spacer gif spacer gif spacer gif spacer gif spacer gif
 QUICK SEARCH:   [advanced]


spacer gif
     Home     Help     Feedback     Subscriptions     Archive     Search     Table of Contents    


This Article
Right arrow Summary Freely available
Right arrow Full Text (PDF)
Right arrow Alert me when this article is cited
Right arrow Alert me if a correction is posted
Services
Right arrow Email this article to a friend
Right arrow Similar articles in this journal
Right arrow Similar articles in PubMed
Right arrow Alert me to new issues of the journal
Right arrow Download to citation manager
Right arrow reprints & permissions
Citing Articles
Right arrow Citing Articles via HighWire
Right arrow Citing Articles via Google Scholar
Google Scholar
Right arrow Articles by Reinhard, E.
Right arrow Articles by Westerfield, M.
Right arrow Search for Related Content
PubMed
Right arrow PubMed Citation
Right arrow Articles by Reinhard, E.
Right arrow Articles by Westerfield, M.
Anderson, D. J. and Axel, R (1985). Molecular probes for the development and plasticity of neural crest derivatives. Cell 42, 649-662.[Medline]

Basi, G. S., Jacobson, R. D., Virag, I., Schilling, J. and Skene, J. H. P (1987). Primary structure and transcriptional regulation of GAP-43, a protein associated with nerve growth. Cell 49, 785-791.[Medline]

Bendotti, C., Servadio, A. and Samanin, R (1991). Distribution of GAP-43 mRNA in the brain stem of adult rats as evidenced by in situ hybridization: Localization within monoaminergic neurons. J. Neurosci 11, 600-607.[Abstract]

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

Benowitz, L. I. and Lewis, E. R (1983). Increased transport of 44,000-to 49,000 dalton acidic proteins during regeneration of the goldfish optic nerve: a two-dimensional gel analysis. J. Neurosci 3, 2153-2163.[Abstract]

Biffo, S., Verhaagen, J., Schrama, J., Schotman, P., Danho, W. and Margolis, F. L (1990). B-50/GAP-43 expression correlates with process outgrowth in the embryonic mouse nervous system. Eur. J. Neurosci 2, 487-499.[Medline]

Brinster, R. L., Chen, H. Y., Messing, A., Van Dyke, T., Levine, A. J. and Palmiter, R. D (1984). Transgenic mice harboring SV-40 T antigen genes develop characteristic brain tumors. Cell 37, 367-379.[Medline]

Chitinis, A. B. and Kuwada, Y (1990). Axonogenesis in the brain of zebrafish embryos. J. Neurosci 10, 1892-1905.[Abstract]

Curtis, R., Stewart, H. J. S., Hall, S. M., Wilkin, G. P., Mirsky, R. and Jessen, K. R (1992). GAP-43 is expressed by nonmyelin-forming schwann cells of the peripheral nervous system. J. Cell Biol 116, 1455-1464.[Abstract/Free Full Text]

Da Cunha, A. and Vitkovic, L (1990). Regulation of immunoreactive GAP-43 expression in rat cortical macroglia is cell type specific. J. Cell Biol 111, 209-215.[Abstract/Free Full Text]

Deloulme, J.-C., Janet, T., Au, D., Storm, D. R., Sensenbrenner, M. and Baudier, J (1990). Neuromodulin (GAP-43): a neural protein kinase C substrate is also present in O-2A glial cell lineage. Characterization of neuromodulin in secondary cultures of oligodendrocytes and comparison with the neuronal antigen. J. Cell Biol 111, 1559-1570.[Abstract/Free Full Text]

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, 1-13.[Medline]

Grunwald, D. J., Kimmel, C. B., Westerfield, M., Walker, C. and Streisinger, G (1988). A neural degeneration mutation that spares primary neurons in the zebrafish. Dev. Biol 126, 115-128.[Medline]

Hoffman, P. N (1989). Expression of GAP-43, a rapidly transported growth-associated protein, and class II beta tubulin, a slowly transported cytoskeletal protein, are coordinated in regenerating neurons. J. Neurosci 9, 893-897.[Abstract]

Kimmel, C. B and Law, R. D (1985). Cell lineage of zebrafish blastomeres. III. Clonal analyses of the blastula and gastrula stages. Dev. Biol 108, 94-101.[Medline]

Kraner, S. D., Chong, J. A., Tsay, H.-J. and Mandel, G (1992). Silencing of the type II sodium channel gene: a model for neural-specific gene regulation. Neuron 9, 37-44.[Medline]

