2017
Palmitoylation of the ciliary GTPase ARL13b is necessary for its stability and its role in cilia formation
Roy K, Jerman S, Jozsef L, McNamara T, Onyekaba G, Sun Z, Marin EP. Palmitoylation of the ciliary GTPase ARL13b is necessary for its stability and its role in cilia formation. Journal Of Biological Chemistry 2017, 292: 17703-17717. PMID: 28848045, PMCID: PMC5663873, DOI: 10.1074/jbc.m117.792937.Peer-Reviewed Original ResearchConceptsPost-translational attachmentMost mammalian cellsCiliary GTPase Arl13bCilia localizationProtein palmitoylationCiliary proteinsCilia proteinsProtein localizationCilia formationMammalian cellsCilia functionPalmitoylationPrimary ciliaPlasma membraneCilia resorptionArl13bFunctional importanceMyristoylationCiliaCritical roleProteinMouse kidneyLocalizationDepalmitoylationCells
2015
Neuronal ceroid lipofuscinosis with DNAJC5/CSPα mutation has PPT1 pathology and exhibit aberrant protein palmitoylation
Henderson MX, Wirak GS, Zhang YQ, Dai F, Ginsberg SD, Dolzhanskaya N, Staropoli JF, Nijssen PC, Lam TT, Roth AF, Davis NG, Dawson G, Velinov M, Chandra SS. Neuronal ceroid lipofuscinosis with DNAJC5/CSPα mutation has PPT1 pathology and exhibit aberrant protein palmitoylation. Acta Neuropathologica 2015, 131: 621-637. PMID: 26659577, PMCID: PMC4791186, DOI: 10.1007/s00401-015-1512-2.Peer-Reviewed Original ResearchConceptsNeuronal ceroid lipofuscinosesProtein palmitoylationDisease pathwaysPalmitoyl-protein thioesterase 1Forms of NCLEnzyme palmitoyl-protein thioesterase 1Disease-associated proteinsCommon disease pathwaysNCL genesQuantitative proteomicsCSPα mutationsSpecific enzymatic activityCSPαFunctional linkNeuronal ceroid lipofuscinosisGlobal changePPT1Synaptic proteinsEnzymatic activityCeroid lipofuscinosesPalmitoylationGenesCeroid lipofuscinosisNeurodegenerative disordersProtein
2009
Palmitoylation of Nicotinic Acetylcholine Receptors
Alexander JK, Govind AP, Drisdel RC, Blanton MP, Vallejo Y, Lam TT, Green WN. Palmitoylation of Nicotinic Acetylcholine Receptors. Journal Of Molecular Neuroscience 2009, 40: 12-20. PMID: 19693711, PMCID: PMC3523180, DOI: 10.1007/s12031-009-9246-z.Peer-Reviewed Original ResearchMeSH KeywordsAcetylcholineAcylationalpha7 Nicotinic Acetylcholine ReceptorAnimalsBinding SitesBiological AssayBrainCell LineElectric OrganHumansLigandsLipoylationMass SpectrometryNeuromuscular JunctionProtein Processing, Post-TranslationalProtein SubunitsProtein TransportReceptors, NicotinicSynaptic TransmissionTorpedoConceptsNicotinic acetylcholine receptorsSites of palmitoylationLigand-gated ion channelsDifferent posttranslational modificationsDisulfide bond formationMass spectrometry strategyLigand binding siteLow abundant proteinsAcetylcholine receptorsProtein palmitoylationPosttranslational modificationsSubunit assemblyPalmitoylationAbundant proteinsMuscle-type nAChRsIon channelsLoss of ligandBinding sitesSubunitsSitesReceptorsPhosphorylationTraffickingGlycosylationSensitive assay
1998
The Antiproliferative Agent Didemnin B Uncompetitively Inhibits Palmitoyl Protein Thioesterase †
Meng L, Sin N, Crews C. The Antiproliferative Agent Didemnin B Uncompetitively Inhibits Palmitoyl Protein Thioesterase †. Biochemistry 1998, 37: 10488-10492. PMID: 9671519, DOI: 10.1021/bi9804479.Peer-Reviewed Original ResearchConceptsPalmitoyl-protein thioesterase 1GTP-binding proteinsDynamic protein palmitoylationDidemnin BPalmitoyl-protein thioesterasePalmitoyl proteinsProtein palmitoylationMembrane associationBaculoviral systemMyristoyl-CoAProduct bindsHa-rasBiochemical supportProteinEnzymatic activityBindingInhibition assaysDepalmitoylationPalmitoylationThioesteraseKinetic analysisInhibitionBindsRegulationUncompetitive mode
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