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 Zhang, X. M.
Right arrow Articles by Yang, X. J.
Right arrow Search for Related Content
PubMed
Right arrow PubMed Citation
Right arrow Articles by Zhang, X. M.
Right arrow Articles by Yang, X. J.
Ahmad, I., Dooley, C. M. and Polk, D. L. I (1997). Delta-1 is a regulator of neurogenesis in the vertebrate retina. Dev. Biol 185, 92-103.[Medline]

Alexiades, M. R. and Cepko, C. L (1997). Subsets of retinal progenitors display temporally regulated and distinct biases in the fates of their progeny. Development 124, 1119-1131.[Abstract]

Altshuler, D. and Cepko, C (1992). A temporally regulated, diffusible activity is required for rod photoreceptor development in vitro. Development 114, 947-957.[Abstract]

Altshuler, D., Lo Turco, J. J., Rush, J. and Cepko, C. ( (1993). Taurine promotes the differentiation of a vertebrate retinal cell type in vitro. Development 119, 1317-1328.[Abstract]

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

Baker, N. E., Yu, S. and Han, D (1996). Evolution of proneural atonal expression during distinct regulatory phases in the developing Drosophila eye. Curr. Biol 6, 1290-1301.[Medline]

Bao, Z. Z. and Cepko, C. L (1997). The expression and function of Notch pathway genes in the developing rat eye. J. Neurosci 17, 1425-1434.[Abstract/Free Full Text]

Belecky-Adams, T., Cook, B. and Adler, R (1996). Correlations between terminal mitosis and differentiated fate of retinal precursor cells in vivo and in vitro: analysis with the \324window-labeling' technique. Dev. Biol 178, 304-315.[Medline]

Belliveau, M. J. and Cepko, C. L (1999). Extrinsic and intrinsic factors control the genesis of amacrine and cone cells in the rat retina. Development 126, 555-566.[Abstract]

Belloni, E., Muenke, M., Roessler, E., Traverso, G., Siegel-Bartelt, J., Frumkin, A., Mitchell, H. F., Donis-Keller, H., Helms, C., Hing, A. V. et al (1996). Identification of Sonic hedgehog as a candidate gene responsible for holoprosencephaly. Nat Genet 14, 353-356.[Medline]

Brown, N. L., Sattler, C. A., Paddock, S. W. and Carroll, S. B (1995). Hairy and emc negatively regulate morphogenetic furrow progression in the Drosophila eye. Cell 80, 879-887.[Medline]

Brown, N. L., Kanekar, S., Vetter, M. L., Tucker, P. K., Gemza, D. L. and Glaser, T (1998). Math5 encodes a murine basic helix-loop-helix transcription factor expressed during early stages of retinal neurogenesis. Development 125, 4821-4233.[Abstract]

Cepko, C. L (1996). The patterning and onset of opsin expression in vertebrate retinae. Curr. Opin. Neurobiol 6, 542-546.[Medline]

Cepko, C. L (1999). The roles of intrinsic and extrinsic cues and bHLH genes in the determination of retinal cell fates. Curr. Opin. Neurobiol 9, 37-46.[Medline]

Cepko, C. L., Austin, C. P., Yang, X., Alexiades, M. and Ezzeddine, D (1996). Cell fate determination in the vertebrate retina. Proc. Natl. Acad. Sci. USA 93, 589-595.[Abstract/Free Full Text]

Chen, S., Wang, Q. L., Nie, Z., Sun, H., Lennon, G., Copeland, N. G., Gilbert, D. J., Jenkins, N. A. and Zack, D. J (1997). Crx, a novel Otx-like paired-homeodomain protein, binds to and transactivates photoreceptor cell-specific genes. Neuron 19, 1017-1030.[Medline]

Chiang, C., Litingtung, Y., Lee, E., Young, K. E., Corden, J. L., Westphal, H. and Beachy, P. A (1996). Cyclopia and defective axial patterning in mice lacking Sonic hedgehog gene function. Nature 383, 407-413.[Medline]

