about
Dicarba α-conotoxin Vc1.1 analogues with differential selectivity for nicotinic acetylcholine and GABAB receptorsDicarba analogues of α-conotoxin RgIA. Structure, stability, and activity at potential pain targetsA Naturally Occurring Peptide with an Elementary Single Disulfide-Directed β-Hairpin FoldDiversity of conotoxin gene superfamilies in the venomous snail, Conus victoriaeTissue plasminogen activator inhibits NMDA-receptor-mediated increases in calcium levels in cultured hippocampal neurons.The Venom Repertoire of Conus gloriamaris (Chemnitz, 1777), the Glory of the Sea.Interactions of disulfide-deficient selenocysteine analogs of μ-conotoxin BuIIIB with the α-subunit of the voltage-gated sodium channel subtype 1.3.Specialized insulin is used for chemical warfare by fish-hunting cone snails.Conotoxin gene superfamilies.Discovery by proteogenomics and characterization of an RF-amide neuropeptide from cone snail venomInsulin as a weapon.Venom peptides as pharmacological tools and therapeutics for diabetes.Hormone-like peptides in the venoms of marine cone snails.Venom peptides as therapeutics: advances, challenges and the future of venom-peptide discovery.The Single Disulfide-Directed β-Hairpin Fold. Dynamics, Stability, and Engineering.Buzz Kill: Function and Proteomic Composition of Venom from the Giant Assassin Fly (Diptera: Asilidae)A comprehensive portrait of the venom of the giant red bull ant, , reveals a hyperdiverse hymenopteran toxin gene familyNovel Peptide Antagonists of Adrenomedullin and Calcitonin Gene-Related Peptide Receptors: Identification, Pharmacological Characterization, and Interactions with Position 74 in Receptor Activity-Modifying Protein 1/3Discovery of Novel Conotoxin Candidates Using Machine LearningFish-hunting cone snail venoms are a rich source of minimized ligands of the vertebrate insulin receptorMissiles of Mass Disruption: Composition and Glandular Origin of Venom Used as a Projectile Defensive Weapon by the Assassin Bug Platymeris rhadamanthusConopeptides promote itch through human itch receptor hMgprX1Entomo-venomics: The evolution, biology and biochemistry of insect venomsNaV 1.6 regulates excitability of mechanosensitive sensory neuronsCharacterization of the First Conotoxin from Conus ateralbus, a Vermivorous Cone Snail from the Cabo Verde ArchipelagoThe three-dimensional structure of an H-superfamily conotoxin reveals a granulin fold arising from a common ICK cysteine frameworkAn Integrated Proteomic and Transcriptomic Analysis Reveals the Venom Complexity of the Bullet Ant Paraponera clavata
P50
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P50
description
hulumtues
@sq
onderzoeker
@nl
researcher
@en
հետազոտող
@hy
name
Samuel D Robinson
@ast
Samuel D Robinson
@en
Samuel D Robinson
@es
Samuel D Robinson
@nl
Samuel D Robinson
@sl
type
label
Samuel D Robinson
@ast
Samuel D Robinson
@en
Samuel D Robinson
@es
Samuel D Robinson
@nl
Samuel D Robinson
@sl
prefLabel
Samuel D Robinson
@ast
Samuel D Robinson
@en
Samuel D Robinson
@es
Samuel D Robinson
@nl
Samuel D Robinson
@sl
P106
P21
P31
P496
0000-0002-3518-0377