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 Schulte, D.
Right arrow Articles by Cepko, C. L.
Right arrow Search for Related Content
PubMed
Right arrow PubMed Citation
Right arrow Articles by Schulte, D.
Right arrow Articles by Cepko, C. L.
Austin, C. P., Feldman, D. E., Ida Jr., J. A. and Cepko, C. L (1995). Vertebrate retinal ganglion cells are selected from competent progenitors by the action of Notch. Development 121, 3637-3650.[Abstract]

Bober, E., Baum, C., Braun, T. and Arnold, H. H (1994). A novel Nk-related mouse homeobox gene: expression in central and peripheral nervous structures during embryonic development. Dev. Biol 162, 288-303.[Medline]

Brown, A, Yates, P. A., Burrola, P, Ortuno, D., Vaidya, A., Jessell, T. M., Pfaff, S. L., O'Leary, D. D. and Lemke, G (2000). Topographic mapping from the retina to the midbrain is controlled by relative but not absolute levels of EphA receptor signaling. Cell 102, 77-88.[Medline]

Bruhn, S. L. and Cepko, C. L (1996). Development of the pattern of photoreceptors in the chick retina. J. Neurosci 16, 1430-1439.[Abstract/Free Full Text]

Castellani, V., Yue, Y., Gao, P. P., Zhou, R. and Bolz, J (1998). Dual action of a ligand for Eph receptors tyrosine kinases on specific populations of axons during development of cortical circuits. J. Neurosci 18, 4663-4672.[Abstract/Free Full Text]

Chen, J., Ruley, H. E (1998). An enhancer element in the EphA2 (Eck) gene sufficient for rhombomere-specific expression is activated by HOXA1 and HOXB1 homeobox proteins. J Biol Chem 273, 24670-24675.[Abstract/Free Full Text]

Cheng, H.-J., Nakamoto, M., Bergemann, A. D. and Flanagan, J. G (1995). Complementary gradients in expression and binding of ELF-1 and Mek4 in development of the topographic projection map. Cell 82, 371-381.[Medline]

Ciossek, T., Monschau, B., Kremoser, C., Loschinger, J., Lang, S., Muller, B. K., Bonhoeffer, F. and Drescher, U (1998). Eph receptor-ligand interactions are necessary for guidance of retinal ganglion cell axons in vitro. Eur. J. Neurosci 10, 1574-80.[Medline]

Connor, R. J., Menzel, P. and Pasquale, E. B (1998). Expression and tyrosine phosphorylation of Eph receptors suggest multiple mechanisms in patterning of the visual system. Dev. Biol 193, 21-35.[Medline]

Crossley, P. H., Martinez, S. and Martin, G. R (1996). Midbrain development induced by FGF8 in the chick embryo. Nature 380, 66-68.[Medline]

Deitcher, D. L., Fekete, D. M. and Cepko, C. L (1994). Asymmetric expression of a novel homeobox gene in vertebrate sensory organs. J. Neurosci 14, 486-498.[Abstract]

Drescher, U (1997). The Eph family in the patterning of neural development. Curr Biol 7, 799-807.

Drescher, U., Kremoser, C., Handwerker, C., Loschinger, J., Noda, M. and Bonhoeffer, F (1995). In vitro guidance of retinal ganglion cell axons by RAGS, a 25kDa tectal protein related to ligands for Eph receptor tyrosine kinases. Cell 82, 359-370.[Medline]

Dutting, D. and Meyer, S. U (1995). Transplantations of chick eye anlage reveal early determination of nasotemporal polarity. Int. J. Dev. Biol 39, 921-931.[Medline]

Dutting, D. and Thanos, S (1995). Early determination of nasal-temporal retinotopic specificity in the eye anlage of the chick embryo. Dev. Biol 167, 263-281.[Medline]

Feldheim, D. A., Vanderhaeghen, P., Hansen, M. J., Frisen, J., Lu, Q., Barbacid, M. and Flanagan, J. G (1998). Topographic guidance labels in a sensory projection to the forebrain. Neuron 21, 1303-1313.[Medline]

