ABSTRACT: KCNE1 is a single-span membrane protein that modulates the voltage-gated potassium channel KCNQ1 (KV7.1) by slowing activation and enhancing channel conductance to generate the slow delayed rectifier current (IKs) that is critical for the repolarization phase of the cardiac action potential. Perturbation of channel function by inherited mutations in KCNE1 or KCNQ1 results in increased susceptibility to cardiac arrhythmias and sudden death with or without accompanying deafness. Here, we present the three-dimensional structure of KCNE1. The transmembrane domain (TMD) of KCNE1 is a curved R-helix and is flanked by intra- and extracellular domains comprised of R-helices joined by flexible linkers. Experimentally restrained docking of ...
Type I transmembrane KCNE peptides contain a conserved C-terminal cytoplasmic domain that abuts the ...
International audienceDetermination of what is the specificity of subunits composing a protein compl...
International audienceDetermination of what is the specificity of subunits composing a protein compl...
SummaryThe voltage-gated potassium channel Kv7.1 and its auxiliary subunit KCNE1 are expressed in th...
The IKs current has an important role in repolarizing the cardiac action potential. KCNQ1 subunits f...
The IKs current has an important role in repolarizing the cardiac action potential. KCNQ1 subunits f...
AbstractThe KCNE1 auxiliary subunit coassembles with the Kv7.1 channel and modulates its properties ...
The KCNE1 and KCNE3 type I transmembrane-spanning β-subunits assemble with the KCNQ1 voltage-gated K...
The slow delayed rectifier (IKs) channel is composed of KCNQ1 (pore-forming) and KCNE1 (auxiliary) s...
AbstractThe slow delayed rectifier (IKs) channel is composed of KCNQ1 (pore-forming) and KCNE1 (auxi...
KCNE1 is a single-transmembrane protein of the KCNE family that modulates the function of voltage-ga...
AbstractThe KCNE1 auxiliary subunit coassembles with the Kv7.1 channel and modulates its properties ...
The potassium channel Kv7.1 associates with the KCNE1 regulatory subunit to trigger cardiac IKs curr...
<div><p>The voltage-gated KCNQ1 potassium ion channel interacts with the type I transmembrane protei...
The IKs potassium channel, critical to control of heart electrical activity, requires assembly of po...
Type I transmembrane KCNE peptides contain a conserved C-terminal cytoplasmic domain that abuts the ...
International audienceDetermination of what is the specificity of subunits composing a protein compl...
International audienceDetermination of what is the specificity of subunits composing a protein compl...
SummaryThe voltage-gated potassium channel Kv7.1 and its auxiliary subunit KCNE1 are expressed in th...
The IKs current has an important role in repolarizing the cardiac action potential. KCNQ1 subunits f...
The IKs current has an important role in repolarizing the cardiac action potential. KCNQ1 subunits f...
AbstractThe KCNE1 auxiliary subunit coassembles with the Kv7.1 channel and modulates its properties ...
The KCNE1 and KCNE3 type I transmembrane-spanning β-subunits assemble with the KCNQ1 voltage-gated K...
The slow delayed rectifier (IKs) channel is composed of KCNQ1 (pore-forming) and KCNE1 (auxiliary) s...
AbstractThe slow delayed rectifier (IKs) channel is composed of KCNQ1 (pore-forming) and KCNE1 (auxi...
KCNE1 is a single-transmembrane protein of the KCNE family that modulates the function of voltage-ga...
AbstractThe KCNE1 auxiliary subunit coassembles with the Kv7.1 channel and modulates its properties ...
The potassium channel Kv7.1 associates with the KCNE1 regulatory subunit to trigger cardiac IKs curr...
<div><p>The voltage-gated KCNQ1 potassium ion channel interacts with the type I transmembrane protei...
The IKs potassium channel, critical to control of heart electrical activity, requires assembly of po...
Type I transmembrane KCNE peptides contain a conserved C-terminal cytoplasmic domain that abuts the ...
International audienceDetermination of what is the specificity of subunits composing a protein compl...
International audienceDetermination of what is the specificity of subunits composing a protein compl...