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Original Article

Reversible Inhibition of Endocytosis in Cultured Neurons from the Drosophila Temperature-Sensitive Mutant Shibire

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Pages 191-206 | Received 01 Sep 1989, Published online: 11 Jul 2009

References

  • Besterman J. M., Low R. B. Endocytosis: a review of mechanisms and plasma membrane dynamics. Biochem. J. 1983; 210: 1–13
  • Costello W. J., Salkoff L. Suppression of the membrane defect by divalent cations in the Drosophila mutant shibire. J. Neurosci. 1986; 6: 3634–3639
  • Farquhar M. G. Multiple pathways of exocytosis, endocytosis, and membrane recycling: validation of a Golgi route. Fed. Proc 1983; 42: 2407–2413
  • Grigliatti T. A., Hall L., Rosenbluth R., Suzuki D. T. Temperature-sensitive mutation in Drosophila melanogaster. XIV. A selection of immobile adults. Molec. Gen. Genet. 1973; 120: 107–114
  • Heuser J. Effects of cytoplasmic acidification on clathrin lattice morphology. J. Cell Biol 1989; 108: 401–418
  • Holtzman E., Freeman A. R., Kashner L. A. Stimulation dependent alterations in peroxidase uptake by lobster neuromuscular junctions. Science 1971; 173: 733
  • Hummon M. R., Costello W. J. Induced disruption in the connectivity of an identified neuron in the Drosophila ts mutant shibire. J. Neurosci. 1987; 7: 3633–3638
  • Hummon M. R., Costello W. J. Induced neuroma formation and target muscle perturbation in the giant fiber pathway of the Drosophila temperature-sensitive mutant shibire. Roux's Arch. Dev. Biol. 1988; 197: 383–393
  • Ikeda K., Ozawa S., Hagiwara S. Synaptic transmission reversibly conditioned by single-gene mutation in Drosophila melanogaster. Nature 1976; 259: 489–491
  • Ikeda K., Tsuruhara T., Koenig J. H. Study of the endocytic pathway in the oocyte using a temperature sensitive mutant of Drosophila melanogaster. J. Cell Biol. 1987; 105: 230a
  • Karnovsky M. J. Use of ferrocyanide-reduced osmium tetroxide in electron microscopy. J. Cell Biol 1971; 51: 146a
  • Kelly R. B. The cell biology of the nerve terminal. Neuron 1988; 1: 431–438
  • Kessell I., Hoist B. D., Roth T. F. Membranous intermediates in endocytosis are labile, as shown in a temperature-sensitive mutant. Proc. Natl. Acad. Sci. USA 1989; 86: 4968–4972
  • Kim Y.-T., Wu C.-F. Reversible blockage of neurite development and growth cone formation in neuronal cultures of a temperature-sensitive mutant of Drosophila. J. Neurosci. 1987; 7: 3245–3255
  • Koenig J. H., Saito K., Ikeda K. Reversible control of synaptic transmission in a single gene mutant of Drosophila melanogaster. J. Cell. Biol. 1983; 96: 1517–1522
  • Koenig J. H., Narita K., Ikeda K. Membrane recycling observed by changes in electrical capacitance of nephrocytes. J. Cell Biol. 1987; 105: 310a
  • Kosaka T., Ikeda K. Possible temperature-dependent blockage of synaptic vesicle recycling induced by a single-gene mutation in Drosophila. J. Neurobiol 1983a; 14: 207–225
  • Kosaka T., Ikeda K. Reversible blockage of membrane retrieval and endocytosis in the garland cell of the temperature-sensitive mutant of Drosophila melanogaster, shibirets1. J. Cell Biol. 1983b; 97: 499–507
  • Lentz T. L. Cellular membrane reutilization and synaptic vesicle recycling. Trends Neurosci. 1983; 6(2)48–53
  • Letourneau P. C. Possible roles for cell-to-substratum adhesion in neuronal morphogenesis. Dev. Biol. 1975; 44: 77–91
  • Masur S. K., Kim Y.-T., Wu C.-F. Reversible inhibition of endocytosis in cultured neurons of a Drosophila temperature-sensitive mutant. J. Cell Biol. 1988; 107: 811a
  • Poodry C. A., Hall L., Suzuki D. T. Developmental properties of shibirets1: A pleiotropic mutation affecting larval and adult locomotion and development. Dev. Biol. 1973; 32: 373–386
  • Poodry C. A., Edgar L. Reversible alteration in the neuromuscular junctions of Drosophila melanogaster bearing a temperature-sensitive mutation shibire. J. Cell Biol. 1979; 81: 520–527
  • Schmitt H. D., Puzicha M., Gallwitz D. Study of a temperature-sensitive mutant of the ras-related YTP1 gene product in yeast suggests a role in the regulation of intracellular calcium. Cell 1988; 53: 635–647
  • Schneider I., Blumenthal A. B. Drosophila cell and tissue culture. The Genetics and Biology of Drosophila, M. Ashburner, T. R. F. Wright. Academic Press, New York 1978; Vol. Ila: 265–315
  • Silverstein S. C., Steinman R. M., Cohn Z. A. Endocytosis. Ann. Rev. Biochem. 1977; 46: 669–722
  • Suzuki D. T. Behavior in Drosophila melanogaster. A geneticist's view. Can. J. Genet. Cytol. 1974; 16: 713–735
  • Wu C.-F. Neurogenetic studies of Drosophila central nervous system neurons in culture. Cell Culture Approaches to Invertebrate Neuroscience, D. J. Beadle, G. Lees, S. B. Kater. Academic Press, New York 1988; 149–187
  • Wu C.-F., Berneking J. M., Barker D. L. Acetylcholine synthesis and accumulation in the CNS of Drosophila larvae: Analysis of shibirets a mutant with a temperature-sensitive block in synaptic transmission. J. Neurochem. 1983a; 40: 1386–1396
  • Wu C.-F., Suzuki N., Poo M.-M. Dissociated neurons from normal and mutant Drosophila larval central nervous system in cell culture. J. Neurosci. 1983b; 3: 1888–1899

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