Wehling C, Beimgraben C, Gelhaus C, et al. Self-assembly of the isolated KCNQ2 subunit interaction domain. FEBS Letters. 2007;581(8):1594-1598.Mutations in the KCNQ2 gene cause myokymia and neonatal epilepsy, indicating that this K+ channel regulates the excitability of lower motoneurons and CNS neurons. Little is known about the parameters that direct the assembly of this multimeric molecule and other KCNQ subunits. Here, we show that the carboxy-terminal subunit interaction domain of KCNQ2 autonomously folds and assembles into tetramers. This domain contains a bipartite coiled-coil motif. Whereas structural integrity of the second coiled-coil motif is crucial for tetramer formation, that of the first motif is less important. These data su...
KCNQ2 and KCNQ3 K+ channel subunits underlie the muscarinic-regulated K+ current (I(KM)), a widespre...
The voltage-gated potassium channel Kv4.3 plays a vital role in shaping the timing, frequency, and b...
KCNQ2 and KCNQ3 K+ channel subunits underlie the muscarinic-regulated K+ current (I(KM)), a widespre...
AbstractMutations in the KCNQ2 gene cause myokymia and neonatal epilepsy, indicating that this K+ ch...
The ability of KCNQ (Kv7) channels to form hetero-oligomers is of high physiological importance, bec...
The ability of KCNQ (Kv7) channels to form hetero-oligomers is of high physiological importance, bec...
Schwake M. Structural Determinants of M-Type KCNQ (Kv7) K+ Channel Assembly. Journal of Neuroscience...
Mutations in KCNQ K(+) channel genes underlie several human pathologies. KCNQ alpha-subunits form ei...
SummaryKv7.x (KCNQ) voltage-gated potassium channels form the cardiac and auditory IKs current and t...
16 páginas, 6 figuras, 4 tablas -- PAGS nros. 5815-5830The Kv7 subfamily of voltage-dependent potass...
KCNQ1–5 α-subunits assemble to form K+ channels that play critical roles in the function of numerous...
SummaryKv7.x (KCNQ) voltage-gated potassium channels form the cardiac and auditory IKs current and t...
Potassium (K+) channels are membrane-embedded proteins that selectively pass K+ ions in or out of ce...
International audienceMutations in KCNQ2 and KCNQ3 genes are responsible for benign familial neonata...
AbstractKCNQ1–5 (Kv7.1–7.5) subunits assemble to form a variety of functional K+ channels in the ner...
KCNQ2 and KCNQ3 K+ channel subunits underlie the muscarinic-regulated K+ current (I(KM)), a widespre...
The voltage-gated potassium channel Kv4.3 plays a vital role in shaping the timing, frequency, and b...
KCNQ2 and KCNQ3 K+ channel subunits underlie the muscarinic-regulated K+ current (I(KM)), a widespre...
AbstractMutations in the KCNQ2 gene cause myokymia and neonatal epilepsy, indicating that this K+ ch...
The ability of KCNQ (Kv7) channels to form hetero-oligomers is of high physiological importance, bec...
The ability of KCNQ (Kv7) channels to form hetero-oligomers is of high physiological importance, bec...
Schwake M. Structural Determinants of M-Type KCNQ (Kv7) K+ Channel Assembly. Journal of Neuroscience...
Mutations in KCNQ K(+) channel genes underlie several human pathologies. KCNQ alpha-subunits form ei...
SummaryKv7.x (KCNQ) voltage-gated potassium channels form the cardiac and auditory IKs current and t...
16 páginas, 6 figuras, 4 tablas -- PAGS nros. 5815-5830The Kv7 subfamily of voltage-dependent potass...
KCNQ1–5 α-subunits assemble to form K+ channels that play critical roles in the function of numerous...
SummaryKv7.x (KCNQ) voltage-gated potassium channels form the cardiac and auditory IKs current and t...
Potassium (K+) channels are membrane-embedded proteins that selectively pass K+ ions in or out of ce...
International audienceMutations in KCNQ2 and KCNQ3 genes are responsible for benign familial neonata...
AbstractKCNQ1–5 (Kv7.1–7.5) subunits assemble to form a variety of functional K+ channels in the ner...
KCNQ2 and KCNQ3 K+ channel subunits underlie the muscarinic-regulated K+ current (I(KM)), a widespre...
The voltage-gated potassium channel Kv4.3 plays a vital role in shaping the timing, frequency, and b...
KCNQ2 and KCNQ3 K+ channel subunits underlie the muscarinic-regulated K+ current (I(KM)), a widespre...