Publications Search

Found 44 results
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Journal Article
Murphy CT.  2010.  Aging: miRacles of longevity? Curr Biol. 20(24):R1076-8.
Kaletsky R, Lakhina V, Arey R, Williams A, Landis J, Ashraf J, Murphy CT.  2016.  The C. elegans adult neuronal IIS/FOXO transcriptome reveals adult phenotype regulators.. Nature. 529(7584):92-6.
Hahm J-H, Kim S, DiLoreto R, Shi C, Lee S-JV, Murphy CT, Nam HGil.  2015.  C. elegans maximum velocity correlates with healthspan and is maintained in worms with an insulin receptor mutation.. Nat Commun. 6:8919.
Kauffman A, Parsons L, Stein G, Wills A, Kaletsky R, Murphy C.  2011.  C. elegans positive butanone learning, short-term, and long-term associative memory assays.. J Vis Exp. (49)
Stein GM, Murphy CT.  2014.  C. elegans positive olfactory associative memory is a molecularly conserved behavioral paradigm.. Neurobiol Learn Mem. 115:86-94.
Shaw WM, Luo S, Landis J, Ashraf J, Murphy CT.  2007.  The C. elegans TGF-beta Dauer pathway regulates longevity via insulin signaling.. Curr Biol. 17(19):1635-45.
Luo S, Murphy CT.  2011.  Caenorhabditis elegans reproductive aging: Regulation and underlying mechanisms.. Genesis. 49(2):53-65.
DiLoreto R, Murphy CT.  2015.  The cell biology of aging.. Mol Biol Cell. 26(25):4524-31.
Wang J, Kaletsky R, Silva M, Williams A, Haas LA, Androwski RJ, Landis JN, Patrick C, Rashid A, Santiago-Martinez D 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.
Crocker A, Guan X-J, Murphy CT, Murthy M.  2016.  Cell-Type-Specific Transcriptome Analysis in the Drosophila Mushroom Body Reveals Memory-Related Changes in Gene Expression.. Cell Rep. 15(7):1580-1596.
McCarroll SA, Murphy CT, Zou S, Pletcher SD, Chin C-S, Jan YNung, Kenyon C, Bargmann CI, Li H.  2004.  Comparing genomic expression patterns across species identifies shared transcriptional profile in aging.. Nat Genet. 36(2):197-204.
Oliveira RP, Abate JPorter, Dilks K, Landis J, Ashraf J, Murphy CT, T Blackwell K.  2009.  Condition-adapted stress and longevity gene regulation by Caenorhabditis elegans SKN-1/Nrf.. Aging Cell. 8(5):524-41.
Arey RN, Murphy CT.  2017.  Conserved regulators of cognitive aging: From worms to humans.. Behav Brain Res. 322(Pt B):299-310.
Tepper RG, Murphy CT, Bussemaker HJ.  2014.  DAF-16 and PQM-1: partners in longevity.. Aging (Albany NY). 6(1):5-6.
Ewald CY, Landis JN, Abate JPorter, Murphy CT, T Blackwell K.  2015.  Dauer-independent insulin/IGF-1-signalling implicates collagen remodelling in longevity.. Nature. 519(7541):97-101.
Murphy CT, Spudich JA.  1998.  Dictyostelium myosin 25-50K loop substitutions specifically affect ADP release rates.. Biochemistry. 37(19):6738-44.
Liu G, Rogers J, Murphy CT, Rongo C.  2011.  EGF signalling activates the ubiquitin proteasome system to modulate C. elegans lifespan.. EMBO J. 30(15):2990-3003.
Kleemann GA, Murphy CT.  2009.  The endocrine regulation of aging in Caenorhabditis elegans.. Mol Cell Endocrinol. 299(1):51-7.
Kenyon C, Murphy CT.  2006.  Enrichment of regulatory motifs upstream of predicted DAF-16 targets.. Nat Genet. 38(4):397-8;authorreply398.
Rizki G, Iwata TNaoko, Li J, Riedel CG, Picard CLafontaine, Jan M, Murphy CT, Lee SSylvia.  2011.  The evolutionarily conserved longevity determinants HCF-1 and SIR-2.1/SIRT1 collaborate to regulate DAF-16/FOXO.. PLoS Genet. 7(9):e1002235.
Shi C, Murphy CT.  2016.  Feeding the germline.. Genes Dev. 30(3):249-50.
Lakhina V, Murphy CT.  2015.  For longevity, perception is everything.. Cell. 160(5):807-809.
Murphy CT, McCarroll SA, Bargmann CI, Fraser A, Kamath RS, Ahringer J, Li H, Kenyon C.  2003.  Genes that act downstream of DAF-16 to influence the lifespan of Caenorhabditis elegans.. Nature. 424(6946):277-83.
Lakhina V, Murphy CT.  2015.  Genome Sequencing Fishes out Longevity Genes.. Cell. 163(6):1312-3.
Lakhina V, Arey RN, Kaletsky R, Kauffman A, Stein G, Keyes W, Xu D, Murphy CT.  2015.  Genome-wide functional analysis of CREB/long-term memory-dependent transcription reveals distinct basal and memory gene expression programs.. Neuron. 85(2):330-45.

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