AbstractMembrane proteins that respond to changes in transmembrane voltage are critical in regulating the function of living cells. The voltage-sensing domains (VSDs) of voltage-gated ion channels are extensively studied to elucidate voltage-sensing mechanisms, and yet many aspects of their structure-function relationship remain elusive. Here, we transplanted homologous amino acid motifs from the tetrameric voltage-activated potassium channel Kv3.1 to the monomeric VSD of Ciona intestinalis voltage-sensitive phosphatase (Ci-VSP) to explore which portions of Kv3.1 subunits depend on the tetrameric structure of Kv channels and which properties of Kv3.1 can be transferred to the monomeric Ci-VSP scaffold. By attaching fluorescent proteins to t...
Voltage Sensitive Phosphatases (VSPs) constitute a family of enzymes controlled by membrane potentia...
AbstractThe voltage-sensitive phosphatase Ci-VSP consists of an intracellular phosphatase domain (PD...
Voltage Sensitive Phosphatases (VSPs) constitute a family of enzymes controlled by membrane potentia...
AbstractMembrane proteins that respond to changes in transmembrane voltage are critical in regulatin...
The modular architecture of voltage-gated K+ (Kv) channels suggests that they resulted from the fusi...
The modular architecture of voltage-gated K(+) (Kv) channels suggests that they resulted from the fu...
The modular architecture of voltage-gated K(+) (Kv) channels suggests that they resulted from the fu...
The voltage sensor domain (VSD) is responsible for electromechanical transduction in voltage-gated i...
The voltage sensor domain (VSD) is responsible for electromechanical transduction in voltage-gated i...
The voltage sensor domain (VSD) is responsible for electromechanical transduction in voltage-gated i...
The voltage sensor domain (VSD) is responsible for electromechanical transduction in voltage-gated i...
The voltage sensor domain (VSD) is responsible for electromechanical transduction in voltage-gated i...
The modular architecture of voltage-gated K+ (Kv) channels suggests that they resulted from the fusi...
Voltage control over enzymatic activity in voltage-sensitive phosphatases (VSPs) is conferred by a v...
The modular architecture of voltage-gated K+ (Kv) channels suggests that they resulted from the fusi...
Voltage Sensitive Phosphatases (VSPs) constitute a family of enzymes controlled by membrane potentia...
AbstractThe voltage-sensitive phosphatase Ci-VSP consists of an intracellular phosphatase domain (PD...
Voltage Sensitive Phosphatases (VSPs) constitute a family of enzymes controlled by membrane potentia...
AbstractMembrane proteins that respond to changes in transmembrane voltage are critical in regulatin...
The modular architecture of voltage-gated K+ (Kv) channels suggests that they resulted from the fusi...
The modular architecture of voltage-gated K(+) (Kv) channels suggests that they resulted from the fu...
The modular architecture of voltage-gated K(+) (Kv) channels suggests that they resulted from the fu...
The voltage sensor domain (VSD) is responsible for electromechanical transduction in voltage-gated i...
The voltage sensor domain (VSD) is responsible for electromechanical transduction in voltage-gated i...
The voltage sensor domain (VSD) is responsible for electromechanical transduction in voltage-gated i...
The voltage sensor domain (VSD) is responsible for electromechanical transduction in voltage-gated i...
The voltage sensor domain (VSD) is responsible for electromechanical transduction in voltage-gated i...
The modular architecture of voltage-gated K+ (Kv) channels suggests that they resulted from the fusi...
Voltage control over enzymatic activity in voltage-sensitive phosphatases (VSPs) is conferred by a v...
The modular architecture of voltage-gated K+ (Kv) channels suggests that they resulted from the fusi...
Voltage Sensitive Phosphatases (VSPs) constitute a family of enzymes controlled by membrane potentia...
AbstractThe voltage-sensitive phosphatase Ci-VSP consists of an intracellular phosphatase domain (PD...
Voltage Sensitive Phosphatases (VSPs) constitute a family of enzymes controlled by membrane potentia...