Lethargus is a Caenorhabditis elegans sleep-like state (original) (raw)
References
Hendricks, J. C. et al. Rest in Drosophila is a sleep-like state. Neuron25, 129–138 (2000) ArticleCAS Google Scholar
Shaw, P. J., Cirelli, C., Greenspan, R. J. & Tononi, G. Correlates of sleep and waking in Drosophila melanogaster. Science287, 1834–1837 (2000) ArticleADSCAS Google Scholar
Huber, R. et al. Sleep homeostasis in Drosophila melanogaster. Sleep27, 628–639 (2004) Article Google Scholar
Cassada, R. C. & Russell, R. L. The dauer larva, a post-embryonic developmental variant of the nematode C. elegans. Dev. Biol.46, 326–342 (1975) ArticleCAS Google Scholar
Jeon, M., Gardner, H. F., Miller, E. A., Deshler, J. & Rougvie, A. E. Similarity of the C. elegans developmental timing protein LIN-42 to circadian rhythm proteins. Science286, 1141–1146 (1999) ArticleCAS Google Scholar
Wicks, S. R. & Rankin, C. H. Integration of mechanosensory stimuli in Caenorhabditis elegans. J. Neurosci.15, 2434–2444 (1995) ArticleCAS Google Scholar
Chao, M. Y., Komatsu, H., Fukuto, H. S., Dionne, H. M. & Hart, A. C. Feeding status and serotonin rapidly and reversibly modulate a Caenorhabditis elegans chemosensory circuit. Proc. Natl Acad. Sci. USA101, 15512–15517 (2004) ArticleADSCAS Google Scholar
Troemel, E. R., Kimmel, B. E. & Bargmann, C. I. Reprogramming chemotaxis responses: sensory neurons define olfactory preferences in C. elegans. Cell91, 161–169 (1997) ArticleCAS Google Scholar
Rankin, C. H. Interactions between two antagonistic reflexes in the nematode Caenorhabditis elegans. J. Comp. Physiol. A169, 59–67 (1991) ArticleADSCAS Google Scholar
Borbely, A. A. A two process model of sleep regulation. Hum. Neurobiol.1, 195–204 (1982) CASPubMed Google Scholar
Trachsel, L., Tobler, I., Achermann, P. & Borbely, A. Sleep continuity and the REM–nonREM cycle in the rat under baseline conditions and after sleep deprivation. Physiol. Behav.49, 575–580 (1991) ArticleCAS Google Scholar
Raizen, D. M., Cullison, K., Pack, A. I. & Sundaram, M. V. A novel gain-of-function mutant of the cGMP-dependent protein kinase egl-4 affects multiple physiological processes in C.elegans. Genetics173, 177–187 (2006) ArticleCAS Google Scholar
Fujiwara, M., Sengupta, P. & McIntire, S. L. Regulation of body size and behavioral state of C.elegans by sensory perception and the EGL-4 cGMP-dependent protein kinase. Neuron36, 1091–1102 (2002) ArticleCAS Google Scholar
L’Etoile, N. D. et al. The cyclic GMP-dependent protein kinase EGL-4 regulates olfactory adaptation in C.elegans. Neuron36, 1079–1089 (2002) Article Google Scholar
Miller, K. G., Emerson, M. D. & Rand, J. B. Goalpha and diacylglycerol kinase negatively regulate the Gqα pathway in C.elegans. Neuron24, 323–333 (1999) ArticleCAS Google Scholar
Segalat, L., Elkes, D. A. & Kaplan, J. M. Modulation of serotonin-controlled behaviors by Go in Caenorhabditis elegans. Science267, 1648–1651 (1995) ArticleADSCAS Google Scholar
Osborne, K. A. et al. Natural behavior polymorphism due to a cGMP-dependent protein kinase of Drosophila. Science277, 834–836 (1997) ArticleCAS Google Scholar
Kalderon, D. & Rubin, G. M. cGMP-dependent protein kinase genes in Drosophila. J. Biol. Chem.164, 10738–10748 (1989) Google Scholar
Ewer, J. & Reynold, S. in Hormones, Brain and Behavior (eds Pfaff, D. W., Arnold, A. P., Etgen, A. M., Fahrbach, S. E. & Rubin, R. T.) 1–92 (Academic, San Diego, 2002) Book Google Scholar
Pereira, H. S. & Sokolowski, M. B. Mutations in the larval foraging gene affect adult locomotory behavior after feeding in Drosophila melanogaster. Proc. Natl Acad. Sci. USA90, 5044–5046 (1993) ArticleADSCAS Google Scholar
Charlie, N. K., Thomure, A. M., Schade, M. A. & Miller, K. G. The dunce cAMP phosphodiesterase PDE-4 negatively regulates Gs-dependent and Gs-independent cAMP pools in the Caenorhabditis elegans synaptic signaling network. Genetics173, 111–130 (2006) ArticleCAS Google Scholar
Berger, A. J., Hart, A. C. & Kaplan, J. M. G-αs-induced neurodegeneration in Caenorhabditis elegans. J. Neurosci.18, 2871–2880 (1998) ArticleCAS Google Scholar
Hendricks, J. C. et al. A non-circadian role for cAMP signaling and CREB activity in Drosophila rest homeostasis. Nature Neurosci.4, 1108–1115 (2001) ArticleCAS Google Scholar
Van Buskirk, C. & Sternberg, P. W. Epidermal growth factor signaling induces behavioral quiescence in Caenorhabditis elegans. Nature Neurosci.10, 1300–1307 (2007) ArticleCAS Google Scholar
Singh, R. N. & Sulston, J. E. Some observations on moulting in Caenorhabditis elegans. Nematologica24, 63–71 (1978) Article Google Scholar
Frand, A. R., Russel, S. & Ruvkun, G. Functional genomic analysis of C.elegans molting. PLoS Biol.3, e312 (2005) Article Google Scholar
White, J. G., Albertson, D. G. & Anness, M. A. Connectivity changes in a class of motoneurone during the development of a nematode. Nature271, 764–766 (1978) ArticleADSCAS Google Scholar
Hallam, S. J. & Jin, Y. Lin-14 regulates the timing of synaptic remodelling in Caenorhabditis elegans. Nature395, 78–82 (1998) ArticleADSCAS Google Scholar
Frank, M. G., Issa, N. P. & Stryker, M. P. Sleep enhances plasticity in the developing visual cortex. Neuron30, 275–287 (2001) ArticleCAS Google Scholar