AbstractVoltage sensing confers conversion of a change in membrane potential to signaling activities underlying the physiological processes. For an ion channel, voltage sensitivity is usually experimentally measured by fitting electrophysiological data to Boltzmann distributions. In our study, a two-state model of the ion channel and equilibrium statistical mechanics principle were used to test the hypothesis of empirically calculating the overall voltage sensitivity of an ion channel on the basis of its closed and open conformations, and determine the contribution of individual residues to the voltage sensing. We examined the theoretical paradigm by performing experimental measurements with Kv1.2 channel and a series of mutants. The correl...
Voltage-gated ion channels generate electrical signals in species from bacteria to man. Their voltag...
AbstractIon channels are the “building blocks” of the excitation process in excitable tissues. Despi...
84 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2010.Voltage-gated potassium channe...
A multiscale physical model of Shaker-type Kv channels is used to span from atomic-scale interaction...
Voltage-gated ion channels mediate electrical excitability of cellular membranes. Reduced models of ...
AbstractThe atomic models of the Kv1.2 potassium channel in the active and resting state, originally...
Many potassium channels show voltage-dependent gating without a dedicated voltage sensor domain. Thi...
Activity in many biological systems is mediated by pH, involving proton titratable groups with pKas ...
2012-05-09The relationship between the membrane potential and the gating of voltage-activated ion ch...
AbstractThe effects on the structural and functional properties of the Kv1.2 voltage-gated ion chann...
Voltage-gated ion channels open and close in response to changes in membrane potential, thereby enab...
Despite tremendous progress in the study of voltage-gated channels, the molecular mechanism underlyi...
AbstractThe fourth transmembrane helix (S4) is the primary voltage-sensor of voltage-gated ion chann...
2019-04-25Simulating the nature of voltage activated systems is a problem of major current interest,...
SummaryVoltage-sensing domains (VSDs) undergo conformational changes in response to the membrane pot...
Voltage-gated ion channels generate electrical signals in species from bacteria to man. Their voltag...
AbstractIon channels are the “building blocks” of the excitation process in excitable tissues. Despi...
84 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2010.Voltage-gated potassium channe...
A multiscale physical model of Shaker-type Kv channels is used to span from atomic-scale interaction...
Voltage-gated ion channels mediate electrical excitability of cellular membranes. Reduced models of ...
AbstractThe atomic models of the Kv1.2 potassium channel in the active and resting state, originally...
Many potassium channels show voltage-dependent gating without a dedicated voltage sensor domain. Thi...
Activity in many biological systems is mediated by pH, involving proton titratable groups with pKas ...
2012-05-09The relationship between the membrane potential and the gating of voltage-activated ion ch...
AbstractThe effects on the structural and functional properties of the Kv1.2 voltage-gated ion chann...
Voltage-gated ion channels open and close in response to changes in membrane potential, thereby enab...
Despite tremendous progress in the study of voltage-gated channels, the molecular mechanism underlyi...
AbstractThe fourth transmembrane helix (S4) is the primary voltage-sensor of voltage-gated ion chann...
2019-04-25Simulating the nature of voltage activated systems is a problem of major current interest,...
SummaryVoltage-sensing domains (VSDs) undergo conformational changes in response to the membrane pot...
Voltage-gated ion channels generate electrical signals in species from bacteria to man. Their voltag...
AbstractIon channels are the “building blocks” of the excitation process in excitable tissues. Despi...
84 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2010.Voltage-gated potassium channe...