Structure and function of voltage-gated sodium channels.
about
De novo assembly and characterization of the transcriptome of the toxic dinoflagellate Karenia brevisbeta 3: an additional auxiliary subunit of the voltage-sensitive sodium channel that modulates channel gating with distinct kineticsThe sodium channel beta-subunit SCN3b modulates the kinetics of SCN5a and is expressed heterogeneously in sheep heartChannel cytoplasmic loops alter voltage-dependent sodium channel activation in an isoform-specific mannerA single residue differentiates between human cardiac and skeletal muscle Na+ channel slow inactivationTissue distribution and subcellular localization of the cardiac sodium channel during mouse heart developmentSlowed conduction and ventricular tachycardia after targeted disruption of the cardiac sodium channel gene Scn5a.Sodium channel isoform-specific effects of halothane: protein kinase C co-expression and slow inactivation gating.Predicting a double mutant in the twilight zone of low homology modeling for the skeletal muscle voltage-gated sodium channel subunit beta-1 (Nav1.4 β1).SCN5A is expressed in human jejunal circular smooth muscle cells.Endothelial and smooth muscle cell ion channels in pulmonary vasoconstriction and vascular remodelingRole of the C-terminal domain in inactivation of brain and cardiac sodium channelsRole of voltage-gated Na+ channels in hypoxia-induced neuronal injuries.A genetically targetable fluorescent probe of channel gating with rapid kinetics.Structural determinants of slow inactivation in human cardiac and skeletal muscle sodium channels.Variable ratio of permeability to gating charge of rBIIA sodium channels and sodium influx in Xenopus oocytes.Congenital insensitivity to pain: novel SCN9A missense and in-frame deletion mutationsCardiac channelopathies.Critical role of conserved proline residues in the transmembrane segment 4 voltage sensor function and in the gating of L-type calcium channels.Integrative modeling of the cardiac ventricular myocyte.Adaptive evolution of the vertebrate skeletal muscle sodium channel.The tail of the cardiac sodium channelA sodium channel pore mutation causing Brugada syndromeCharged residues between the selectivity filter and S6 segments contribute to the permeation phenotype of the sodium channel.Activation of protein kinase C alters the intracellular distribution and mobility of cardiac Na+ channels.Biophysical and Pharmacological Characterization of Nav1.9 Voltage Dependent Sodium Channels Stably Expressed in HEK-293 Cells.Voltage-Gated Na+ Channel Isoforms and Their mRNA Expression Levels and Protein Abundance in Three Electric Organs and the Skeletal Muscle of the Electric Eel Electrophorus electricusCan Specific Protein-Lipid Interactions Stabilize an Active State of the Beta 2 Adrenergic Receptor?Sodium channel inactivation: molecular determinants and modulation.Molecular architecture of the voltage-dependent Na channel: functional evidence for alpha helices in the pore.Identification of Amino Acid Residues in Fibroblast Growth Factor 14 (FGF14) Required for Structure-Function Interactions with Voltage-gated Sodium Channel Nav1.6.Voltage sensor interaction site for selective small molecule inhibitors of voltage-gated sodium channels.Dynamical characterization of inactivation path in voltage-gated Na(+) ion channel by non-equilibrium response spectroscopy.Paracellular Cl- permeability is regulated by WNK4 kinase: insight into normal physiology and hypertensionMolecular Characterization of Voltage-Gated Sodium Channels and Their Relations with Paralytic Shellfish Toxin Bioaccumulation in the Pacific Oyster Crassostrea gigas.Differential gene expressions in atrial and ventricular myocytes: insights into the road of applying embryonic stem cell-derived cardiomyocytes for future therapies.NaChBac: the long lost sodium channel ancestorRanolazine: an antianginal drug with antiarrhythmic properties.Advances in targeting voltage-gated sodium channels with small molecules.Pathophysiology of immune-mediated demyelinating neuropathies-part I: neuroscience.
P2860
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P2860
Structure and function of voltage-gated sodium channels.
description
1998 nî lūn-bûn
@nan
1998 թուականի Մայիսին հրատարակուած գիտական յօդուած
@hyw
1998 թվականի մայիսին հրատարակված գիտական հոդված
@hy
1998年の論文
@ja
1998年論文
@yue
1998年論文
@zh-hant
1998年論文
@zh-hk
1998年論文
@zh-mo
1998年論文
@zh-tw
1998年论文
@wuu
name
Structure and function of voltage-gated sodium channels.
@ast
Structure and function of voltage-gated sodium channels.
@en
Structure and function of voltage-gated sodium channels.
@nl
type
label
Structure and function of voltage-gated sodium channels.
@ast
Structure and function of voltage-gated sodium channels.
@en
Structure and function of voltage-gated sodium channels.
@nl
prefLabel
Structure and function of voltage-gated sodium channels.
@ast
Structure and function of voltage-gated sodium channels.
@en
Structure and function of voltage-gated sodium channels.
@nl
P2093
P2860
P1476
Structure and function of voltage-gated sodium channels.
@en
P2093
G F Tomaselli
T Yamagishi
P2860
P304
P356
10.1111/J.1469-7793.1998.647BP.X
P407
P478
508 ( Pt 3)
P577
1998-05-01T00:00:00Z