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

Liu, Y., Chapman, E. R. and Storm, D. R (1991). Targeting of neuromodulin (GAP-43) fusion proteins to growth cones in cultured rat embryonic neurons. Neuron 6, 411-420.[Medline]

Mandel, G. and McKinnon, D (1993). Molecular basis of neural-specific gene expression. Ann. Rev. Neurosci 16, 323-345.[Medline]

Meberg, P. J. and Routtenberg, A (1991). Selective expression of protein F1/(GAP-43) mRNA in pyramidal but not granule cells of the hippocampus. Neurosci 45, 721-733.[Medline]

Mori, N. C., Schoenherr, D. J., Vandenbergh, D.J. and Anderson, D. J (1992). A common silencer element in the SCG10 and type II Na+channel genes binds a factor present in nonneuronal but not neuronal cels. Neuron 9, 45-54.[Medline]

Nedivi, E., Basi, G. S., Virag-Akey, I. and Skene, J. H. P (1992). A neural-specific GAP-43 core promoter located between unusual DNA elements that interact to regulate its activity. J. Neurosci 12, 691-704.[Abstract]

Overbeek, P. A., Lai, S., Van Quil, K. R. and Westphal, H (1986). Tissue-specific expression in transgenic mice of a fused gene containing RSV terminal sequences. Science 231, 1574-1577.[Abstract/Free Full Text]

Oxtoby, E. and Jowett, T (1993). Cloning of the zebrafish krox-20 gene (krx-20) and its expression during hindbrain developmen. Nucleic Acids Res 21, 1087-1095.[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]

Puschel, A. W., Gruss, P. and Westerfield, M (1992). Sequence and expression pattern of pax-6 are highly conserved between zebrafish and mice. Development 114, 643-651.[Abstract]

Redshaw, J. D. and Bisby, M. A (1984). Fast axonal transport in central nervous system and peripheral nervous system axons following axotomy. J. Neurobiol 15, 109-118.[Medline]

Skene, J. H. P. and Willard, M (1981). Axonally transported proteins associated with axon growth in rabbit central and peripheral nervous systems. J. Cell Biol 89, 96-103.[Abstract/Free Full Text]

Skene, J. H. P. and Willard, M (1981). Changes in axonally transported proteins during axon regeneration in toad retinal ganglion cells. J. Cell Biol 89, 86-95.[Abstract/Free Full Text]

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

Stocker, K. M., Baizer, L. and Ciment, G (1992). Transient expression of GAP-43 in non-neuronal cells of the embryonic chicken limb. Dev. Biol 149, 406-414.[Medline]

Stuart, G. W., Mc Murry, J. V. and Westerfield, M (1988). Replication, integration and stable germ-line transmission of foreign sequences injected into early zebrafish embryos. Development 103, 403-412.[Abstract]

Stuart, G. W., Vielkind, J. R., McMurray, J. V. and Westerfield, M (1990). Stable lines of transgenic zebrafish exhibit reproducible patterns of transgene expression. Development 109, 577-584.[Abstract]

Swain, J. L., Stewart, T. A. and Leder, P (1987). Parental legacy determines methylation and expression of an autosomal transgene: A molecular mechanism for parental imprinting. Cell 50, 719-727.[Medline]

Tetzlaff, W., Alexander, S. W., Miller, F. D. and Bisby, M. A (1991). Response of facial and rubrospinal neurons to axotomy: Changes in mRNA expression for cytoskeletal protein and GAP-43. J. Neurosci 11, 2528-2544.[Abstract]

Trevarrow, B., Marks, D. L. and Kimmel, C. B (1990). Organization of hindbrain segments in the zebrafish embryo. Neuron 4, 669-679.[Medline]

Westerfield, M., Wegner, J., Jegalian, B. G., De Robertis, E. M. and Puschel, A. W (1992). Specific activation of mammalian Hox promoters in mosaic transgenic zebrafish. Genes Dev 6, 591-598.[Abstract/Free Full Text]

Wilson, S. W., Ross, L. S., Parrett, T. and Easter, S., S., Jr (1990). The development of a simple scaffold of axon tracts in the brain of the embryonic zebrafish, Brachydanio rerio. Development 108, 121-144.[Abstract]

Wilson, S.W. and Easter, S.S. Jr (1991). Stereotyped pathway selection by growth cones of early epiphysial neurons in the embryonic zebrafish. Development 112, 723-746.[Abstract]




This article has been cited by other articles:


Home page
Brief Funct Genomic ProteomicHome page
E. E. Pashos, E. Kague, and S. Fisher
Evaluation of cis-regulatory function in zebrafish
Brief Funct Genomic Proteomic, September 27, 2008; (2008) eln045v1.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
J. Jaszai, F. Reifers, A. Picker, T. Langenberg, and M. Brand
Isthmus-to-midbrain transformation in the absence of midbrain-hindbrain organizer activity
Development, December 29, 2003; 130(26): 6611 - 6623.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
A. Udvadia, R. Koster, and J. Skene
GAP-43 promoter elements in transgenic zebrafish reveal a difference in signals for axon growth during CNS development and regeneration
Development, January 4, 2001; 128(7): 1175 - 1182.
[Abstract] [PDF]


Home page
DevelopmentHome page
F Muller, B Chang, S Albert, N Fischer, L Tora, and U Strahle
Intronic enhancers control expression of zebrafish sonic hedgehog in floor plate and notochord
Development, January 5, 1999; 126(10): 2103 - 2116.
[Abstract] [PDF]


Home page
J. Neurosci.Home page
T. Becker, R. R. Bernhardt, E. Reinhard, M. F. Wullimann, E. Tongiorgi, and M. Schachner
Readiness of Zebrafish Brain Neurons to Regenerate a Spinal Axon Correlates with Differential Expression of Specific Cell Recognition Molecules
J. Neurosci., August 1, 1998; 18(15): 5789 - 5803.
[Abstract] [Full Text] [PDF]


Home page
J. Neurosci.Home page
J. R. M. Weber and J. H. P. Skene
The Activity of a Highly Promiscuous AP-1 Element Can Be Confined to Neurons by a Tissue-Selective Repressive Element
J. Neurosci., July 15, 1998; 18(14): 5264 - 5274.
[Abstract] [Full Text] [PDF]


Home page
J. Neurosci.Home page
J. R. M. Weber and J. H. P. Skene
Identification of a Novel Repressive Element That Contributes to Neuron-Specific Gene Expression
J. Neurosci., October 15, 1997; 17(20): 7583 - 7593.
[Abstract] [Full Text] [PDF]


Home page
Proc. Natl. Acad. Sci. USAHome page
A. Meng, H. Tang, B. A. Ong, M. J. Farrell, and S. Lin
Promoter analysis in living zebrafish embryos identifies a cis-acting motif required for neuronal expression of GATA-2
PNAS, June 10, 1997; 94(12): 6267 - 6272.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
C. Moens, Y. Yan, B Appel, A. Force, and C. Kimmel
valentino: a zebrafish gene required for normal hindbrain segmentation
Development, January 12, 1996; 122(12): 3981 - 3990.
[Abstract] [PDF]


Home page
J. Biol. Chem.Home page
C. Bertrand, A. Chatonnet, C. Takke, Y. Yan, J. Postlethwait, J.-P. Toutant, and X. Cousin
Zebrafish Acetylcholinesterase Is Encoded by a Single Gene Localized on Linkage Group 7. GENE STRUCTURE AND POLYMORPHISM; MOLECULAR FORMS AND EXPRESSION PATTERN DURING DEVELOPMENT
J. Biol. Chem., January 5, 2001; 276(1): 464 - 474.
[Abstract] [Full Text] [PDF]


Home page
Proc. Natl. Acad. Sci. USAHome page
L. M. Barton, B. Gottgens, M. Gering, J. G. R. Gilbert, D. Grafham, J. Rogers, D. Bentley, R. Patient, and A. R. Green
From the Cover: Regulation of the stem cell leukemia (SCL) gene: A tale of two fishes
PNAS, June 5, 2001; 98(12): 6747 - 6752.
[Abstract] [Full Text] [PDF]


This Article
Right arrow Summary Freely available
Right arrow Full Text (PDF)
Right arrow Alert me when this article is cited
Right arrow Alert me if a correction is posted
Services
Right arrow Email this article to a friend
Right arrow Similar articles in this journal
Right arrow Similar articles in PubMed
Right arrow Alert me to new issues of the journal
Right arrow Download to citation manager
Right arrow reprints & permissions
Citing Articles
Right arrow Citing Articles via HighWire
Right arrow Citing Articles via Google Scholar
Google Scholar
Right arrow Articles by Reinhard, E.
Right arrow Articles by Westerfield, M.
Right arrow Search for Related Content
PubMed
Right arrow PubMed Citation
Right arrow Articles by Reinhard, E.
Right arrow Articles by Westerfield, M.