Feldheim, D. A., Kim, Y. I., Bergemann, A. D., Frisen, J., Barbacid, M. and Flanagan, J. G (2000). Genetic analysis of ephrin-A2 and ephrin-A5 shows their requirement in multiple aspects of retinocollicular mapping. Neuron 25, 563-574.[Medline]

Flanagan, J. G. and Vanderhaeghen, P (1998). The ephrins and Eph receptors in neural development. Ann. Rev. Neurosci 21, 309-345.[Medline]

Friedman, G. C. and O'Leary, D. D (1996). Retroviral misexpression of engrailed genes in the chick optic tectum perturbs the topographic targeting of retinal axons. J. Neurosci 16, 5498-5509.[Abstract/Free Full Text]

Frisen, J., Yates, P. A., McLaughlin, T., Friedman, G., O'Leary, D. D. and Barbacid, M (1998). Ephrin-A5 (AL1/RGAS). is essential for proper retinal axon guidance and topographic mapping in the mammalian visual system. Neuron 20, 235-243.[Medline]

Frisen, J., Holmberg, J. and Barbacid, M (1999). Ephrins and their Eph receptors: multitalented directors of embryonic development. EMBO J 18, 5159-5165.[Medline]

Gale, N. W., Holland, S. J., Valenzuela, D. M., Flenniken, A., Pan, L., Ryan, T. E., Henkemeyer, M., Strebhardt, K., Hirai, H., Wilkinson, D. G., Pawson, T., Davis, S. and Yancopoulos, G. D (1996). Eph receptors and ligands comprise two major specificity subclasses and are reciprocally compartmentalized during embryogenesis. Neuron 17, 9-19.[Medline]

Gao, P. P., Yue, Y., Cerretti, D. P., Dreyfus, C and Zhou, R (1999). Ephrin dependent growth and pruning of hippocampal axons. Proc. Natl. Acad. Sci. USA 96, 4073-4077.[Abstract/Free Full Text]

Gao, P. P., Sun, C. H., Zhou, X. F., DiCicco-Bloom, E. and Zhou, R (2000). Ephrins stimulate or inhibit neurite outgrowth and survival as a function of neuronal cell type. J. Neurosci. Res 60, 427-436.[Medline]

Goodhill, G., J. and Richards L. J (1999). Retinotectal maps: models and misplaced data. Trends in Neurosci 22, 529-534.[Medline]

Hadrys, T., Braun, T., Rinkwitz-Brandt, S., Arnold, H. H. and Bober, E (1998). Nkx5-1 controls semicircular canal formation in the mouse inner ear. Development 125, 33-39.[Abstract]

Hamburger, V. and Hamilton, H (1951). A series of normal stages in the development of the chick embryo. J. Morphol 88, 35-46.

Holash, J. A. and Pasquale, E. B (1995). Polarized expression of the receptor protein tyrosine kinase Cek5 in the developing avian visual system. Dev. Biol 172, 683-693.[Medline]

Holash, J. A., Soans, C., Chong, L. D., Shao, H., Dixit, V. M. and Pasquale, E. B (1997). Reciprocal expression of the receptor Cek5 and its ligand(s) in the early retina. Dev. Biol 182, 256-269.[Medline]

Hornberger, M. R., Dutting, D., Ciossek, T., Yamada, T., Handwerker, C., Lang, S., Weth, F., Huf, J., Wessel, R., Logan, C., Tanaka, H. and Drescher, U (1999). Modulation of EphA receptor function by coexpressed ephrin-A ligands on retinal ganglion cell axons. Neuron 22, 731-742.[Medline]

Hughes, S. H., Greenhouse, J. J., Petropoulos, C. J., an Sutrave, P (1987). Adaptor plasmids simplify the insertion of foreign DNA into helper-independent retroviral vectors. J. Virol 61, 3004-3012.[Abstract/Free Full Text]

Itasaki, N. and Nakamura, H (1996). A role for gradient en expression in the positional specification of the optic tectum. Neuron 16, 55-62.[Medline]

Itasaki, N., Ichijo, H., Matsuno, T. and Nakamura, H (1991). Establishment of rostrocaudal polarity in the tectal primordium: engrailed expression and subsequent tectal polarity. Development 110, 331-342.[Abstract/Free Full Text]

Joyner, A. L (1996). Engrailed, Wnt and Pax genes regulate midbrain-hindbrain development. Trends in Genetics 12, 14-20.