Dahmane, N. and Ruiz i Altaba, A (1999). Sonic hedgehog regulates the growth and patterning of the cerebellum. Development 126, 3089-3100.[Abstract]

Dominguez, M (1999). Dual role for Hedgehog in the regulation of the proneural gene atonal during ommatidia development. Development 126, 2345-2353.[Abstract]

Dominguez, M. and Hafen, E (1997). Hedgehog directly controls initiation and propagation of retinal differentiation in the Drosophila eye. Genes Dev 11, 3254-3264.[Abstract/Free Full Text]

Dorsky, R. I., Rapaport, D. H. and Harris, W. A (1995). Xotch inhibits cell differentiation in the Xenopus retina. Neuron 14, 487-496.[Medline]

Dorsky, R. I., Chang, W. S., Rapaport, D. H. and Harris, W. A (1997). Regulation of neuronal diversity in the Xenopus retina by Delta signalling. Nature 385, 67-70.[Medline]

Edlund, T. and Jessell, T. M (1999). Progression from extrinsic to intrinsic signaling in cell fate specification: a view from the nervous system. Cell 96, 211-224.[Medline]

Ekker, S. C., Ungar, A. R., Greenstein, P., von Kessler, D. P., Porter, J. A., Moon, R. T. and Beachy, P. A (1995). Patterning activities of vertebrate hedgehog proteins in the developing eye and brain. Curr. Biol 5, 944-955.[Medline]

Ericson, J., Morton, S., Kawakami, A., Roelink, H. and Jessell, T. M (1996). Two critical periods of Sonic Hedgehog signaling required for the specification of motor neuron identity. Cell 87, 661-673.[Medline]

Ericson, J., Rashbass, P., Schedl, A., Brenner-Morton, S., Kawakami, A., van Heyningen, V., Jessell, T. M. and Briscoe, J (1997). Pax6 controls progenitor cell identity and neuronal fate in response to graded Shh signaling. Cell 90, 169-180.[Medline]

Ezzeddine, Z. D., Yang, X., DeChiara, T., Yancopoulos, G. and Cepko, C. L (1997). Postmitotic cells fated to become rod photoreceptors can be respecified by CNTF treatment of the retina. Development 124, 1055-1067.[Abstract]

Fekete, D. M., Perez-Miguelsanz, J., Ryder, E. F. and Cepko, C. L (1994). Clonal analysis in the chicken retina reveals tangential dispersion of clonally related cells. Dev. Biol 166, 666-682.[Medline]

Fuhrmann, S., Kirsch, M. and Hofmann, H. D (1995). Ciliary neurotrophic factor promotes chick photoreceptor development in vitro. Development 121, 2695-2706.[Abstract]

Furukawa, T., Morrow, E. M. and Cepko, C. L (1997). Crx, a novel otx-like homeobox gene, shows photoreceptor-specific expression and regulates photoreceptor differentiation. Cell 91, 531-541.[Medline]

Gavrieli, Y., Sherman, Y. and Ben-Sasson, S. A (1992). Identification of programmed cell death in situ via specific labeling of nuclear DNA fragmentation. J. Cell Biol 119, 493-501.[Abstract/Free Full Text]

Goodrich, L. V. and Scott, M. P (1998). Hedgehog and patched in neural development and disease. Neuron 21, 1243-1257.[Medline]

Greenwood, S. and Struhl, G (1999). Progression of the morphogenetic furrow in the Drosophila eye: the roles of Hedgehog, Decapentaplegic and the Raf pathway. Development 126, 5795-5808.[Abstract]

Guillemot, F. and Cepko, C. L (1992). Retinal fate and ganglion cell differentiation are potentiated by acidic FGF in an in vitro assay of early retinal development. Development 114, 743-754.[Abstract]

Hallonet, M., Hollemann, T., Pieler, T. and Gruss, P (1999). Vax1, a novel homeobox-containing gene, directs development of the basal forebrain and visual system. Genes Dev 13, 3106-3114.[Abstract/Free Full Text]

Hamburger, V. and Hamilton, H (1951). A series of normal stages in the development of the chick embryo. J. Morphol 88, 49-92.

