We have previously studied single, voltage-dependent, saxitoxin-(STX) blockable sodium channels from rat brain in planar lipid bilayers, and found that channel block by STX was voltage-dependent. Here we describe the effect of voltage on the degree of block and on the kinetics of the blocking reaction. From their voltage dependence and kinetics, it was possible to distinguish single-channel current fluctuations due to blocking and unblocking of the channels by STX from those caused by intrinsic channel gating. The use of batrachotoxin (BTX) to inhibit sodium-channel inactivation allowed recordings of stationary fluctuations over extended periods of time. In a range of membrane potentials where the channels were open greater than 98% of the ...
We have studied the action of several pore-blocking amines on voltage-dependent activation gating of...
Voltage-dependent Na channels have been purified from electric eel electroplax, rat brain, and rat a...
Voltage-dependent Na channels have been purified from electric eel electroplax, rat brain, and rat a...
We have previously studied single, voltage-dependent, saxitoxin-(STX) blockable sodium channels from...
The inhibition by saxitoxin (STX) of single Na channels incorporated into planar lipid bilayers and ...
We have studied the effects of membrane surface charge on Na+ ion permeation and Ca2+ block in singl...
Voltage-gated Na(+) channels (NaV channels) are specifically blocked by guanidinium toxins such as t...
Two different 3H-saxitoxin-binding proteins, with distinct biochemical and functional properties, we...
Two different 3H-saxitoxin-binding proteins, with distinct biochemical and functional properties, we...
Two different 3H-saxitoxin-binding proteins, with distinct biochemical and functional properties, we...
Two different 3H-saxitoxin-binding proteins, with distinct biochemical and functional properties, we...
Two different 3H-saxitoxin-binding proteins, with distinct biochemical and functional properties, we...
The effects of ionic strength (10–1,000 mM) on the gating of batrachotoxin-activated rat brain sodiu...
The rat brain IIa (BrIIa) Na channel alpha-subunit and the brain beta 1 subunit were coexpressed in ...
The rat brain IIa (BrIIa) Na channel alpha-subunit and the brain beta 1 subunit were coexpressed in ...
We have studied the action of several pore-blocking amines on voltage-dependent activation gating of...
Voltage-dependent Na channels have been purified from electric eel electroplax, rat brain, and rat a...
Voltage-dependent Na channels have been purified from electric eel electroplax, rat brain, and rat a...
We have previously studied single, voltage-dependent, saxitoxin-(STX) blockable sodium channels from...
The inhibition by saxitoxin (STX) of single Na channels incorporated into planar lipid bilayers and ...
We have studied the effects of membrane surface charge on Na+ ion permeation and Ca2+ block in singl...
Voltage-gated Na(+) channels (NaV channels) are specifically blocked by guanidinium toxins such as t...
Two different 3H-saxitoxin-binding proteins, with distinct biochemical and functional properties, we...
Two different 3H-saxitoxin-binding proteins, with distinct biochemical and functional properties, we...
Two different 3H-saxitoxin-binding proteins, with distinct biochemical and functional properties, we...
Two different 3H-saxitoxin-binding proteins, with distinct biochemical and functional properties, we...
Two different 3H-saxitoxin-binding proteins, with distinct biochemical and functional properties, we...
The effects of ionic strength (10–1,000 mM) on the gating of batrachotoxin-activated rat brain sodiu...
The rat brain IIa (BrIIa) Na channel alpha-subunit and the brain beta 1 subunit were coexpressed in ...
The rat brain IIa (BrIIa) Na channel alpha-subunit and the brain beta 1 subunit were coexpressed in ...
We have studied the action of several pore-blocking amines on voltage-dependent activation gating of...
Voltage-dependent Na channels have been purified from electric eel electroplax, rat brain, and rat a...
Voltage-dependent Na channels have been purified from electric eel electroplax, rat brain, and rat a...