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Aguayo, A. J., Rasminsky, M., Bray, G. M., Carbonetto, S., McKerracher, L., Villegas-Peres, M. P., Vidal-Sanz, M. and Carter, D. A (1991). Degenerative responses of injured neurons in the central nervous system of adult mammals. Phil. Trans. R. Soc. Lond 331, 337-343.[Medline]

Altschul, S., Gish, W., Miller, W., Myers, E. W. and Lipman, D. W (1990). Basic local alignment search tool. J. Mol. Biol 215, 403-410.[Medline]

Bastmeyer, M., Leppert, C., Ott, H. and Stuermer, C. A. O (1995). Fish E587-glycoprotein a member of the L1-family of cell adhesion molecules participates in axonal fasciculation and the age-related order of ganglion cell axons in the goldfish eye. J. Cell Biol 130, 969-976.[Abstract/Free Full Text]

Bastmeyer, M., Schlosshauer, B. and Stuermer, C. A. O (1990). The spatiotemporal distribution of NCAM in the retinotectal system of goldfish detected by the monoclonal antibody D3. Development 108, 299-311.[Abstract]

Bastmeyer, M., Jeserich, G. and Stuermer, C.A.O (1994). Similarities and differences between fish optic nerve tract oligodendrocytes and Schwann cells. Glia 22, 300-314.

Benowitz, L. I. and Lewis, E. R (1983). Increased transport of 44000-to 49000-dalton acidic proteins during regeneration of the goldfish optic nerve: a two-dimensional gel analysis. J. Neurosci 3, 2153-2163.[Abstract]

Benowitz, L. I., Shashoua, V. E. and Yoon, M. G (1981). Specific changes in rapidly transported proteins during regeneration of the goldfish optic nerve. J. Neurosci 1, 300-307.[Abstract]

Breathnach, R. and Chambon, P (1981). Organization and expression of eucaryotic split genes coding for proteins. Ann. Rev. Biochem 50, 349-383.[Medline]

Burmeister, G. W., Burmeister, D. W. and Grafstein, B (1985). Changes in protein content of goldfish optic nerve during degeneration and regeneration following nerve crush. J. Neurochem 44, 1142-1151.[Medline]

Doster, S. K., Lozano, A. M., Aguayo, A. J. and Willard, M. B (1991). Expression of the growth-associated protein GAP-43 in adult rat retinal ganglion cells following axon injury. Neuron 6, 635-647.[Medline]

Easter, S. S., Bratton, B. and Scherer, S. S (1984). Growth-related order in the retinal fiber layer of goldfish. J. Neurosci 4, 2173-2190.[Abstract]

Easter, S. S., Rusoff, A. C. and Kish, P. E (1981). The growth and organisation of the optic nerve and tract in juvenile and adult goldfish. J. Neurosci 1, 793-811.[Abstract]

Eckerskorn, C. W., Newes, H., Goretzky, H. and Lottspeich, F (1988). A new siliconized glass fiber as support for protein-chemical analysis of electroblotted proteins. Eur. J. Biochem 176, 509-519.

Engel, J (1989). EGF-like domains in extracellular matrix proteins: localized signals for growth and differentiation?. FEBS Lett 251, 1-7.[Medline]

Englund, P. T (1993). The structure and biosysnthesis of glycosyl phosphatidylinositol protein anchors. Ann. Rev. Biochem 62, 121-138.[Medline]

Furley, A. J., Morton, S. B., Manalo, D., Karagogeos, D., Dodd, J. and Jessell, T (1990). The axonal glycoprotein TAG-1 is an immunoglobulin superfamily member with neurite outgrowth-promoting activity. Cell 61, 157-170.[Medline]

Gower, H. J., Barton, C. H., Elsom, V. L., Thompson, J., Moose, S. E.,Dickson, G. and Walsh, F. S (1988). Alternative splicing generates a secreted form of NCAM in muscle and brain. Cell 55, 955-964.[Medline]

Grumet, M., Hoffman, K. L. and Edelman, G. M (1985). Cytotactin an extracellular matrix protein of neural and non-neural tissues that mediates glia-neuron interaction. Proc. Natl. Acad. Sci. USA 82, 8075-8079.[Abstract/Free Full Text]

Heukeshoven, J. R (1985). Simplified method for silver staining of proteins in polyacrylamide gels and the mechanism of silver staining. Electrophoresis 6, 103-112.