Hammerschmidt, M., Brook, A. and McMahon, A. P (1997). The world according to hedgehog. Trends Genet 13, 14-21.[Medline]

Harris, W. A (1997). Cellular diversification in the vertebrate retina. Curr. Opin. Genet. Dev 7, 651-658.[Medline]

Heberlein, U. and Moses, K (1995). Mechanisms of Drosophila retinal morphogenesis: the virtues of being progressive. Cell 81, 987-990.[Medline]

Henrique, D., Hirsinger, E., Adam, J., Le Roux, I., Pourquie, O., Ish-Horowicz, D. and Lewis, J (1997). Maintenance of neuroepithelial progenitor cells by Delta-Notch signalling in the embryonic chick retina. Curr. Biol 7, 661-670.[Medline]

Hicks, D. and Courtois, Y (1992). Fibroblast growth factor stimulates photoreceptor differentiation in vitro. J. Neurosci 12, 2022-2033.[Abstract]

Holt, C. E., Bertsch, T. W., Ellis, H. M. and Harris, W. A (1988). Cellular determination in the Xenopus retina is independent of lineage and birth date. Neuron 1, 15-26.[Medline]

Hu, M. and Easter, S. S (1999). Retinal neurogenesis: the formation of the initial central patch of postmitotic cells. Dev. Biol 207, 309-321.[Medline]

Hughes, S. H., Greenhouse, J. J., Petropoulos, C. J. and 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]

Jarman, A. P., Grell, E. H., Ackerman, L., Jan, L. Y. and Jan, Y. N (1994). Atonal is the proneural gene for Drosophila photoreceptors. Nature 369, 398-400.[Medline]

Jasoni, C. L., Walker, M. B., Morris, M. D. and Reh, T. A (1994). A chicken achaete-scute homolog (CASH-1) is expressed in a temporally and spatially discrete manner in the developing nervous system. Development 120, 769-783.[Abstract]

Jensen, A. M. and Wallace, V. A (1997). Expression of Sonic hedgehog and its putative role as a precursor cell mitogen in the developing mouse retina. Development 124, 363-371.[Abstract]

Kanekar, S., Perron, M., Dorsky, R., Harris, W. A., Jan, L. Y., Jan, Y. N. and Vetter, M. L (1997). Xath5 participates in a network of bHLH genes in the developing Xenopus retina. Neuron 19, 981-994.[Medline]

Kelley, M. W., Turner, J. K. and Reh, T. A (1994). Retinoic acid promotes differentiation of photoreceptors in vitro. Development 120, 2091-2102.[Abstract]

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]

Levine, E. M., Roelink, H., Turner, J. and Reh, T. A (1997). Sonic hedgehog promotes rod photoreceptor differentiation in mammalian retinal cells in vitro. J Neurosci 17, 6277-6288.[Abstract/Free Full Text]

Lillien, L (1995). Changes in retinal cell fate induced by overexpression of EGF receptor. Nature 377, 158-162.[Medline]

Lillien, L (1998). Neural progenitors and stem cells: Mechanisms of progenitor heterogeneity. Curr. Opin. Neurobiol 8, 37-44.[Medline]

Liu, W., Khare, S. L., Liang, X., Peters, M. A., Liu, X., Cepko, C. L. and Xiang, M (2000). All Brn3 genes can promote retinal ganglion cell differentiation in the chick. Development 127, 3237-3247.[Abstract]

Macdonald, R., Barth, K. A., Xu, Q., Holder, N., Mikkola, I. and Wilson, S. W (1995). Midline signalling is required for Pax gene regulation and patterning of the eyes. Development 121, 3267-3278.[Abstract]

