SummaryVoltage-activated potassium (Kv) channels contain a central pore domain that is partially surrounded by four voltage-sensing domains. Recent X-ray structures suggest that the two domains lack extensive protein-protein contacts within presumed transmembrane regions, but whether this is the case for functional channels embedded in lipid membranes remains to be tested. We investigated domain interactions in the Shaker Kv channel by systematically mutating the pore domain and assessing tolerance by examining channel maturation, S4 gating charge movement, and channel opening. When mapped onto the X-ray structure of the Kv1.2 channel the large number of permissive mutations support the notion of relatively independent domains, consistent w...
SummaryMembrane depolarization causes voltage-gated ion channels to transition from a resting/closed...
Voltage-dependent Kþ (Kv) channels gate open in response to the membrane voltage. To further our und...
Voltage-gated potassium channels open at depolarized membrane voltages. A prolonged depolarization c...
SummaryVoltage-activated potassium (Kv) channels contain a central pore domain that is partially sur...
AbstractVoltage-gated K+ channels contain a central pore domain and four surrounding voltage-sensing...
AbstractA high-resolution crystal structure of KvAP, an archeabacterial voltage-gated potassium (Kv)...
In voltage-gated potassium channels (VGKC), voltage sensors (VSD) endow voltage-sensitivity to pore ...
AbstractVoltage-gated potassium (Kv) channels, such as Kv1.2, are involved in the generation and pro...
AbstractA recently proposed model for voltage-dependent activation in K+ channels, largely influence...
SummaryIn voltage-gated ion channels, the S4 transmembrane segment responds to changes in membrane p...
Voltage-dependent K(+) (Kv) channels gate open in response to the membrane voltage. To further our u...
Voltage-gated ion channels are modular proteins designed by the structural linkage of a voltage sens...
AbstractThe effects on the structural and functional properties of the Kv1.2 voltage-gated ion chann...
The tight electro-mechanical coupling between the voltage-sensing and pore domains of Kv channels li...
The tight electro-mechanical coupling between the voltage-sensing and pore domains of Kv channels li...
SummaryMembrane depolarization causes voltage-gated ion channels to transition from a resting/closed...
Voltage-dependent Kþ (Kv) channels gate open in response to the membrane voltage. To further our und...
Voltage-gated potassium channels open at depolarized membrane voltages. A prolonged depolarization c...
SummaryVoltage-activated potassium (Kv) channels contain a central pore domain that is partially sur...
AbstractVoltage-gated K+ channels contain a central pore domain and four surrounding voltage-sensing...
AbstractA high-resolution crystal structure of KvAP, an archeabacterial voltage-gated potassium (Kv)...
In voltage-gated potassium channels (VGKC), voltage sensors (VSD) endow voltage-sensitivity to pore ...
AbstractVoltage-gated potassium (Kv) channels, such as Kv1.2, are involved in the generation and pro...
AbstractA recently proposed model for voltage-dependent activation in K+ channels, largely influence...
SummaryIn voltage-gated ion channels, the S4 transmembrane segment responds to changes in membrane p...
Voltage-dependent K(+) (Kv) channels gate open in response to the membrane voltage. To further our u...
Voltage-gated ion channels are modular proteins designed by the structural linkage of a voltage sens...
AbstractThe effects on the structural and functional properties of the Kv1.2 voltage-gated ion chann...
The tight electro-mechanical coupling between the voltage-sensing and pore domains of Kv channels li...
The tight electro-mechanical coupling between the voltage-sensing and pore domains of Kv channels li...
SummaryMembrane depolarization causes voltage-gated ion channels to transition from a resting/closed...
Voltage-dependent Kþ (Kv) channels gate open in response to the membrane voltage. To further our und...
Voltage-gated potassium channels open at depolarized membrane voltages. A prolonged depolarization c...