The voltage-gated sodium channel NaV1.7 is an important target for drug development due to its role in pain perception. Recombinant expression of full-length channels and their use for biophysical characterization of interactions with potential drug candidates is challenging due to the protein size and complexity. To overcome this issue, we developed a protocol for the recombinant expression in E. coli and refolding into lipids of the isolated voltage sensing domain (VSD) of repeat II of NaV1.7, obtaining yields of about 2 mg of refolded VSD from 1 L bacterial cell culture. This VSD is known to be involved in the binding of a number of gating-modifier toxins, including the tarantula toxins ProTx-II and GpTx-I. Binding studies using microsca...
Voltage-gated sodium (Nav) channels respond to changes in the membrane potential of excitable cells ...
Exploring the interaction of ligands with voltage-gated sodium channels (NaVs) has advanced our unde...
Voltage-gated sodium channels (NaVs) are activated by transiting the voltage sensor from the deactiv...
The voltage-gated sodium channel NaV1.7 is an important target for drug development due to its role ...
The voltage-gated sodium channel NaV1.7 is an important target for drug development due to its role ...
Voltage gated sodium channels (VGSCs) are essential to the propagation of nerve cell impulses and th...
Human voltage gated sodium (hNav) channels have been implicated in a multitude of debilitating cardi...
The voltage-gated sodium channel Nav1.7 plays a crucial role in pain, and drugs that inhibit hNav1.7...
The voltage-activated sodium (Nav) channel Nav1.9 is expressed in dorsal root ganglion (DRG) neurons...
ProTx-II is a disulfide-rich peptide toxin from tarantula venom able to inhibit the human voltage-ga...
Identification of voltage-gated sodium channel NaV1.7 inhibitors for chronic pain therapeutic develo...
ProTx-II is a disulfide-rich peptide toxin from tarantula venom able to inhibit the human voltage-ga...
ProTx-II is a disulfide-rich peptide toxin from tarantula venom able to inhibit the human voltage-ga...
Animals from cockroaches to humans, utilize electrochemical gradients to perform rapid, long-distanc...
Voltage-gated ion channels (VGICs) are specialised ion channels that have a voltage dependent mode o...
Voltage-gated sodium (Nav) channels respond to changes in the membrane potential of excitable cells ...
Exploring the interaction of ligands with voltage-gated sodium channels (NaVs) has advanced our unde...
Voltage-gated sodium channels (NaVs) are activated by transiting the voltage sensor from the deactiv...
The voltage-gated sodium channel NaV1.7 is an important target for drug development due to its role ...
The voltage-gated sodium channel NaV1.7 is an important target for drug development due to its role ...
Voltage gated sodium channels (VGSCs) are essential to the propagation of nerve cell impulses and th...
Human voltage gated sodium (hNav) channels have been implicated in a multitude of debilitating cardi...
The voltage-gated sodium channel Nav1.7 plays a crucial role in pain, and drugs that inhibit hNav1.7...
The voltage-activated sodium (Nav) channel Nav1.9 is expressed in dorsal root ganglion (DRG) neurons...
ProTx-II is a disulfide-rich peptide toxin from tarantula venom able to inhibit the human voltage-ga...
Identification of voltage-gated sodium channel NaV1.7 inhibitors for chronic pain therapeutic develo...
ProTx-II is a disulfide-rich peptide toxin from tarantula venom able to inhibit the human voltage-ga...
ProTx-II is a disulfide-rich peptide toxin from tarantula venom able to inhibit the human voltage-ga...
Animals from cockroaches to humans, utilize electrochemical gradients to perform rapid, long-distanc...
Voltage-gated ion channels (VGICs) are specialised ion channels that have a voltage dependent mode o...
Voltage-gated sodium (Nav) channels respond to changes in the membrane potential of excitable cells ...
Exploring the interaction of ligands with voltage-gated sodium channels (NaVs) has advanced our unde...
Voltage-gated sodium channels (NaVs) are activated by transiting the voltage sensor from the deactiv...