Marigo, V., Davey, R. A., Zuo, Y., Cunningham, J. M. and Tabin, C. J (1996). Biochemical evidence that patched is the Hedgehog receptor. Nature 384, 176-179.[Medline]

Masai, I., Stemple, D. L., Okamoto, H. and Wilson, S. W (2000). Midline signals regulate retinal neurogenesis in zebrafish. Neuron 27, 251-263.[Medline]

Masland, R.H. and Raviola, E (2000). Confronting complexity: strategies for understanding the microcircuitry of the retina. Annu. Rev. Neurosci 23, 249-284.[Medline]

McCabe, K. L., Gunther, E. C. and Reh, T. A (1999). The development of the pattern of retinal ganglion cells in the chick retina: mechanisms that control differentiation. Development 126, 5713-5724.[Abstract]

McFarlane, S., Zuber, M. E. and Holt, C. E (1998). A role for the fibroblast growth factor receptor in cell fate decisions in the developing vertebrate retina. Development 125, 3967-3975.[Abstract]

McMahon, A. P (2000). More surprises in the Hedgehog signaling pathway. Cell 100, 185-188.[Medline]

Ming, J. E., Roessler, E. and Muenke, M (1998). Human developmental disorders and the Sonic hedgehog pathway. Mol. Med. Today 4, 343-349.[Medline]

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

Morrow, E. M., Furukawa, T., Lee, J. E. and Cepko, C. L. ( (1999). NeuroD regulates multiple functions in the developing neural retina in rodent. Development 126, 23-36.[Abstract]

Morrow, E. M., Belliveau, M. J. and Cepko, C. L (1998). Two phases of rod photoreceptor differentiation during rat retinal development. J. Neurosci 18, 3738-3748.[Abstract/Free Full Text]

Neumann, C. J. and Nuesslein-Volhard, C (2000). Patterning of the zebrafish retina by a wave of sonic hedgehog activity. Science 289, 2137-2139.[Abstract/Free Full Text]

Perron, M., Opdecamp, K., Butler, K., Harris, W. A. and Bellefroid, E. J (1999). X-ngnr-1 and Xath3 promote ectopic expression of sensory neuron markers in the neurula ectoderm and have distinct inducing properties in the retina. Proc. Natl. Acad. Sci. USA 96, 14996-15001.[Abstract/Free Full Text]

Pignoni, F. and Zipursky, S. L (1997). Induction of Drosophila eye development by decapentaplegic. Development 124, 271-278.[Abstract]

Prada, C., Medina, J. I., Lopez, R., Genis-Galvez, J. M. and Prada, F. A (1992). Development of retinal displaced ganglion cells in the chick: neurogenesis and morphogenesis. J. Neurosci 12, 3781-3788.[Abstract]

Reh, T. A. and Levine, E. M (1998). Multipotential stem cells and progenitors in the vertebrate retina. J. Neurobiol 36, 206-220.[Medline]

Reh, T. A. and Tully, T (1986). Regulation of tyrosine hydroxylase-containing amacrine cell number in larval frog retina. Dev. Biol 114, 463-469.[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]

Roessler, E., Belloni, E., Gaudenz, K., Jay, P., Berta, P., Scherer, S. W., Tsui, L. C. and Muenke, M (1996). Mutations in the human Sonic Hedgehog gene cause holoprosencephaly. Nat. Genet 14, 357-360.[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]

Snow, R. L. and Robson, J. A (1994). Ganglion cell neurogenesis, migration and early differentiation in the chick retina. Neuroscience 58, 399-409.[Medline]

Spence, S. G. and Robson, J. A (1989). An autoradiographic analysis of neurogenesis in the chick retina in vitro and in vivo. Neuroscience 32, 801-812.[Medline]

Stenkamp, D. L., Frey, R. A., Prabhudesai, S. N. and Raymond, P. A (2000). Function for hedgehog genes in zebrafish retinal development. Dev. Biol 220, 238-252.[Medline]

