Search
Leader | 00000nz a2200037n 45 0 | ||
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001 | WKP|Q51356404 (VIAF cluster) (Authority/Source Record) | ||
003 | WKP | ||
005 | 20241121000120.0 | ||
008 | 241121nneanz||abbn n and d | ||
035 | ‡a (WKP)Q51356404 | ||
024 | ‡a 0000-0002-1904-3057 ‡2 orcid | ||
024 | ‡a 22948940700 ‡2 scopus | ||
035 | ‡a (OCoLC)Q51356404 | ||
100 | 0 | ‡a জেনিফার জে স্মিথ ‡9 bn | |
375 | ‡a 2 ‡2 iso5218 | ||
400 | 0 | ‡a Jennifer J. Smith ‡c researcher ‡9 en | |
400 | 0 | ‡a Jennifer J Smith ‡c onderzoeker ‡9 nl | |
670 | ‡a Author's GluClR-mediated inhibitory postsynaptic currents reveal targets for ivermectin and potential mechanisms of ivermectin resistance | ||
670 | ‡a Author's Insect-Active Toxins with Promiscuous Pharmacology from the African Theraphosid Spider Monocentropus balfouri | ||
670 | ‡a Author's Isolation of two insecticidal toxins from venom of the Australian theraphosid spider Coremiocnemis tropix | ||
670 | ‡a Author's Mass landscapes of seven scorpion species: The first analyses of Australian species with 1,5-DAN matrix. | ||
670 | ‡a Author's Melanocortin-1 receptor-mediated signalling pathways activated by NDP-MSH and HBD3 ligands. | ||
670 | ‡a Author's Melanocortin MC₁ receptor in human genetics and model systems | ||
670 | ‡a Author's Membrane-binding properties of gating modifier and pore-blocking toxins: Membrane interaction is not a prerequisite for modification of channel gating | ||
670 | ‡a Author's Modulatory features of the novel spider toxin μ-TRTX-Df1a isolated from the venom of the spider Davus fasciatus. | ||
670 | ‡a Author's Molecular basis of the remarkable species selectivity of an insecticidal sodium channel toxin from the African spider Augacephalus ezendami | ||
670 | ‡a Author's Multiple actions of phi-LITX-Lw1a on ryanodine receptors reveal a functional link between scorpion DDH and ICK toxins | ||
670 | ‡a Author's Pharmacological characterisation of the highly NaV1.7 selective spider venom peptide Pn3a | ||
670 | ‡a Author's Seven novel modulators of the analgesic target NaV 1.7 uncovered using a high-throughput venom-based discovery approach | ||
670 | ‡a Author's The Aromatic Head Group of Spider Toxin Polyamines Influences Toxicity to Cancer Cells | ||
670 | ‡a Author's The insecticidal potential of venom peptides | ||
670 | ‡a Author's Unique scorpion toxin with a putative ancestral fold provides insight into evolution of the inhibitor cystine knot motif | ||
670 | ‡a Author's δ-Conotoxin SuVIA suggests an evolutionary link between ancestral predator defence and the origin of fish-hunting behaviour in carnivorous cone snails | ||
909 | ‡a (scopus) 22948940700 ‡9 1 | ||
909 | ‡a (orcid) 0000000219043057 ‡9 1 | ||
919 | ‡a δconotoxinsuviasuggestsanevolutionarylinkbetweenancestralpredatordefenceandtheoriginoffishhuntingbehaviourincarnivorousconesnails ‡A δ-Conotoxin SuVIA suggests an evolutionary link between ancestral predator defence and the origin of fish-hunting behaviour in carnivorous cone snails ‡9 1 | ||
919 | ‡a uniquescorpiontoxinwithaputativeancestralfoldprovidesinsightintoevolutionoftheinhibitorcystineknotmotif ‡A Unique scorpion toxin with a putative ancestral fold provides insight into evolution of the inhibitor cystine knot motif ‡9 1 | ||
919 | ‡a insecticidalpotentialofvenompeptides ‡A The insecticidal potential of venom peptides ‡9 1 | ||
919 | ‡a 7novelmodulatorsoftheanalgesictargetnav17uncoveredusingahighthroughputvenombaseddiscoveryapproach ‡A Seven novel modulators of the analgesic target NaV 1.7 uncovered using a high-throughput venom-based discovery approach ‡9 1 | ||
919 | ‡a pharmacologicalcharacterisationofthehighlynav17selectivespidervenompeptidepn3a ‡A Pharmacological characterisation of the highly NaV1.7 selective spider venom peptide Pn3a ‡9 1 | ||
919 | ‡a multipleactionsofphilitxlw1aonryanodinereceptorsrevealafunctionallinkbetweenscorpionddhandicktoxins ‡A Multiple actions of phi-LITX-Lw1a on ryanodine receptors reveal a functional link between scorpion DDH and ICK toxins ‡9 1 | ||
919 | ‡a molecularbasisoftheremarkablespeciesselectivityofaninsecticidalsodiumchanneltoxinfromtheafricanspideraugacephalusezendami ‡A Molecular basis of the remarkable species selectivity of an insecticidal sodium channel toxin from the African spider Augacephalus ezendami ‡9 1 | ||
919 | ‡a modulatoryfeaturesofthenovelspidertoxinμtrtxdf1aisolatedfromthevenomofthespiderdavusfasciatus ‡A Modulatory features of the novel spider toxin μ-TRTX-Df1a isolated from the venom of the spider Davus fasciatus. ‡9 1 | ||
919 | ‡a membranebindingpropertiesofgatingmodifierandporeblockingtoxinsmembraneinteractionisnotaprerequisiteformodificationofchannelgating ‡A Membrane-binding properties of gating modifier and pore-blocking toxins: Membrane interaction is not a prerequisite for modification of channel gating ‡9 1 | ||
919 | ‡a melanocortinmc1receptorinhumangeneticsandmodelsystems ‡A Melanocortin MC₁ receptor in human genetics and model systems ‡9 1 | ||
919 | ‡a melanocortin1receptormediatedsignallingpathwaysactivatedbyndpmshandhbd3ligands ‡A Melanocortin-1 receptor-mediated signalling pathways activated by NDP-MSH and HBD3 ligands. ‡9 1 | ||
919 | ‡a masslandscapesof7scorpionspeciesthe1analysesofaustralianspecieswith15danmatrix ‡A Mass landscapes of seven scorpion species: The first analyses of Australian species with 1,5-DAN matrix. ‡9 1 | ||
919 | ‡a aromaticheadgroupofspidertoxinpolyaminesinfluencestoxicitytocancercells ‡A The Aromatic Head Group of Spider Toxin Polyamines Influences Toxicity to Cancer Cells ‡9 1 | ||
919 | ‡a isolationof2insecticidaltoxinsfromvenomoftheaustraliantheraphosidspidercoremiocnemistropix ‡A Isolation of two insecticidal toxins from venom of the Australian theraphosid spider Coremiocnemis tropix ‡9 1 | ||
919 | ‡a insectactivetoxinswithpromiscuouspharmacologyfromtheafricantheraphosidspidermonocentropusbalfouri ‡A Insect-Active Toxins with Promiscuous Pharmacology from the African Theraphosid Spider Monocentropus balfouri ‡9 1 | ||
919 | ‡a gluclrmediatedinhibitorypostsynapticcurrentsrevealtargetsforivermectinandpotentialmechanismsofivermectinresistance ‡A GluClR-mediated inhibitory postsynaptic currents reveal targets for ivermectin and potential mechanisms of ivermectin resistance ‡9 1 | ||
946 | ‡a a ‡9 1 | ||
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