sameAs
Complexing receptor pharmacology: modulation of family B G protein-coupled receptor function by RAMPsGPCR modulation by RAMPsIdentification of N-terminal receptor activity-modifying protein residues important for calcitonin gene-related peptide, adrenomedullin, and amylin receptor functionKnockouts and transgenics confirm the importance of adrenomedullin in the vasculature.Adrenomedullin receptors: molecular identity and function.Desensitisation of adrenomedullin and CGRP receptors.Convergent chemoenzymatic synthesis of a library of glycosylated analogues of pramlintide: structure-activity relationships for amylin receptor agonism.Differential activation of G-proteins by mu-opioid receptor agonists.The pharmacology of adrenomedullin receptors and their relationship to CGRP receptors.The receptor activity modifying protein family of G protein coupled receptor accessory proteins.Structural Basis for Receptor Activity-Modifying Protein-Dependent Selective Peptide Recognition by a G Protein-Coupled Receptor.Calcitonin and calcitonin receptor-like receptors: common themes with family B GPCRs?Pharmacological characterization of rat amylin receptors: implications for the identification of amylin receptor subtypes.Receptor activity-modifying protein-dependent impairment of calcitonin receptor splice variant Δ(1-47)hCT((a)) function.Calcitonin and Amylin Receptor Peptide Interaction Mechanisms: INSIGHTS INTO PEPTIDE-BINDING MODES AND ALLOSTERIC MODULATION OF THE CALCITONIN RECEPTOR BY RECEPTOR ACTIVITY-MODIFYING PROTEINS.What makes a CGRP2 receptor?Amylin structure-function relationships and receptor pharmacology: implications for amylin mimetic drug development.CGRP in the trigeminovascular system: a role for CGRP, adrenomedullin and amylin receptors?Modulating receptor function through RAMPs: can they represent drug targets in themselves?Calcitonin gene-related peptide, adrenomedullin and flushing.Structure-function relationships of the N-terminus of receptor activity-modifying proteins.Receptor activity-modifying protein-dependent effects of mutations in the calcitonin receptor-like receptor: implications for adrenomedullin and calcitonin gene-related peptide pharmacology.Regulation of signal transduction by calcitonin gene-related peptide receptors.Receptor activity modifying proteins and their potential as drug targets.Adrenomedullin and calcitonin gene-related peptide receptors in endocrine-related cancers: opportunities and challenges.The pharmacology of adrenomedullin 2/intermedin.Structural insights into RAMP modification of secretin family G protein-coupled receptors: implications for drug development.RAMPs and CGRP receptors.RAMPs as drug targets.The structure of secretin family GPCR peptide ligands: implications for receptor pharmacology and drug development.Structure-activity relationships for α-calcitonin gene-related peptide.CGRP receptor antagonists: design and screening.Functions of third extracellular loop and helix 8 of Family B GPCRs complexed with RAMPs and characteristics of their receptor trafficking.PACAP receptor pharmacology and agonist bias: analysis in primary neurons and glia from the trigeminal ganglia and transfected cellsAnxiogenic and Stressor Effects of the Hypothalamic Neuropeptide RFRP-3 Are Overcome by the NPFFR Antagonist GJ14.Amylin: Pharmacology, Physiology, and Clinical Potential.Glicentin-related pancreatic polypeptide inhibits glucose-stimulated insulin secretion from the isolated pancreas of adult male ratsReceptor Activity-Modifying Proteins (RAMPs): New Insights and Roles.Receptor activity-modifying proteins; multifunctional G protein-coupled receptor accessory proteins.Identification of a pathway by which glucose regulates β-catenin signalling via the cAMP/protein kinase A pathway in β-cell models.
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P50
description
New Zealand academic
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académica neozelandesa
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wetenschapper
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أكاديمية نيوزيلندية
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name
Debbie L Hay
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Debbie L Hay
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Debbie L. Hay
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Debbie L. Hay
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type
label
Debbie L Hay
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Debbie L Hay
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Debbie L. Hay
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Debbie L. Hay
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Debbie Hay
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Debbie Lucy Hay
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Debbie L Hay
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Debbie L Hay
@sl
Debbie L. Hay
@en
Debbie L. Hay
@es
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