AbstractTwo mechanisms have been postulated to underlie KCNQ3 homomeric current amplitudes, which are small compared with those of KCNQ4 homomers and KCNQ2/Q3 heteromers. The first involves differential channel expression governed by the D-helix within the C-terminus. The second suggests similar channel surface expression but an intrinsically unstable KCNQ3 pore. Here, we find H2O2-enhanced oligomerization of KCNQ4 subunits, as reported by nondenaturing polyacrylamide gel electrophoresis, at C643 at the end of the D-helix, where KCNQ3 possesses a histidine. However, H2O2-mediated enhancement of KCNQ4 currents was identical in the C643A mutant, and KCNQ3 H646C produced homomeric or heteromeric (with KCNQ2) currents similar to those of wild-t...
AbstractVoltage-gated K+ channel activation is proposed to result from simultaneous bending of all S...
KCNQ2 (Kv7.2) and KCNQ3 (Kv7.3) are the principal subunits underlying the potassium M-current, which...
AbstractThe recently determined crystal structure of a chimeric Kv1.2-Kv2.1 Kv channel at 2.4 Å reso...
AbstractTwo mechanisms have been postulated to underlie KCNQ3 homomeric current amplitudes, which ar...
AbstractKCNQ3 homomeric channels yield very small macroscopic currents compared with other KCNQ chan...
AbstractKCNQ3 homomeric channels yield very small macroscopic currents compared with other KCNQ chan...
AbstractKCNQ1–5 (Kv7.1–7.5) subunits assemble to form a variety of functional K+ channels in the ner...
AbstractKCNQ1–5 (Kv7.1–7.5) subunits assemble to form a variety of functional K+ channels in the ner...
The ability of KCNQ (Kv7) channels to form hetero-oligomers is of high physiological importance, bec...
KCNQ1–5 α-subunits assemble to form K+ channels that play critical roles in the function of numerous...
International audienceVoltage-dependent potassium (Kv) channels are tetramers of six transmembrane d...
Schwake M. Structural Determinants of M-Type KCNQ (Kv7) K+ Channel Assembly. Journal of Neuroscience...
Voltage-dependent potassium (Kv) channels are tetramers of six transmembrane domain (S1-S6) proteins...
The ability of KCNQ (Kv7) channels to form hetero-oligomers is of high physiological importance, bec...
In the central and peripheral nervous system, the assembly of KCNQ3 with KCNQ2 as mostly heteromers,...
AbstractVoltage-gated K+ channel activation is proposed to result from simultaneous bending of all S...
KCNQ2 (Kv7.2) and KCNQ3 (Kv7.3) are the principal subunits underlying the potassium M-current, which...
AbstractThe recently determined crystal structure of a chimeric Kv1.2-Kv2.1 Kv channel at 2.4 Å reso...
AbstractTwo mechanisms have been postulated to underlie KCNQ3 homomeric current amplitudes, which ar...
AbstractKCNQ3 homomeric channels yield very small macroscopic currents compared with other KCNQ chan...
AbstractKCNQ3 homomeric channels yield very small macroscopic currents compared with other KCNQ chan...
AbstractKCNQ1–5 (Kv7.1–7.5) subunits assemble to form a variety of functional K+ channels in the ner...
AbstractKCNQ1–5 (Kv7.1–7.5) subunits assemble to form a variety of functional K+ channels in the ner...
The ability of KCNQ (Kv7) channels to form hetero-oligomers is of high physiological importance, bec...
KCNQ1–5 α-subunits assemble to form K+ channels that play critical roles in the function of numerous...
International audienceVoltage-dependent potassium (Kv) channels are tetramers of six transmembrane d...
Schwake M. Structural Determinants of M-Type KCNQ (Kv7) K+ Channel Assembly. Journal of Neuroscience...
Voltage-dependent potassium (Kv) channels are tetramers of six transmembrane domain (S1-S6) proteins...
The ability of KCNQ (Kv7) channels to form hetero-oligomers is of high physiological importance, bec...
In the central and peripheral nervous system, the assembly of KCNQ3 with KCNQ2 as mostly heteromers,...
AbstractVoltage-gated K+ channel activation is proposed to result from simultaneous bending of all S...
KCNQ2 (Kv7.2) and KCNQ3 (Kv7.3) are the principal subunits underlying the potassium M-current, which...
AbstractThe recently determined crystal structure of a chimeric Kv1.2-Kv2.1 Kv channel at 2.4 Å reso...