...
K2P potassium channels generate leak currents that stabilize the resting membrane potential of excit...
K2P potassium channels generate leak currents that stabilize the resting membrane potential of excit...
International audiencePotassium (K+) channels are membrane proteins expressed in most living cells t...
ABSTRACT: K2P (KCNK) potassium channels generate “leak ” potassium currents that strongly influence ...
Two-pore domain potassium channels (K2Ps) are widely expressed ion channels which generate leak-type...
K2P (KCNK) potassium channels form ‘background’ or ‘leak’ currents that are important for controllin...
K2P (KCNK) potassium channels form "background" or "leak" currents that have critical roles in cell ...
Leak currents, defined as voltage and time independent flows of ions across cell membranes, are cent...
TREK channels are polymodal potassium channels which act as integrators of diverse chemical and phys...
Polymodal thermo- and mechanosensitive two-pore domain potassium (K-2P) channels of the TREK1 subfa...
Two-pore-domain K(+) (K(2P)) channel subunits are made up of four transmembrane segments and two por...
Two-pore domain potassium channels (K2Ps) are a family of dimeric potassium channels responsible for...
Two-pore domain potassium channels (K2Ps) are a family of dimeric potassium channels responsible for...
Biophysical techniques are widely used to determine the structure, function and ligand binding prope...
Two-pore potassium (K2P) channels are responsible for regulating the resting membrane potential of e...
K2P potassium channels generate leak currents that stabilize the resting membrane potential of excit...
K2P potassium channels generate leak currents that stabilize the resting membrane potential of excit...
International audiencePotassium (K+) channels are membrane proteins expressed in most living cells t...
ABSTRACT: K2P (KCNK) potassium channels generate “leak ” potassium currents that strongly influence ...
Two-pore domain potassium channels (K2Ps) are widely expressed ion channels which generate leak-type...