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MurphyColeen MurphyMala MurthyCameron MyhrvoldHong NamZachary NashAnca NeaguTempleman NMMoskalenko ORiva OliveiraIvan OstojicHH ParkLance ParsonsL.R. ParsonsLR ParsonsLR ParsonsLance ParsonsCory PatrickSarah PfauColette PicardScott PletcherKaletsky RBaumeister RMoore* RBaumeister RBaumeister RKaletsky RKaletsky RKaletsky R.Joshua RabinowitzMohammad RahimiSandeep RajAlina RashidAndreas RechtsteinerMartin RegenassMatt RichChristian RiedelGizem RizkiArey RNR RockJason RogersTae-Young RohJoe RokickiChristopher RongoWilliam RoundsKaletsky* RSAlexi RunnelsYoungjae RyuSohrabi SSohrabi SSohrabi SMichael SalazarMatthew SalesiDianaliz Santiago-MartinezT. SenguptaT SenguptaKeunhee SeoMihwa SeoRajani SharmaWendy ShawKang ShenYu ShenC. ShiC ShiCheng ShiC ShiC ShiCheng ShiDeniz SifogluMalan SilvaSanford SilvermanCara SingerSandhya SinhaS SohrabiS. SohrabiS. SohrabiSalman SohrabiS SohrabiS SohrabiS SohrabiS. 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YeoCarmen YoungJie YuanGitai ZW ZhangYun ZhangY ZhangS ZhouShiyi ZhouSige Zou Type - Any -JournalJournal Article Year - Any -20232022202120202019201820172016201520142013201220112010200920072006200420032001200019991998 Keyword - Any -AcanthamoebaActinsAdaptation, PhysiologicalAdenosine DiphosphateAdenosine TriphosphatasesAdenosine TriphosphateAffinity LabelsAge FactorsAgingAlgorithmsAmino Acid SequenceAmino Acid SubstitutionAnimal FeedAnimalsAnimals, Genetically ModifiedApoptosisAquaporin 1ArsenitesArtificial IntelligenceAssociation LearningAutomationAxonsBase SequenceBehavior, AnimalBiological EvolutionBody SizeButanonesCaenorhabditisCaenorhabditis elegansCaenorhabditis elegans ProteinsCatalytic DomainCatecholaminesCell MovementCell SeparationChemotaxisChickensCluster AnalysisCognitive AgingCollagenComputer SimulationCyclic AMP Response Element-Binding ProteinCycloheximideCytochrome P-450 Enzyme SystemDactinomycinData Interpretation, StatisticalDatabases, GeneticDictyosteliumDietDNA, HelminthDNA-Binding ProteinsDown-RegulationDrosophila melanogasterElectrochemistryEndocrine SystemEndodermEpidermal Growth FactorEvolution, MolecularExocrine GlandsExtracellular MatrixExtracellular VesiclesFeedback, PhysiologicalFemaleFloxuridineFluorescent DyesForkhead Box Protein O3Forkhead Transcription FactorsFungal ProteinsGATA Transcription FactorsGene Expression ProfilingGene Expression RegulationGene Expression Regulation, DevelopmentalGene Knockout TechniquesGene OntologyGene Regulatory NetworksGenes, HelminthGenes, InsectGenome, FungalGenotypegermlineGlucagon-Like Peptide 1GlucoseGlycerolGreen Fluorescent ProteinsHeat Shock Transcription FactorsHeat-Shock ResponseHEK293 CellsHippocampusHost Cell Factor C1HumansInsulininsulin signalingInsulin-Like Growth Factor IIntestinesKillifishesKineticsKruppel-Like Transcription FactorsLarvaLearninglifespanLongevityMalematingMechanotransduction, CellularMemoryMemory, Long-TermMemory, Short-TermMicrofluidic Analytical TechniquesMicroRNAsMitochondriaModels, AnimalModels, BiologicalModels, GeneticModels, MolecularMolecular ChaperonesMolecular Motor ProteinsMolecular Sequence AnnotationMolecular Sequence DataMovementmTORMuscle, SkeletalMuscle, SmoothMushroom BodiesMutationMyosinsNerve Tissue ProteinsNeuronsNF-E2-Related Factor 1Nuclear ProteinsNucleotidesOdorantsOligonucleotide Array Sequence