Structure-activity relationships of omega-conotoxins MVIIA, MVIIC and 14 loop splice hybrids at N and P/Q-type calcium channels
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Ziconotide: a review of its pharmacology and use in the treatment of painOmega-conotoxin CVID inhibits a pharmacologically distinct voltage-sensitive calcium channel associated with transmitter release from preganglionic nerve terminalsThe alpha2delta auxiliary subunit reduces affinity of omega-conotoxins for recombinant N-type (Cav2.2) calcium channelsNovel omega-conotoxins from Conus catus discriminate among neuronal calcium channel subtypesRole of Thr(11) in the binding of omega-conotoxin MVIIC to N-type Ca2+ channels.Macrocyclic Antimicrobial Peptides Engineered from ω-Conotoxin.Structure-activity relationships of omega-conotoxins at N-type voltage-sensitive calcium channels.Asteropsins B-D, sponge-derived knottins with potential utility as a novel scaffold for oral peptide drugsSO-3, a new O-superfamily conopeptide derived from Conus striatus, selectively inhibits N-type calcium currents in cultured hippocampal neurons.Cloning, synthesis, and characterization of αO-conotoxin GeXIVA, a potent α9α10 nicotinic acetylcholine receptor antagonist.Venom peptides as a rich source of cav2.2 channel blockers.P/Q-type calcium channel modulators.Targeting voltage-gated calcium channels: developments in peptide and small-molecule inhibitors for the treatment of neuropathic pain.Omega-conotoxins as experimental tools and therapeutics in pain management.The Molecular Basis of Toxins' Interactions with Intracellular Signaling via Discrete Portals.Conotoxins as Tools to Understand the Physiological Function of Voltage-Gated Calcium (CaV) Channels.Allosteric alpha 1-adrenoreceptor antagonism by the conopeptide rho-TIA.ω-Conotoxins GVIA, MVIIA and CVID: SAR and Clinical Potential.Cone Snails: A Big Store of Conotoxins for Novel Drug Discovery.Neuronally micro-conotoxins from Conus striatus utilize an alpha-helical motif to target mammalian sodium channels.New Conotoxin SO-3 Targeting N-type Voltage-Sensitive Calcium Channels.Toxin structures as evolutionary tools: Using conserved 3D folds to study the evolution of rapidly evolving peptides.Effect of Methionine Oxidation and Substitution of α-Conotoxin TxID on α3β4 Nicotinic Acetylcholine Receptor.Novel analgesic ω-conotoxins from the vermivorous cone snail Conus moncuri provide new insights into the evolution of conopeptides
P2860
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P2860
Structure-activity relationships of omega-conotoxins MVIIA, MVIIC and 14 loop splice hybrids at N and P/Q-type calcium channels
description
1999 nî lūn-bûn
@nan
1999 թուականի Յունիսին հրատարակուած գիտական յօդուած
@hyw
1999 թվականի հունիսին հրատարակված գիտական հոդված
@hy
1999年の論文
@ja
1999年論文
@yue
1999年論文
@zh-hant
1999年論文
@zh-hk
1999年論文
@zh-mo
1999年論文
@zh-tw
1999年论文
@wuu
name
Structure-activity relationshi ...... and P/Q-type calcium channels
@ast
Structure-activity relationshi ...... and P/Q-type calcium channels
@en
Structure-activity relationshi ...... and P/Q-type calcium channels
@nl
type
label
Structure-activity relationshi ...... and P/Q-type calcium channels
@ast
Structure-activity relationshi ...... and P/Q-type calcium channels
@en
Structure-activity relationshi ...... and P/Q-type calcium channels
@nl
prefLabel
Structure-activity relationshi ...... and P/Q-type calcium channels
@ast
Structure-activity relationshi ...... and P/Q-type calcium channels
@en
Structure-activity relationshi ...... and P/Q-type calcium channels
@nl
P2093
P356
P1476
Structure-activity relationshi ...... and P/Q-type calcium channels
@en
P2093
K J Nielsen
P F Alewood
P304
P356
10.1006/JMBI.1999.2817
P407
P577
1999-06-25T00:00:00Z