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MOLECULAR PHARMACOLOGY, ISSN 0026-895X, 11/2019, Volume 96, Issue 5, pp. 550 - 561
Many physiologic processes are controlled through the activation of G protein-coupled receptors (GPCRs) by regulatory peptides, making peptide GPCRs... 
INTERNATIONAL UNION | OREXIN-2 RECEPTORS | THYROTROPIN-RELEASING-HORMONE | STRUCTURAL BASIS | AMINO-ACIDS | HIGH-AFFINITY | TRANSMEMBRANE DOMAIN 3 | PHARMACOLOGY & PHARMACY | SITE-DIRECTED MUTAGENESIS | C-TERMINAL AMIDE | NEUROPEPTIDE-Y | Index Medicus
Journal Article
PLoS ONE, ISSN 1932-6203, 01/2016, Volume 11, Issue 1, p. e0146248
Sequencing of the honeybee genome revealed many neuropeptides and putative neuropeptide receptors, yet functional characterization of these peptidic systems is... 
MUSHROOM BODIES | PROBOSCIS EXTENSION RESPONSE | RED FLOUR BEETLE | LONG-TERM-MEMORY | DROSOPHILA-MELANOGASTER | JUVENILE-HORMONE SYNTHESIS | MULTIDISCIPLINARY SCIENCES | PROTEIN-COUPLED RECEPTORS | CONSTITUTIVE ACTIVITY | SYNAPTIC PLASTICITY | MOLECULAR-MECHANISMS | Brain - anatomy & histology | Appetitive Behavior - physiology | Receptors, Galanin - genetics | Molecular Sequence Data | Bees - classification | Juvenile Hormones - genetics | Phylogeny | Brain - physiology | Galanin - metabolism | Receptors, Somatostatin - genetics | Olfactory Perception - physiology | Conserved Sequence | Receptors, Somatostatin - metabolism | Neuropeptides - genetics | Insect Proteins - metabolism | Somatostatin - metabolism | Amino Acid Sequence | Somatostatin - genetics | Signal Transduction | Juvenile Hormones - metabolism | Gene Expression Regulation | Insect Proteins - genetics | Neuropeptides - metabolism | Bees - physiology | Sequence Homology, Amino Acid | Learning - physiology | Sequence Alignment | Animals | Receptors, Galanin - metabolism | Galanin - genetics | Neuropeptides | Honeybee | Somatostatin | Research | Brain | Neurosciences | Transcription | Peptides | Galanin | Neuropeptide receptors | Memory | Zoology | Olfactory discrimination learning | Genomes | Gene expression | Bees | Gene sequencing | Learning | Honey | Receptors | Insects | Rodents | Physiology | Receptor mechanisms | Somatostatin receptors | Animal cognition | Life Sciences
Journal Article
by Balazard, F and Le Fur, S and Valtat, S and Valleron, A.J and Bougnères, Pierre and Thevenieau, Dominique and Chatel, Corinne Fourmy and Desailloud, Rachel and Bony-Trifunovic, Hélène and Ducluzeau, Pierre-Henri and Coutant, Régis and Caudrelier, Sophie and Pambou, Armelle and Dubosclard, Emmanuelle and Joubert, Florence and Jan, Philippe and Marcoux, Estelle and Bertrand, Anne-Marie and Mignot, Brigitte and Penformis, Alfred and Stuckens, Chantal and Piquemal, Régis and Barat, Pascal and Rigalleau, Vincent and Stheneur, Chantal and Fournier, Sylviane and Kerlan, Véronique and Metz, Chantal and Fargeot-Espaliat, Anne and Reznic, Yves and Olivier, Frédérique and Gueorguieva, Iva and Monier, Arnaud and Radet, Catherine and Gajdos, Vincent and Terral, Daniel and Vervel, Christine and Bendifallah, Djamel and Signor, Candace Ben and Dervaux, Daniel and Benmahammed, Abdelkader and Loeuille, Guy-André and Popelard, Françoise and Guillou, Agnès and Benhamou, Pierre-Yves and Khoury, Jamil and Brossier, Jean-Pierre and Bassil, Joachim and Clavel, Sylvaine and Le Luyer, Bernard and Bougnères, Pierre and Labay, Françoise and Guemas, Isabelle and Weill, Jacques and Cappoen, Jean-Pierre and Nadalon, Sylvie and Lienhardt-Roussie, Anne and Paoli, Anne and Kerouedan, Claudie and Yollin, Edwige and Nicolino, Marc and Simonin, Gilbert and Cohen, Jacques and Atlan, Catherine and Tamboura, Agnès and Dubourg, Hervé and Pignol, Marie-Laure and Talon, Philippe and Jellimann, Stéphanie and Chaillous, Lucy and Baron, Sabine and Bortoluzzi, Marie-Noëlle and Baechler, Elisabeth and Salet, Randa and Zelinsky-Gurung, Ariane and Dallavale, Fabienne and Larger, Etienne and Laloi-Michelin, Marie and Gautier, Jean-François and Guérin, Bénédicte and Oilleau, Laure and Pantalone, Laetitia and Lukas, Céline and Guilhem, Isabelle and De Kerdanet, Marc and Wielickzo, Marie-Claire and Priou-Guesdon, Mélanie and Richard, Odile and Kurtz, François and Laisney, Norbert and Ancelle, Déborah and Parlier, Guilhem and Boniface, Catherine and Bockel, Dominique Paris and Dufillot, Denis and Razafimahefa, Berthe and Gourdy, Pierre and Lecomte, Pierre and Pepin-Donat, Myriam and Combes-Moukhovsky, Marie-Emmanuelle and ... and Isis-Diab collaborative group
BMC Public Health, ISSN 1471-2458, 09/2016, Volume 16, Issue 1, pp. 1021 - 10
The incidence of childhood type 1 diabetes (T1D) incidence is rising in many countries, supposedly because of changing environmental factors, which are yet... 
