2016
Mechanism of Paroxetine (Paxil) Inhibition of the Serotonin Transporter
Davis BA, Nagarajan A, Forrest LR, Singh SK. Mechanism of Paroxetine (Paxil) Inhibition of the Serotonin Transporter. Scientific Reports 2016, 6: 23789. PMID: 27032980, PMCID: PMC4817154, DOI: 10.1038/srep23789.Peer-Reviewed Original ResearchMeSH KeywordsAmino Acid SequenceAnimalsBinding SitesCells, CulturedChickensCocaineDopamine Plasma Membrane Transport ProteinsDrosophila melanogasterDrosophila ProteinsModels, MolecularMolecular ConformationMolecular Docking SimulationParoxetineProtein ConformationRadioligand AssaySelective Serotonin Reuptake InhibitorsSequence AlignmentSequence Homology, Amino AcidSerotoninSerotonin Plasma Membrane Transport ProteinsConceptsIntegral membrane proteinsDrosophila melanogaster dopamine transporterSERT homology modelMembrane proteinsSerotonin transporterMolecular insightsHomology modelIon gradientsFlux assaysTransportersSERT substratesPotassium ion gradientSignificant clinical attentionPresynaptic neuronsDopamine transporterProteinUnfavorable movementSitesSynaptic serotoninBindingSubstrateAssaysRadioligand bindingInhibitorsPotent selective serotonin reuptake inhibitor
2015
Cryo-EM: Spinning the Micelles Away
Singh SK, Sigworth FJ. Cryo-EM: Spinning the Micelles Away. Structure 2015, 23: 1561. PMID: 26331455, PMCID: PMC4901521, DOI: 10.1016/j.str.2015.08.001.Peer-Reviewed Original Research
2014
Functionally Important Carboxyls in a Bacterial Homologue of the Vesicular Monoamine Transporter (VMAT)*
Yaffe D, Vergara-Jaque A, Shuster Y, Listov D, Meena S, Singh SK, Forrest LR, Schuldiner S. Functionally Important Carboxyls in a Bacterial Homologue of the Vesicular Monoamine Transporter (VMAT)*. Journal Of Biological Chemistry 2014, 289: 34229-34240. PMID: 25336661, PMCID: PMC4256354, DOI: 10.1074/jbc.m114.607366.Peer-Reviewed Original ResearchMeSH KeywordsAmino Acid SequenceAnimalsArginineBacterial ProteinsBiogenic MonoaminesBrevibacillusCarrier ProteinsDrug Resistance, BacterialEscherichia coliEvolution, MolecularGene ExpressionHistidineModels, MolecularMolecular Sequence DataProtein FoldingRatsRecombinant ProteinsSequence AlignmentStructural Homology, ProteinStructure-Activity RelationshipSubstrate SpecificitySynaptic TransmissionVesicular Monoamine Transport ProteinsConceptsBacterial multidrug transportersMultidrug transporterBacterial homologueVesicular monoamine transporterRat vesicular monoamine transporterMonoamine transportersPreliminary biochemical characterizationMammalian transportersTransmembrane helicesMammalian counterpartsTransmembrane segmentsMammalian organismsEvolutionary aspectsMajor facilitatorBiochemical characterizationImportant carboxylB. brevisHomology modelBiochemical studiesTransportersHomologuesCarboxyl residuesAntibiotic resistanceOrganismsNeurotransporters
2009
Crystal structure and association behaviour of the GluR2 amino‐terminal domain
Jin R, Singh SK, Gu S, Furukawa H, Sobolevsky AI, Zhou J, Jin Y, Gouaux E. Crystal structure and association behaviour of the GluR2 amino‐terminal domain. The EMBO Journal 2009, 28: 1812-1823. PMID: 19461580, PMCID: PMC2699365, DOI: 10.1038/emboj.2009.140.Peer-Reviewed Original ResearchConceptsAmino-terminal domainLigand-gated ion channel proteinsReceptor assemblyModular domain architectureIon channel proteinsFast excitatory neurotransmissionSame subfamilyMolecular basisReceptor subfamiliesChannel proteinsMolecular processesSubfamiliesAMPA receptor GluR1Ionotropic glutamate receptorsCrystal structureExcitatory neurotransmissionAssemblyGlutamate receptorsPropose mechanismsReceptorsSubunitsDomainProteinAssemblagesNMDA receptors
2007
Antidepressant binding site in a bacterial homologue of neurotransmitter transporters
Singh SK, Yamashita A, Gouaux E. Antidepressant binding site in a bacterial homologue of neurotransmitter transporters. Nature 2007, 448: 952-956. PMID: 17687333, DOI: 10.1038/nature06038.Peer-Reviewed Original Research
2005
Subunit arrangement and function in NMDA receptors
Furukawa H, Singh SK, Mancusso R, Gouaux E. Subunit arrangement and function in NMDA receptors. Nature 2005, 438: 185-192. PMID: 16281028, DOI: 10.1038/nature04089.Peer-Reviewed Original ResearchConceptsHeteromeric ion channelsNR1-NR2AMammalian central nervous systemSlow channel openingChannel openingHeterodimer interfaceTransduction cascadeIon channel openingSubunit arrangementSubunit interfaceIon channelsNR2 subunitsReceptor functionChannel deactivationNMDA receptorsNMDA receptor functionReceptorsExcitatory neurotransmissionFunctional unitsCentral nervous systemNR1GlutamateGlycineNervous systemHeterodimers