Stoker, A. W. and Bissell, M. J (1987). Quantitative immunocytochemical assay for infectious avian retroviruses. J. Gen. Virol 68, 2481-2485.[Abstract/Free Full Text]

Tomlinson, A. and Ready, D. F (1987). Neuronal differentiation in the Drosophila ommatidium. Dev. Biol 120, 366-376.[Medline]

Torelli, S., Sogos, V., Marzilli, M. A., D'Atri, M. and Gremo, F (1989). Developmental expression of intermediate filament proteins in the chick embryo retina: in vivo and in vitro comparison. Exp. Biol 48, 187-196.[Medline]

Treisman, J. E. and Heberlein, U (1998). Eye development in Drosophila: formation of the eye field and control of differentiation. Curr. Top. Dev. Biol 39, 119-158.[Medline]

Turner, D. L. and Cepko, C. L (1987). A common progenitor for neurons and glia persists in rat retina late in development. Nature 328, 131-136.[Medline]

Turner, D. L., Snyder, E. Y. and Cepko, C. L (1990). Lineage-independent determination of cell type in the embryonic mouse retina. Neuron 4, 833-845.[Medline]

Waid, D. K. and McLoon, S. C (1995). Immediate differentiation of ganglion cells following mitosis in the developing retina. Neuron 14, 117-124.[Medline]

Waid, D. K. and McLoon, S. C (1998). Ganglion cells influence the fate of dividing retinal cells in culture. Development 125, 1059-1066.[Abstract]

Wallace, V. A. and Raff, M. C (1999). A role for Sonic hedgehog in axon-to-astrocyte signalling in the rodent optic nerve. Development 126, 2901-2909.[Abstract]

Watanabe, T. and Raff, M. C (1990). Rod photoreceptor development in vitro: intrinsic properties of proliferating neuroepithelial cells change as development proceeds in the rat retina. Neuron 4, 461-467.[Medline]

Watanabe, T. and Raff, M. C (1992). Diffusible rod-promoting signals in the developing rat retina. Development 114, 899-906.[Abstract]

Wechsler-Reya, R. J. and Scott, M. P (1999). Control of neuronal precursor proliferation in the cerebellum by Sonic Hedgehog [see comments]. Neuron 22, 103-114.[Medline]

Wetts, R. and Fraser, S. E (1988). Multipotent precursors can give rise to all major cell types of the frog retina. Science 239, 1142-1145.[Abstract/Free Full Text]

White, N. M. and Jarman, A. P (2000). Drosophila atonal controls photoreceptor R8-specific properties and modulates both receptor tyrosine kinase and Hedgehog signalling. Development 127, 1681-1689.[Abstract]

Yamada, T., Pfaff, S. L., Edlund, T. and Jessell, T. M (1993). Control of cell pattern in the neural tube: motor neuron induction by diffusible factors from notochord and floor plate. Cell 73, 673-686.[Medline]

Yan, R. T. and Wang, S. Z (1998). NeuroD induces photoreceptor cell overproduction in vivo and de novo generation in vitro. J. Neurobiol 36, 485-496.[Medline]

Yang, X. J. and Cepko, C. L (1996). Flk-1, a receptor for vascular endothelial growth factor (VEGF), is expressed by retinal progenitor cells. J. Neurosci 16, 6089-6099.[Abstract/Free Full Text]

Ye, W., Shimamura, K., Rubenstein, J. L., Hynes, M. A. and Rosenthal, A (1998). FGF and Shh signals control dopaminergic and serotonergic cell fate in the anterior neural plate. Cell 93, 755-766.[Medline]

Young, R. W (1985). Cell differentiation in the retina of the mouse. Anat. Rec 212, 199-205.[Medline]

Yourey, P. A., Gohari, S., Su, J. L. and Alderson, R. F (2000). Vascular endothelial cell growth factors promote the in vitro development of rat photoreceptor cells. J. Neurosci 20, 6781-6788.[Abstract/Free Full Text]

