2018
Mapping the Proteome of the Synaptic Cleft through Proximity Labeling Reveals New Cleft Proteins
Cijsouw T, Ramsey AM, Lam TT, Carbone BE, Blanpied TA, Biederer T. Mapping the Proteome of the Synaptic Cleft through Proximity Labeling Reveals New Cleft Proteins. Proteomes 2018, 6: 48. PMID: 30487426, PMCID: PMC6313906, DOI: 10.3390/proteomes6040048.Peer-Reviewed Original ResearchProximity labelingLabel-free quantitation mass spectrometryReceptor-type tyrosine-protein phosphatase zetaProximity labeling approachCell-cell contactSynaptic cleftPost-synaptic specializationsProteomic contentSynapse heterogeneitySynCAM 1Confocal microcopySurface proteinsCell surfaceProteomeSuper-resolution imagingCultured cortical neuronsMammalian brainLabeling approachMolecular compositionReporterProteinCortical neuronsFunctional organizationExcitatory synapsesDiverse set
2000
Mints as Adaptors DIRECT BINDING TO NEUREXINS AND RECRUITMENT OF Munc18*
Biederer T, Südhof T. Mints as Adaptors DIRECT BINDING TO NEUREXINS AND RECRUITMENT OF Munc18*. Journal Of Biological Chemistry 2000, 275: 39803-39806. PMID: 11036064, DOI: 10.1074/jbc.c000656200.Peer-Reviewed Original ResearchConceptsAdaptor proteinPDZ domain-mediated interactionsDomain-mediated interactionsSynaptic vesicle exocytosisCell surface proteinsNeuronal adaptor proteinMultiprotein complexesProtein essentialCytoplasmic tailMunc18-1Vesicle exocytosisPlasma membraneMunc18NeurexinsDirect bindingPossible functionsSurface proteinsProteinExocytosisMINT1RecruitmentComplexesMint2BindsMint