Katz, L. C., Shatz, C. J (1996). Synaptic activity and the construction of cortical circuits. Science 274, 1133-1138.[Abstract/Free Full Text]

Koshiba-Takeuchi, K., Takeuchi, J. K., Matsumoto, K., Momose, T., Uno, K., Hoepker, V., Ogura, K., Takahashi, N., Nakamura, H., Yasuda, K. and Ogura, T (2000). Tbx5 and the retinotectum projection. Science 287, 134-137.[Abstract/Free Full Text]

Lee, S. M., Danielian, P. S., Fritzsch, P. and McMahon, A. P (1997). Evidence that Fgf8 signaling from the midbrain-hindbrain junction regulates growth and polarity in the developing midbrain. Development 124, 959-969.[Abstract]

Logan. C., Wizenmann, A., Drescher, U., Monschau, B., Bonhoeffer, F. and Lumsden, A (1996). Rostral optic tectum acquires rostral characteristics following ectopic engrailed expression. Curr. Biol 6, 1006-1014.[Medline]

McLoon, S. C (1991). A monoclonal antibody that distinguishes between temporal and nasal retinal axons. J. Neurosci 11, 1470-1477.[Abstract]

Monschau, B., Kremoser, C., Ohta, K., Tanaka, H., Kaneko, T., Yamada, T., Handwerker, C., Hornberger, M. R., L\232schinger, J., Pasquale, E., Siever, D. A., Verderame, M. F., Muller, B. K., Bonhoeffer, F. and Drescher, U (1997). Shared and distinct functions of RAGS and ELF-1 in guiding retinal axons. EMBO J 16, 1258-1267.[Medline]

Morgan, B. A. and Fekete, D. M (1996). Manipulating gene expression with replication-competent retroviruses. Methods Cell Biol 51, 185-218.[Medline]

Muller, B. K., Jay, D. G. and Bonhoeffer, F (1996). Chromophore-assisted laser inactivation of a repulsive axonal guidance molecule. Curr. Biol 6, 1497-502.[Medline]

Nakamoto, M., Cheng, H.-J., Friedman, G. C., McLaughlin, T., Hansen, M. J, Yoon, C. H., O'Leary, D. D. and Flanagan, J. G (1996). Topographic specification effects of ELF-1 on retinotectal axon guidance in vitro and retinal axon mapping in vivo. Cell 86, 755-766.[Medline]

Nakamura, H. and O'Leary, D. D (1989). Inaccuracies in initial growth and arborization of chick retinotectal axons followed by course corrections and axon remodeling to develop topographic order. J. Neurosci 9, 3776-3795.[Abstract]

Petropoulos, C. J. and Hughes, S. H (1991). Replication-competent retrovirus vectors for the transfer and expression of gene cassettes in avian cells. J Virol 65, 3728-3737.[Abstract/Free Full Text]

Retaux, S. and Harris, W. A (1996). Engrailed and retinotectal topography. Trends Neurosci 19, 542-546.[Medline]

Riddle, R. D., Johnson, R. L., Laufer, E. and Tabin, C (1993). Sonic hedgehog mediates the polarizing activity of the ZPA. Cell 75, 1401-1416.[Medline]

Rinkwitz-Brand, S., Justus, M., Oldenettel, I., Arnold, H. H. and Bober, E (1995). Distinct temporal expression of mouse Nkx-5.1 and Nkx.-5.2 homeobox genes during brain and ear development. Mech. Dev 52, 371-381.[Medline]

Roskies, A., Friedman, G. C. and O'Leary, D. D (1995). Mechanisms and molecules controlling the development of retinal maps. Perspect. Dev. Neurobiol 3, 63-75.[Medline]

Sajjadi, F. G. and Pasquale, E. B (1993). Five novel avian Eph-related tyrosine kinases are differentially expressed. Oncogene 8, 1807-1813.[Medline]

Savitt, J. M., Trisler, D. and Hilt, D. C (1995). Molecular cloning of TOPAP: a topographically graded protein in the developing chick visual system. Neuron 14, 253-261.[Medline]

