articleTop 10% cited
Multiple Amylin Receptors Arise from Receptor Activity-Modifying Protein Interaction with the Calcitonin Receptor Gene Product
Molecular Pharmacology · 1999 · Vol. 56(1) · pp. 235–242
George Christopoulos✉(University of Melbourne)Katie J. Perry(University of Hertfordshire)Maria Morfis(University of Melbourne)Nanda Tilakaratne(University of Hertfordshire)Yongyi Gao(University of Hertfordshire)Neil J. Fraser(University of Hertfordshire)Martin J. Main(University of Hertfordshire)Steven M. Foord(University of Melbourne)Patrick M. Sexton(University of Hertfordshire)
Neuropeptides and Animal PhysiologyReceptor Mechanisms and SignalingPeptidase Inhibition and AnalysisAmylinReceptorCalcitonin receptorCalcitonin gene-related peptideCalcitoninChemistryAdrenomedullinBiophysicsEndocrinologyInternal medicine
MeSH terms
Cyclic AMPAnimalsBinding, CompetitiveCells, CulturedChlorocebus aethiopsDose-Response Relationship, DrugCricetinaeHumansMembrane ProteinsCHO CellsReceptors, PeptideReceptors, CalcitoninCOS CellsIntracellular Signaling Peptides and ProteinsReceptor Activity-Modifying Proteins
Citations
479
FWCI
8.95
field-weighted impact
References
32
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99%
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Cited by
Autonomic regulation of islet hormone secretion - Implications for health and disease
Diabetologia · 2000 · 894 citations
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