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One or more keywords matched the following items that are connected to Bezanilla, Francisco
Item TypeName
Concept Sodium Channels
Concept Sodium Channel Blockers
Academic Article Tracking voltage-dependent conformational changes in skeletal muscle sodium channel during activation.
Academic Article Voltage sensor movements.
Academic Article Coupling interactions between voltage sensors of the sodium channel as revealed by site-specific measurements.
Academic Article Detecting rearrangements of shaker and NaChBac in real-time with fluorescence spectroscopy in patch-clamped mammalian cells.
Academic Article beta-Scorpion toxin modifies gating transitions in all four voltage sensors of the sodium channel.
Academic Article Gating of the bacterial sodium channel, NaChBac: voltage-dependent charge movement and gating currents.
Academic Article An emerging consensus on voltage-dependent gating from computational modeling and molecular dynamics simulations.
Academic Article Distance measurements reveal a common topology of prokaryotic voltage-gated ion channels in the lipid bilayer.
Academic Article Alpha-scorpion toxin impairs a conformational change that leads to fast inactivation of muscle sodium channels.
Academic Article Domain IV voltage-sensor movement is both sufficient and rate limiting for fast inactivation in sodium channels.
Academic Article Thermal mechanisms of millimeter wave stimulation of excitable cells.
Academic Article Elucidation of the Covalent and Tertiary Structures of Biologically Active Ts3 Toxin.
Academic Article Mapping of voltage sensor positions in resting and inactivated mammalian sodium channels by LRET.
Academic Article Mechanism of functional interaction between potassium channel Kv1.3 and sodium channel NavBeta1 subunit.
Academic Article Gating currents.
Academic Article Nav channel binder containing a specific conjugation-site based on a low toxicity ß-scorpion toxin.
Academic Article Continuum Gating Current Models Computed with Consistent Interactions.
Concept Voltage-Gated Sodium Channels
Concept Voltage-Gated Sodium Channel Agonists
Concept NAV1.4 Voltage-Gated Sodium Channel
Grant ELECTROPHYSIOLOGICAL STUDIES OF VOLTAGE GATED CHANNELS
Grant Cell-targeted Gold Nanoparticles for Photo-excitation fo Retinal Ganglion Cells
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  • Sodium Channels