Batrachotoxin-modified sodium channels from squid optic nerve in planar bilayers. Ion conduction and gating properties
about
A simple model for surface charge on ion channel proteinsIon conduction in substates of the batrachotoxin-modified Na+ channel from toad skeletal muscle.Modeling ion permeation through batrachotoxin-modified Na+ channels from rat skeletal muscle with a multi-ion pore.Gating kinetics of batrachotoxin-modified Na+ channels in the squid giant axon. Voltage and temperature effectsLipid surface charge does not influence conductance or calcium block of single sodium channels in planar bilayers.Permeation of Na+ through open and Zn(2+)-occupied conductance states of cardiac sodium channels modified by batrachotoxin: exploring ion-ion interactions in a multi-ion channelCompetitive binding interaction between Zn2+ and saxitoxin in cardiac Na+ channels. Evidence for a sulfhydryl group in the Zn2+/saxitoxin binding site.Purified, modified eel sodium channels are active in planar bilayers in the absence of activating neurotoxinsIdentification of new batrachotoxin-sensing residues in segment IIIS6 of the sodium channel.Calcium block of single sodium channels: role of a pore-lining aromatic residueVoltage-sensitive sodium channels: agents that perturb inactivation gating.Divalent cation selectivity for external block of voltage-dependent Na+ channels prolonged by batrachotoxin. Zn2+ induces discrete substates in cardiac Na+ channels.Zn2(+)-induced subconductance events in cardiac Na+ channels prolonged by batrachotoxin. Current-voltage behavior and single-channel kinetics.Ion permeation in normal and batrachotoxin-modified Na+ channels in the squid giant axon.Alkaloid-modified sodium channels from lobster walking leg nerves in planar lipid bilayersExternal pH effects on the depolarization-activated K channels in guard cell protoplasts of Vicia faba.On the structural basis for size-selective permeation of organic cations through the voltage-gated sodium channel. Effect of alanine mutations at the DEKA locus on selectivity, inhibition by Ca2+ and H+, and molecular sievingIon channels in transit: voltage-gated Na and K channels in axoplasmic organelles of the squid Loligo pealei.Calcium ion as a cofactor in Na channel gating.Profiles of permeation through Na-channels.Ion flow through biomembranes. Physical theory explains its high sensitivity.
P2860
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P2860
Batrachotoxin-modified sodium channels from squid optic nerve in planar bilayers. Ion conduction and gating properties
description
1989 nî lūn-bûn
@nan
1989年の論文
@ja
1989年学术文章
@wuu
1989年学术文章
@zh-cn
1989年学术文章
@zh-hans
1989年学术文章
@zh-my
1989年学术文章
@zh-sg
1989年學術文章
@yue
1989年學術文章
@zh
1989年學術文章
@zh-hant
name
Batrachotoxin-modified sodium ...... nduction and gating properties
@ast
Batrachotoxin-modified sodium ...... nduction and gating properties
@en
type
label
Batrachotoxin-modified sodium ...... nduction and gating properties
@ast
Batrachotoxin-modified sodium ...... nduction and gating properties
@en
prefLabel
Batrachotoxin-modified sodium ...... nduction and gating properties
@ast
Batrachotoxin-modified sodium ...... nduction and gating properties
@en
P2093
P2860
P356
P1476
Batrachotoxin-modified sodium ...... nduction and gating properties
@en
P2093
A Oberhauser
F Bezanilla
M I Behrens
P2860
P356
10.1085/JGP.93.1.23
P577
1989-01-01T00:00:00Z