Hirsch, S., Cahill, M. A. and Stuermer, C. A. O (1995). Fibroblasts at the transection site of the lesiond goldfish optic nerve. J. Comp. Neurol 360, 599-611.[Medline]

Johns, P. A (1977). Growth of the adult goldfish eye: III Source of the new retinal cells. J. Comp. Neurol 176, 343-357.[Medline]

Kruse, J., Keilhauer, G., Faissner, A., Timp, R. and Schachner, M (1985). The J1 glycoprotein- a novel nervous system cell adhesion molecule of the L2/HNK-1 family. Nature 316, 146-148.[Medline]

Kyte, J. and Doolittle, R (1982). A simple method for displaying the hydropathic character of a protein. J. Mol. Biol 15, 105-132.

LaBate, M. and Skene, J. H. P (1989). Selective conservation of Gap-43 structure in vertebrate evolution. Neuron 3, 299-310.[Medline]

Laemmli, U. K (1970). Cleavage of structural proteins during the assembly of the head of bacteriophage T4. Nature 227, 680-685.[Medline]

Laessing, U., Giordano, S., Stecher, B., Lottspeich, F. and Stuermer, C. A. O (1994). Molecular characterization of fish neurolin: a growth associated cell surface protein and member of the immunoglobulin superfamily in the fish retinotectal system with similarities to chick protein DM-GRASP/SC-1/BEN. Differentiation 56, 21-29.[Medline]

Lanners, H. N. and Grafstein, B (1980). Early stages of axonal regeneration in the goldfish optic nerve tract: an electron microscopic study. J. Neurocytol 9, 733-751.[Medline]

Luo, Y., Raible, D. and Raper, J (1993). Collapsin: A protein in brain that induces the collapse and paralysis of neuronal growth cones. Cell 75, 217-227.[Medline]

Lupas, A., van Dyke, M. and Stock, J (1991). Predicting coiled coils from protein sequences. Science 252, 1162-1164.[Free Full Text]

Meyer, R. L., Sakurai, K. and Schauwecker, E (1985). Topography of regenerating optic fibers in goldfish traced with local wheat germ injections into retina: evidence for discontinuous microtopography in the retinotectal projection. J. Comp. Neurol 239, 27-43.[Medline]

Moran, P. and Caras, I. W (1991). Fusion of sequence elements from non-anchored proteins to generate a fully functional signal for glycophosphatidylinositol membrane anchor attachment. J. Cell. Biol 115, 1595-1600.[Abstract/Free Full Text]

Moran, P. and Caras, I. W (1991). A nonfunctional sequence converted to a signal for glycophosphatidylinositol membrane anchor attachment. J. Cell. Biol 115, 1595-1600.

Mount, S. M (1982). A catalogue of splice junction sequences. Nucl. Acids Res 10, 459-472.[Abstract/Free Full Text]

Paschke, K. A., Lottspeich, F. and Stuermer, C. A. O (1992). Neurolin, a cell surface glycoprotein on growing axons in the goldfish visual system is reexpressed during retinal axonal regeneration. J. Cell Biol 117, 863-875.[Abstract/Free Full Text]

Perry, G. W., Burmeister, D. W. and Grafstein, B (1987). Fast axonally transported proteins in regenerating goldfish optic axons. J. Neurosci 7, 792-806.[Abstract]

Risinger, C. and Larhammar, D (1993). Multiple loci for synapse protein SNAP-25 in the tetraploid goldfish. Proc. Natl. Acad. Sci. USA 90, 10598-10602.[Abstract/Free Full Text]