AnalysisOocytesOrgan SpecificityOrganelle Biogenesisortho-AminobenzoatesOsmotic PressureOvulationOvumOxidative StressPeptide HormonesPhenotypepheromonePhylogenyPlasmidsPromoter Regions, GeneticProteasome Endopeptidase ComplexProtein BindingProtein ConformationProtein Structure, TertiaryProtein Synthesis InhibitorsRabbitsReactive Oxygen SpeciesReceptor, IGF Type 1Receptor, IGF Type 2Receptor, InsulinReceptors, Cell SurfaceReceptors, Cytoplasmic and NuclearReceptors, NicotinicReceptors, NotchRecombinant Fusion ProteinsRegenerationRegulatory Sequences, Nucleic AcidReproducibility of ResultsReproductionResponse ElementsReverse Transcriptase Polymerase Chain ReactionRNA InterferenceRNA, HelminthRNA, MessengerRNA, Small InterferingSaccharomycesSaccharomyces cerevisiaeSensory Receptor CellsSequence Analysis, RNASequence Homology, Nucleic AcidSex ChromosomesSexual Behavior, AnimalSignal TransductionSirtuin 1SirtuinsSomatomedinsSpectrophotometrySpermatozoaSteroidsStress, PhysiologicalSuperoxide DismutaseSynapsestert-ButylhydroperoxideTFEBTime FactorsTrans-ActivatorsTranscription FactorsTranscription, GeneticTranscriptional ActivationTranscriptomeTransformation, GeneticTransforming Growth Factor betaUbiquitin AuthorTitleTypeYear #ABCDEFGHIJKLMNOPQRSTUVWXYZ 102 Publications # Sohrabi, S, DE Mor, R Kaletsky, W Keyes, and CT Murphy. n.d. “9c. High-Throughput Behavioral Screen in C. Elegans Reveals Novel Parkinson’s Disease Drug Candidates”. Comm Biology. A Arey, Rachel, Geneva Stein, Rachel Kaletsky, Amanda Kauffman, and Coleen Murphy. 2018. “Activation of G Signaling Enhances Memory Consolidation and Slows Cognitive Decline.”. Neuron 98 (3): 562-574.e5. doi:10.1016/j.neuron.2018.03.039. Murphy, Coleen. 2010. “Aging: MiRacles of Longevity?”. Curr Biol 20 (24). doi:10.1016/j.cub.2010.11.018. B Murphy, Coleen. 2019. “Being Open to the Unexpected”. Mol Biol Cell. C Kaletsky, Rachel, Vanisha Lakhina, Rachel Arey, April Williams, Jessica Landis, Jasmine Ashraf, and Coleen Murphy. 2016. “The C. Elegans Adult Neuronal IIS FOXO Transcriptome Reveals Adult Phenotype Regulators.”. Nature 529 (7584): 92-6. doi:10.1038/nature16483. Kaletsky, R, RS Moore, GD Vrla, LR Parsons, Z. Gitai, and CT. Murphy. 2020. “C. Elegans Interprets Bacterial Non-Coding RNAs to Learn Pathogenic Avoidance”. Nature. Hahm, Jeong-Hoon, Sunhee Kim, Race DiLoreto, Cheng Shi, Seung-Jae Lee, Coleen Murphy, and Hong Nam. 2015. “C. Elegans Maximum Velocity Correlates With Healthspan and Is Maintained in Worms With an Insulin Receptor Mutation.”. Nat Commun 6: 8919. doi:10.1038/ncomms9919. Moore, Rebecca, Rachel Kaletsky, and Coleen Murphy. 2018. “C. Elegans Pathogenic Learning Confers Multigenerational Pathogen Avoidance”. BioRxiv. Cold Spring Harbor Laboratory. doi:10.1101/476416. Kauffman, Amanda, Lance Parsons, Geneva Stein, Airon Wills, Rachel Kaletsky, and Coleen Murphy. 2011. “C. Elegans Positive Butanone Learning, Short-Term, and Long-Term Associative Memory Assays.”. J Vis Exp, no. 49. doi:10.3791/2490. Stein, Geneva, and Coleen Murphy. (2014) 2014. “C. Elegans Positive Olfactory Associative Memory Is a Molecularly Conserved Behavioral Paradigm.”. Neurobiol Learn Mem 115: 86-94. doi:10.1016/j.nlm.2014.07.011. Shaw, Wendy, Shijing Luo, Jessica Landis, Jasmine Ashraf, and Coleen Murphy. 2007. “The C. Elegans TGF-Beta Dauer Pathway Regulates Longevity via Insulin Signaling.”