ABSTRACT: The voltage sensor domain (VSD) of voltage-gated cation (e.g., Na+, K+) channels central to neurological signal transmission can function as a distinct module. When linked to an otherwise voltage-insensitive, ion-selective membrane pore, the VSD imparts voltage sensitivity to the channel. Proteins homologous with the VSD have recently been found to function themselves as voltage-gated proton channels or to impart voltage sensitivity to enzymes. Determining the conformational changes associated with voltage gating in the VSD itself in the absence of a pore domain thereby gains importance. We report the direct measurement of changes in the scattering-length density (SLD) profile of the VSD protein, vectorially oriented within a reco...
Voltage-gated ion channels play fundamental roles in neural excitability and thus dysfunctional chan...
The mechanism of electromechanical transduction in voltage sensing domains remains controversial. He...
Voltage-gated ion channels have a paramount importance in many physiological processes such as cell-...
The voltage sensor domain (VSD) of voltage-gated cation (e.g., Na(+), K(+)) channels central to neur...
The voltage sensor domain (VSD) of voltage-gated cation (e.g., Na<sup>+</sup>, K<sup>+</sup>) channe...
Available experimental techniques cannot determine high-resolution three-dimensional structures of m...
SummaryA strong interplay between the voltage-sensor domain (VSD) and the pore domain (PD) underlies...
The voltage-sensing domain (VSD) is a common scaffold responsible for the transduction of transmembr...
Voltage sensor domains (VSDs) are structurally and functionally conserved protein modules that consi...
Despite the growing number of atomic-resolution membrane protein structures, direct structural infor...
Voltage-gated ion channels (VGICs) use voltage sensing domains (VSD) to sense the change in electric...
Voltage-dependent ion channels are crucial for generation and propagation of electrical activity in ...
Voltage sensor domains (VSD) of voltage-dependent ion channels share a basic molecular structure wit...
The voltage sensor domain (VSD) is responsible for electromechanical transduction in voltage-gated i...
SummaryThe nature of voltage sensing by voltage-activated ion channels is a key problem in membrane ...
Voltage-gated ion channels play fundamental roles in neural excitability and thus dysfunctional chan...
The mechanism of electromechanical transduction in voltage sensing domains remains controversial. He...
Voltage-gated ion channels have a paramount importance in many physiological processes such as cell-...
The voltage sensor domain (VSD) of voltage-gated cation (e.g., Na(+), K(+)) channels central to neur...
The voltage sensor domain (VSD) of voltage-gated cation (e.g., Na<sup>+</sup>, K<sup>+</sup>) channe...
Available experimental techniques cannot determine high-resolution three-dimensional structures of m...
SummaryA strong interplay between the voltage-sensor domain (VSD) and the pore domain (PD) underlies...
The voltage-sensing domain (VSD) is a common scaffold responsible for the transduction of transmembr...
Voltage sensor domains (VSDs) are structurally and functionally conserved protein modules that consi...
Despite the growing number of atomic-resolution membrane protein structures, direct structural infor...
Voltage-gated ion channels (VGICs) use voltage sensing domains (VSD) to sense the change in electric...
Voltage-dependent ion channels are crucial for generation and propagation of electrical activity in ...
Voltage sensor domains (VSD) of voltage-dependent ion channels share a basic molecular structure wit...
The voltage sensor domain (VSD) is responsible for electromechanical transduction in voltage-gated i...
SummaryThe nature of voltage sensing by voltage-activated ion channels is a key problem in membrane ...
Voltage-gated ion channels play fundamental roles in neural excitability and thus dysfunctional chan...
The mechanism of electromechanical transduction in voltage sensing domains remains controversial. He...
Voltage-gated ion channels have a paramount importance in many physiological processes such as cell-...