Gonzalez-Hoyuela, M., Barbas, J. A. and Rodriguez-Tebar, A (2001). The autoregulation of retinal ganglion cell number. Development 128, 117-124.[Abstract]




This article has been cited by other articles:


Home page
IOVSHome page
D. L. Stenkamp, R. Satterfield, K. Muhunthan, T. Sherpa, T. S. Vihtelic, and D. A. Cameron
Age-Related Cone Abnormalities in Zebrafish with Genetic Lesions in Sonic Hedgehog
Invest. Ophthalmol. Vis. Sci., October 1, 2008; 49(10): 4631 - 4640.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
L. Pan, M. Deng, X. Xie, and L. Gan
ISL1 and BRN3B co-regulate the differentiation of murine retinal ganglion cells
Development, June 1, 2008; 135(11): 1981 - 1990.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
J. Hernandez, L. Matter-Sadzinski, D. Skowronska-Krawczyk, F. Chiodini, C. Alliod, M. Ballivet, and J.-M. Matter
Highly Conserved Sequences Mediate the Dynamic Interplay of Basic Helix-Loop-Helix Proteins Regulating Retinogenesis
J. Biol. Chem., December 28, 2007; 282(52): 37894 - 37905.
[Abstract] [Full Text] [PDF]


Home page
Genes Dev.Home page
M. Locker, M. Agathocleous, M. A. Amato, K. Parain, W. A. Harris, and M. Perron
Hedgehog signaling and the retina: insights into the mechanisms controlling the proliferative properties of neural precursors.
Genes & Dev., November 1, 2006; 20(21): 3036 - 3048.
[Abstract] [Full Text] [PDF]


Home page
GeneticsHome page
K. Durr, J. Holzschuh, A. Filippi, A.-K. Ettl, S. Ryu, I. T. Shepherd, and W. Driever
Differential Roles of Transcriptional Mediator Complex Subunits Crsp34/Med27, Crsp150/Med14 and Trap100/Med24 During Zebrafish Retinal Development
Genetics, October 1, 2006; 174(2): 693 - 705.
[Abstract] [Full Text] [PDF]


Home page
J. Neurosci.Home page
L. Gao and R. H. Miller
Specification of optic nerve oligodendrocyte precursors by retinal ganglion cell axons.
J. Neurosci., July 19, 2006; 26(29): 7619 - 7628.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
T. Hashimoto, X.-M. Zhang, B. Y.-k. Chen, and X.-J. Yang
VEGF activates divergent intracellular signaling components to regulate retinal progenitor cell proliferation and neuronal differentiation
Development, June 1, 2006; 133(11): 2201 - 2210.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
Y. Wang, G. D. Dakubo, S. Thurig, C. J. Mazerolle, and V. A. Wallace
Retinal ganglion cell-derived sonic hedgehog locally controls proliferation and the timing of RGC development in the embryonic mouse retina
Development, November 15, 2005; 132(22): 5103 - 5113.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
C. Cenci and A. P. Gould
Drosophila Grainyhead specifies late programmes of neural proliferation by regulating the mitotic activity and Hox-dependent apoptosis of neuroblasts
Development, September 1, 2005; 132(17): 3835 - 3845.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
J. N. Kay, B. A. Link, and H. Baier
Staggered cell-intrinsic timing of ath5 expression underlies the wave of ganglion cell neurogenesis in the zebrafish retina
Development, June 1, 2005; 132(11): 2573 - 2585.
[Abstract] [Full Text] [PDF]


Home page
J. Neurosci.Home page
A. Kolpak, J. Zhang, and Z.-Z. Bao
Sonic Hedgehog Has a Dual Effect on the Growth of Retinal Ganglion Axons Depending on Its Concentration
J. Neurosci., March 30, 2005; 25(13): 3432 - 3441.
[Abstract] [Full Text] [PDF]