Schulte, D., Furukawa, T., Peters, M. A., Kozak, C. A. and Cepko, C. L (1999). Misexpression of the EMX-related homeobox genes cVax and mVax2 ventralizes the retina and perturbs the retinotectal map. Neuron 24, 541-553.[Medline]

Sefton, M., Araujo, M. and Nieto, M. A (1997). Novel expression gradients of Eph-like receptor tyrosine kinases in the developing chick retina. Dev. Biol 188, 363-368.[Medline]

Sobieszczuk, D. F. and Wilkinson, D. G (1999). Masking of Eph receptors and ephrins. Curr. Biol 9, 469-470.

Sperry, R. W (1963). Chemoaffinity in the orderly growth of nerve fiber patterns and connections. Proc. Natl. Acad. Sci. USA 50, 703-710.[Free Full Text]

Stadler, H. S. and Solursh, M (1994). Characterization of the homeobox-containing gene GH6 identifies novel regions of homeobox gene expression in the developing chick embryo. Dev. Biol 161, 251-262.[Medline]

Stadler, H. S., Murray, J. C., Leysens, N. J., Goodfellow, P. J. and Solursh, M (1995). Phylogenetic conservation and physical mapping of members of the H6 homeobox gene family. Mamm. Genome 6, 383-388.[Medline]

Stahl, B., Muller, B., von Boxberg, Y., Cox, E. C. and Bonhoeffer, F (1990). Biochemical characterization of a putative axonal guidance molecule of the chick visual system. Neuron 5, 735-743.[Medline]

Taneja, R., Thisse, B., Rijli, F. M., Thisse, C., Bouillet, P., Dolle, P. and Chambon, P (1996). The expression pattern of the mouse receptor tyrosine kinase gene MDK1 is conserved through evolution and requires Hoxa-2 for rhombomere-specific expression in mouse embryos. Dev. Biol 177, 397-412.[Medline]

von Boxberg, Y., Deiss, S., Schwarz, U (1993). Guidance and topographic stabilization of nasal chick retinal axons on target-derived components in vitro. Neuron 10, 345-357.[Medline]

Vortkamp, A., Lee, K., Lanske, B., Segre, G. V., Kronenberg, H. M. and Tabin, C. J (1996). Regulation of rate of cartilage differentiation by Indian hedgehog and PTH-related protein. Science 273, 613-622.[Abstract]

Walter, J., Henke-Fahle, S. and Bonhoeffer, F (1987). Avoidance of posterior tectal membranes by temporal retinal axons. Development 101, 909-913.[Abstract/Free Full Text]

Wang, W., Van De Water, T. and Lufkin, T (1998). Inner ear and maternal reproductive defects in mice lacking the Hmx3 homeobox gene. Development 125, 621-634.[Abstract]

Wilkinson, D. G (2000). Topographic mapping: organising by repulsion and competition?. Curr Biol 10, 447-451.

Yamagata, M., Mai, A., Pollerberg, E., Noda, M (1999). Regulatory interactions among topographic molecules CBF-1, CBF-2 and EphA3 in the developing chick retina. Dev. Growth Differ 41, 575-587.[Medline]

Yoshiura, K., Leysens, N. J., Reiter, R. S. and Murray, J. C (1998). Cloning, characterization, and mapping of the mouse homeobox gene hmx1. Genomics 50, 61-68.[Medline]

Yuasa, J., Hirano, S., Yamagata, M. and Noda, M (1996). Visual projection map specified by topographic expression of transcription factors in the retina. Nature 382, 632-635.[Medline]




This article has been cited by other articles:


Home page
J. Neurosci.Home page
A. Badde and D. Schulte
A Role for Receptor Protein Tyrosine Phosphatase {lambda} in Midbrain Development
J. Neurosci., June 11, 2008; 28(24): 6152 - 6164.
[Abstract] [Full Text] [PDF]