Environment | Data-driven | Type 1 diabetes | Epidemiology | Case-control | Surveys | Medical research | Analysis | Gastroenteritis | Medicine, Experimental | Diagnosis | Wasps | Health surveys | Health aspects | Public health | Life Sciences | Human health and pathology | Endocrinology and metabolism | Case–control
Journal Article
Current Topics in Medicinal Chemistry, ISSN 1568-0266, 06/2007, Volume 7, Issue 12, p. 1153
Journal Article
Journal of Controlled Release, ISSN 0168-3659, 01/2018, Volume 270, pp. 120 - 134
Journal Article
Frontiers in Endocrinology, ISSN 1664-2392, 2013, Volume 4
G protein coupled receptors (GPCRs) constitute a large family of receptors that sense molecules outside the cell and activate inside signal transduction... 
GLP-1 | Receptor | Biased ligands | Estrogen | Arrestin | Adverse effects | Cancer | G protein | estrogen | receptor
Journal Article
Biologie aujourd'hui, 2018, Volume 212, Issue 1-2, p. 13
G-protein coupled receptors represent the largest family of membrane receptors. G-protein dependent signal of GPCR is classically thought to originate... 
Gastric Inhibitory Polypeptide - physiology | Animals | Humans | Receptors, Gastrointestinal Hormone - physiology | Signal Transduction - physiology | Endosomes - enzymology | Adenylyl Cyclases - metabolism | Enzyme Activation | Endosomes - metabolism | Protein Transport
Journal Article
Naunyn-Schmiedeberg's Archives of Pharmacology, ISSN 0028-1298, 8/2015, Volume 388, Issue 8, pp. 883 - 903
G-protein coupled receptors (GPCRs) are the targets of over half of all prescribed drugs today. The UniProt database has records for about 800 proteins... 
Neurosciences | CXCR 1 , CXCR 2 , CCR 4 and CCR 5 , chemokine receptors | TM, trans-membrane helix | β 2 AR, β 2 -adrenergic receptor | ProS, pairwise protein similarity method | CRF1, corticotropin releasing factor receptor 1 | T4L, T4-lysozyme | ECL, extracellular loop | GLP-1, Glucagon-like peptide-1 receptor | hM 3 R, human muscarinic M3 receptor | α1B Adrenergic receptor | Pharmacology/Toxicology | 7TM, seven-transmembrane domain | HGMP, hierarchical GPCR modelling protocol | PDB, Protein Data Bank | XFELs, x-ray free electron lasers | 5-HT 2B and 5-HT 2C , human 5-hydroxytryptamine receptors 2B and 2C, respectively | GLAS, GPCR-likeness assessment score | H 1 , histamine receptor 1 | 3D, three-dimensional | Biomedicine | CCK 2 R, cholecystokinin receptor-2 | MD, molecular dynamic simulations | GPCRs, G-protein coupled receptors | Dopamine D 2 receptor | BRIL, apocytochrome b 562 RIL | δ-OR, delta-opioid receptor | SDM, site-directed mutagenesis | CCK2R, cholecystokinin receptor-2 | PEPTIDE-1 RECEPTOR | DESIGN | CXCR1, CXCR2, CCR4, and CCR5, chemokine receptors | beta 2AR, beta 2-adrenergic receptor | hMR, human muscarinic M3 receptor | HUMAN OREXIN-1 | PHARMACOLOGY & PHARMACY | ANTAGONISTS | Dopamine D-2 receptor | PROTEIN-COUPLED RECEPTORS | SITE-DIRECTED MUTAGENESIS | alpha 1B Adrenergic receptor | LIPIDIC CUBIC PHASE | delta-OR, delta-opioid receptor | 5-HT2B and 5-HT2C, human 5-hydroxytryptamine receptors 2B and 2C, respectively | H-1, histamine receptor 1 | SERIAL FEMTOSECOND CRYSTALLOGRAPHY | BINDING | SELECTIVITY | BRIL, apocytochrome bRIL | Animals | Receptors, G-Protein-Coupled - metabolism | Computer Simulation | Drug Industry | Humans | Cooperative Behavior | Models, Molecular | Crystallography | Drug Discovery | Universities | Drug discovery | BRIL, apocytochrome b562RIL | Meeting Report | H1, histamine receptor 1 | β2AR, β2-adrenergic receptor | CXCR1, CXCR2, CCR4 and CCR5, chemokine receptors | hM3R, human muscarinic M3 receptor | Dopamine D2 receptor
Journal Article