Proceedings of the National Academy of Sciences · 1990 · 279 citations · 27 references
Synaptic TransmissionNeurotransmitterSynaptic SignalingSocial SciencesMolecular PharmacologyRat Brain 5Ht2Cell SignalingSerotonin ReceptorsMolecular SignalingMolecular NeuroscienceMolecular PhysiologyG Protein-coupled ReceptorReceptor (Biochemistry)NeuropharmacologyPharmacologyCell BiologySerotonin Receptor CdnaSignal TransductionFunctional SelectivityNeuroscienceMolecular NeurobiologyCentral Nervous SystemMedicine
Serotonin exerts its diverse physiological effects by interacting with multiple distinct receptor subtypes. We have isolated a rat brain 5HT2 serotonin receptor cDNA by virtue of its homology with the 5HT1c receptor. The 5HT2 receptor is a member of the family of receptors that are linked to guanine nucleotide-binding proteins and are predicted to span the lipid bilayer seven times. Overall sequence identity between the 5HT2 and 5HT1c receptors is 49%, but identity within the transmembrane domains is 80%. Expression of both the 5HT2 and 5HT1c receptors in transfected mouse fibroblasts activates phospholipase C signaling pathways and promotes cellular transformation. However, RNA blotting shows that these two receptor subtypes are differentially expressed in the central nervous system. In this manner, structurally and functionally homologous receptor subtypes may elicit distinct physiologic actions.
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DNA sequencing with chain-terminating inhibitors
Frederick Sanger, S. Nicklen, Alan Coulson · Proceedings of the National Academy of Sciences · 1977 · 69.1K citations · Full text
Dna, Engineering, Dna Analysis +20
Identification of a Family of Muscarinic Acetylcholine Receptor Genes
Tom I. Bonner, Noel J. Buckley, Alice C. Young et al. · Science · 1987 · 1.4K citations