Home page
J. Neurosci.Home page
R. Lee, T. J. Petros, and C. A. Mason
Zic2 Regulates Retinal Ganglion Cell Axon Avoidance of ephrinB2 through Inducing Expression of the Guidance Receptor EphB1
J. Neurosci., June 4, 2008; 28(23): 5910 - 5919.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
C. Garcia-Frigola, M. I. Carreres, C. Vegar, C. Mason, and E. Herrera
Zic2 promotes axonal divergence at the optic chiasm midline by EphB1-dependent and -independent mechanisms
Development, May 15, 2008; 135(10): 1833 - 1841.
[Abstract] [Full Text] [PDF]


Home page
Mol. Cell. Biol.Home page
S. Shim, Y. Kim, J. Shin, J. Kim, and S. Park
Regulation of EphA8 Gene Expression by TALE Homeobox Transcription Factors during Development of the Mesencephalon
Mol. Cell. Biol., March 1, 2007; 27(5): 1614 - 1630.
[Abstract] [Full Text] [PDF]


Home page
Genes Dev.Home page
T. Harada, C. Harada, and L. F. Parada
Molecular regulation of visual system development: more than meets the eye
Genes & Dev., February 15, 2007; 21(4): 367 - 378.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
S. J. Butler and G. Tear
Getting axons onto the right path: the role of transcription factors in axon guidance
Development, February 1, 2007; 134(3): 439 - 448.
[Abstract] [Full Text] [PDF]


Home page
J. Neurosci.Home page
H. Sakuta, H. Takahashi, T. Shintani, K. Etani, A. Aoshima, and M. Noda
Role of bone morphogenic protein 2 in retinal patterning and retinotectal projection.
J. Neurosci., October 18, 2006; 26(42): 10868 - 10878.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
A. Picker and M. Brand
Fgf signals from a novel signaling center determine axial patterning of the prospective neural retina
Development, November 15, 2005; 132(22): 4951 - 4962.
[Abstract] [Full Text] [PDF]


Home page
J. Neurosci.Home page
D. Schulte, M. A. Peters, J. Sen, and C. L. Cepko
The Rod Photoreceptor Pattern Is Set at the Optic Vesicle Stage and Requires Spatially Restricted cVax Expression
J. Neurosci., March 16, 2005; 25(11): 2823 - 2831.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
J. Zhang, Z. Jin, and Z.-Z. Bao
Disruption of gradient expression of Zic3 resulted in abnormal intra-retinal axon projection
Development, April 1, 2004; 131(7): 1553 - 1562.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
H. Takahashi, T. Shintani, H. Sakuta, and M. Noda
CBF1 controls the retinotectal topographical map along the anteroposterior axis through multiple mechanisms
Development, November 1, 2003; 130(21): 5203 - 5215.
[Abstract] [Full Text] [PDF]


Home page
J. Cell Sci.Home page
K. K. Murai and E. B. Pasquale
`Eph'ective signaling: forward, reverse and crosstalk
J. Cell Sci., July 15, 2003; 116(14): 2823 - 2832.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
C. Weinl, U. Drescher, S. Lang, F. Bonhoeffer, and J. Loschinger
On the turning of Xenopus retinal axons induced by ephrin-A5
Development, April 15, 2003; 130(8): 1635 - 1643.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
N. Baumer, T. Marquardt, A. Stoykova, R. Ashery-Padan, K. Chowdhury, and P. Gruss
Pax6 is required for establishing naso-temporal and dorsal characteristics of the optic vesicle
Development, January 10, 2002; 129(19): 4535 - 4545.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
S. H. Mui, R. Hindges, D. D. M. O'Leary, G. Lemke, and S. Bertuzzi
The homeodomain protein Vax2 patterns the dorsoventral and nasotemporal axes of the eye
Development, January 2, 2002; 129(3): 797 - 804.
[Abstract] [Full Text] [PDF]


Home page
ScienceHome page
H. Sakuta, R. Suzuki, H. Takahashi, A. Kato, T. Shintani, S.-i. Iemura, T. S. Yamamoto, N. Ueno, and M. Noda
Ventroptin: A BMP-4 Antagonist Expressed in a Double-Gradient Pattern in the Retina
Science, July 6, 2001; 293(5527): 111 - 115.
[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 Schulte, D.
Right arrow Articles by Cepko, C. L.
Right arrow Search for Related Content
PubMed
Right arrow PubMed Citation
Right arrow Articles by Schulte, D.
Right arrow Articles by Cepko, C. L.