Ruegg, M. A., Stoeckli, E. T., Kuhn, T. B., Heller, M., Zuellig, R. and Sonderegger, P (1989). Purification of axonin-1 a protein that is secreted from axons during neurogenesis. EMBO J 8, 55-63.[Medline]

Schmidt, J. T., Edwards, D. L. and Stuermer, C. A. O (1983). The re-establishment of synaptic transmission by regenerating optic axons in goldfish: Time course and effects of blocking activity by intraocular injection of tetrodotoxin. Brain Res 269, 15-17.[Medline]

Schmidt, J. T., Turcotte, J. C., Buzzard, M. and Tieman, D. G (1988). Staining of regenerated optic arbors in goldfish tectum: Progressive changes in immature arbors and a comparison of mature regenerated arbors with normal arbors. J. Comp. Neurol 269, 565-591.[Medline]

Scholes, J. H (1979). Nerve fibre topography in the retinotectal projection to the tectum. Nature 278, 620-624.[Medline]

Schroeder, W., Stewart-Galetka, S., Mandavilli, S., Parry, D. A., Goldsmith, D. and Duvic, M. L (1994). Cloning and characterization of a novel epidermal cell surface antigen (ESA). J. Biol. Chem 269, 19983-19991.[Abstract/Free Full Text]

Skene, J. H. P (1989). Axonal growth-associated proteins. Annu. Rev. Neurosci 12, 127-156.[Medline]

Stuart, R. A., Neupert, W. and Tropschlug, M (1987). Deficiency in mRNA splicing in a cytochrome c mutant of Neurospora crassa: Importance of carboxy terminus for import of cytochrome c into mitochondria. EMBO J 6, 2131-2137.[Medline]

Stuermer, C. A. O (1988). The trajectories of regenerating retinal axons in the goldfish tectum. II. Exploratory branches and growth cones on axons at early regeneration stages. J. Comp. Neurol 267, 69-91.[Medline]

Stuermer, C. A. O. and Easter, S. S (1984). Rules of order in the retinotectal fascicles. J. Neurosci 4, 1045-1051.[Abstract]

Stuermer, C. A. O. and Easter, S. S (1984). A comparison of the normal and regenerated retinotectal pathways of goldfish. J. Comp. Neurol 223, 57-76.[Medline]

Stuermer, C. A. O., Bastmeyer, M., B\212hr, M., Strobel, G. and Paschke, K (1992). Trying to understand axonal regeneration in the CNS of fish. J. Neurobiol 23, 537-559.[Medline]

Thompson, J. D., Higgins, D. J. and Gibson, T. J (1994). CLUSTALW: improving the sensitivity of progressive multiple sequence alignment through sequence weighting, position-specific penalties and weight matrix choice. Nucl. Acids Res 22, 4673-4680.[Abstract/Free Full Text]

Towbin, H., Staehelin, T. and Gordon, J (1979). Electrophoretic transfer of proteins from acrylamide gels to nitrocellulose sheets: procedure and some applications. Proc. Natl. Acad. Sci. USA 76, 4350-4354.[Abstract/Free Full Text]

Vielmetter, J., Lottspeich, F. and Stuermer, C. A. O (1991). The monoclonal antibody E587 recognizes growing (new and regenerating) retinal axons in the goldfish retinotectal pathway. J. Neurosci 11, 3581-3593.[Abstract]

Vielmetter, J. and Stuermer, C. A. O (1989). Goldfish retinal axons respond to position-specific properties of tectal cell membranes in vitro. Neuron 2, 1331-1339.[Medline]

Williams, A. F. and Barclay, A. N (1988). The immunoglobulin superfamily- domains for cell surface recognition. Annu. Rev. Immunol 6, 381-405.[Medline]

Wollburg, H (1981). Myelination and remyelination in the regenerating visual system of the goldfish. Exp. Brain Res 43, 199-206.[Medline]

Zaremba, S., Guimaraes, A., Kalb, R. G. and Hockfield, S (1989). Characterization of an activity dependent neuronal surface proteoglycan identified with monoclonal antibody Cat-301. Neuron 2, 1207-1219.[Medline]


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