AbstractSite-specific electrostatic measurements have been limited to soluble proteins purified for in vitro spectroscopic characterization or proteins of known structure; however, comparable measurements have not been made for functional membrane bound proteins. Here, using an electrochromic fluorophore, we describe a method to monitor localized electric field changes in a voltage-gated potassium channel. By coupling the novel probe Di-1-ANEPIA to cysteines in Shaker and tracking field-induced optical changes, in vivo electrostatic measurements were recorded with submillisecond resolution. This technique reports dynamic changes in the electric field during the gating process and elucidates the electric field profile within Shaker. The exte...
This dissertation focuses on the development of new methods to understand mechanisms of voltage sens...
The spatial distribution of depolarized patches of membrane during the excitation of single neurons ...
SummaryMembrane depolarization causes voltage-gated ion channels to transition from a resting/closed...
AbstractSite-specific electrostatic measurements have been limited to soluble proteins purified for ...
AbstractWe examined voltage-dependent conformational changes in three specific regions of the Shaker...
AbstractThe development of a high performance protein probe for the measurement of membrane potentia...
The intramembrane electric field has at least three potential components, namely, transmembrane pote...
The intramembrane electric field has at least three potential components, namely, transmembrane pote...
Voltage clamp fluorometry (VCF) was first developed in the mid 1990s by Isacoff and his colleagues. ...
Voltage clamp fluorometry (VCF) was first developed in the mid 1990s by Isacoff and his colleagues. ...
AbstractX-ray crystallography has made considerable recent progress in providing static structures o...
AbstractThe fourth transmembrane helix (S4) is the primary voltage-sensor of voltage-gated ion chann...
Abstract Voltage-clamp fluorometry (VCF) supplies information about the conformational changes of v...
SummaryVoltage-gated ion channels respond to changes in membrane potential by movement of their volt...
Voltage gated ion channels (VGICs) shape the electrical character of cells by undergoing structural ...
This dissertation focuses on the development of new methods to understand mechanisms of voltage sens...
The spatial distribution of depolarized patches of membrane during the excitation of single neurons ...
SummaryMembrane depolarization causes voltage-gated ion channels to transition from a resting/closed...
AbstractSite-specific electrostatic measurements have been limited to soluble proteins purified for ...
AbstractWe examined voltage-dependent conformational changes in three specific regions of the Shaker...
AbstractThe development of a high performance protein probe for the measurement of membrane potentia...
The intramembrane electric field has at least three potential components, namely, transmembrane pote...
The intramembrane electric field has at least three potential components, namely, transmembrane pote...
Voltage clamp fluorometry (VCF) was first developed in the mid 1990s by Isacoff and his colleagues. ...
Voltage clamp fluorometry (VCF) was first developed in the mid 1990s by Isacoff and his colleagues. ...
AbstractX-ray crystallography has made considerable recent progress in providing static structures o...
AbstractThe fourth transmembrane helix (S4) is the primary voltage-sensor of voltage-gated ion chann...
Abstract Voltage-clamp fluorometry (VCF) supplies information about the conformational changes of v...
SummaryVoltage-gated ion channels respond to changes in membrane potential by movement of their volt...
Voltage gated ion channels (VGICs) shape the electrical character of cells by undergoing structural ...
This dissertation focuses on the development of new methods to understand mechanisms of voltage sens...
The spatial distribution of depolarized patches of membrane during the excitation of single neurons ...
SummaryMembrane depolarization causes voltage-gated ion channels to transition from a resting/closed...