. Curr Biol 17 (19): 1635-45. doi:10.1016/j.cub.2007.08.058. Kaletsky, R., R.S. Moore, G.D Vrla, L.R. Parsons, Z. Gitai, and CT. Murphy. 2020. “C. Elegans ‘read’ Bacterial Non-Coding RNA to Learn Pathogenic Avoidance”. BioRxiv. Luo, Shijing, and Coleen Murphy. (2011) 2011. “Caenorhabditis Elegans Reproductive Aging: Regulation and Underlying Mechanisms.”. Genesis 49 (2): 53-65. doi:10.1002/dvg.20694. Tabuchi, Tomoko, Andreas Rechtsteiner, Tess Jeffers, Thea Egelhofer, Coleen Murphy, and Susan Strome. 2018. “Caenorhabditis Elegans Sperm Carry a Histone-Based Epigenetic Memory of Both Spermatogenesis and Oogenesis.”. Nat Commun 9 (1): 4310. doi:10.1038/s41467-018-06236-8. Sohrabi, S, RS Moore, and CT Murphy. 2021. “CeAid: A Smartphone Application for Logging and Plotting C. Elegans Assays”. G3 Genes|Genomes|Genetics. Sohrabi, S., V. Cota, and CT Murphy. 2023. “CeLab, a Microfluidic Platform for the Study of Life History Traits, Reveals Metformin and SGK-1 Regulation of Longevity and Reproductive Span”. BioRxiv. Referenced from www.biorxiv.org: CeLab, a Microfluidic Platform for the Study of Life History Traits, reveals Metformin and SGK-1 regulation of Longevity and Reproductive Span. DiLoreto, Race, and Coleen Murphy. 2015. “The Cell Biology of Aging.”. Mol Biol Cell 26 (25): 4524-31. doi:10.1091/mbc.E14-06-1084. Blackstone, Craig, and Coleen Murphy. 2012. “Cell Biology of Disease and Aging: A Two-Way Street”. Molecular Biology of the Cell 23: 975-75. doi:10.1091/mbc.e11-12-0985. Wang, Juan, Rachel Kaletsky, Malan Silva, April Williams, Leonard Haas, Rebecca Androwski, Jessica Landis, et al. 2015. “Cell-Specific Transcriptional Profiling of Ciliated Sensory Neurons Reveals Regulators of Behavior and Extracellular Vesicle Biogenesis.”. Curr Biol 25 (24): 3232-8. doi:10.1016/j.cub.2015.10.057. Crocker, Amanda, Xiao-Juan Guan, Coleen Murphy, and Mala Murthy. 2016. “Cell-Type-Specific Transcriptome Analysis in the Drosophila Mushroom Body Reveals Memory-Related Changes in Gene Expression.”. Cell Rep 15 (7): 1580-96. doi:10.1016/j.celrep.2016.04.046. McCarroll, Steven, Coleen Murphy, Sige Zou, Scott Pletcher, Chen-Shan Chin, Yuh Jan, Cynthia Kenyon, Cornelia Bargmann, and Hao Li. (2004) 2004. “Comparing Genomic Expression Patterns across Species Identifies Shared Transcriptional Profile in Aging.”. Nat Genet 36 (2): 197-204. doi:10.1038/ng1291. Oliveira, Riva, Jess Abate, Kieran Dilks, Jessica Landis, Jasmine Ashraf, Coleen Murphy, and Keith Blackwell. 2009. “Condition-Adapted Stress and Longevity Gene Regulation by Caenorhabditis Elegans SKN-1 Nrf.”. Aging Cell 8 (5): 524-41. doi:10.1111/j.1474-9726.2009.00501.x. Arey, Rachel, and Coleen Murphy. 2017. “Conserved Regulators of Cognitive Aging: From Worms to Humans.”. Behav Brain Res 322 (Pt B): 299-310. doi:10.1016/j.bbr.2016.06.035. Templeman, N.M., V. Cota, W. Keyes, R. Kaletsky, and Coleen Murphy. 2020. “CREB Non-Autonomously Controls Reproductive Aging through Hedgehog Patched Signaling”. Dev Cell. Referenced from pubmed.ncbi.nlm.nih.gov: CREB Non-autonomously Controls Reproductive Aging through Hedgehog/Patched Signaling. Templeman, NM, V Cota, W Keyes, R Kaletsky, and CT Murphy. 2020. “CREB Non-Autonomously Regulates Reproductive Aging through Hedgehog Patched Signalling”. BioRxiv. Pagination Current page 1 Page 2 Page 3 Page 4 Page 5 Next page Next › Last page Last »