Home page
J. Neurosci.Home page
K. D. Rhee, O. Goureau, S. Chen, and X.-J. Yang
Cytokine-Induced Activation of Signal Transducer and Activator of Transcription in Photoreceptor Precursors Regulates Rod Differentiation in the Developing Mouse Retina
J. Neurosci., November 3, 2004; 24(44): 9779 - 9788.
[Abstract] [Full Text] [PDF]


Home page
J. Neurosci.Home page
T. Miyawaki, A. Uemura, M. Dezawa, R. T. Yu, C. Ide, S. Nishikawa, Y. Honda, Y. Tanabe, and T. Tanabe
Tlx, an Orphan Nuclear Receptor, Regulates Cell Numbers and Astrocyte Development in the Developing Retina
J. Neurosci., September 15, 2004; 24(37): 8124 - 8134.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
J. R. Spence, M. Madhavan, J. D. Ewing, D. K. Jones, B. M. Lehman, and K. Del Rio-Tsonis
The hedgehog pathway is a modulator of retina regeneration
Development, September 15, 2004; 131(18): 4607 - 4621.
[Abstract] [Full Text] [PDF]


Home page
IOVSHome page
W. Xie, R.-T. Yan, W. Ma, and S.-Z. Wang
Enhanced Retinal Ganglion Cell Differentiation by ath5 and NSCL1 Coexpression
Invest. Ophthalmol. Vis. Sci., September 1, 2004; 45(9): 2922 - 2928.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
X. Mu, P. D. Beremand, S. Zhao, R. Pershad, H. Sun, A. Scarpa, S. Liang, T. L. Thomas, and W. H. Klein
Discrete gene sets depend on POU domain transcription factor Brn3b/Brn-3.2/POU4f2 for their expression in the mouse embryonic retina
Development, March 15, 2004; 131(6): 1197 - 1210.
[Abstract] [Full Text] [PDF]


Home page
IOVSHome page
M. I. Dorrell, E. Aguilar, C. Weber, and M. Friedlander
Global Gene Expression Analysis of the Developing Postnatal Mouse Retina
Invest. Ophthalmol. Vis. Sci., March 1, 2004; 45(3): 1009 - 1019.
[Abstract] [Full Text] [PDF]


Home page
IOVSHome page
E. J. Sanders, M. A. Walter, E. Parker, C. Aramburo, and S. Harvey
Opticin Binds Retinal Growth Hormone in the Embryonic Vitreous
Invest. Ophthalmol. Vis. Sci., December 1, 2003; 44(12): 5404 - 5409.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
G. D. Dakubo, Y. P. Wang, C. Mazerolle, K. Campsall, A. P. McMahon, and V. A. Wallace
Retinal ganglion cell-derived sonic hedgehog signaling is required for optic disc and stalk neuroepithelial cell development
Development, July 1, 2003; 130(13): 2967 - 2980.
[Abstract] [Full Text] [PDF]


Home page
Proc. Natl. Acad. Sci. USAHome page
R. G. Gregg, G. B. Willer, J. M. Fadool, J. E. Dowling, and B. A. Link
Positional cloning of the young mutation identifies an essential role for the Brahma chromatin remodeling complex in mediating retinal cell differentiation
PNAS, May 27, 2003; 100(11): 6535 - 6540.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
M. Perron, S. Boy, M. A. Amato, A. Viczian, K. Koebernick, T. Pieler, and W. A. Harris
A novel function for Hedgehog signalling in retinal pigment epithelium differentiation
Development, April 15, 2003; 130(8): 1565 - 1577.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
D. J. Solecki, M. Gromeier, S. Mueller, G. Bernhardt, and E. Wimmer
Expression of the Human Poliovirus Receptor/CD155 Gene Is Activated by Sonic Hedgehog
J. Biol. Chem., July 5, 2002; 277(28): 25697 - 25702.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
A. J. Fischer, B. D. Dierks, and T. A. Reh
Exogenous growth factors induce the production of ganglion cells at the retinal margin
Development, January 5, 2002; 129(9): 2283 - 2291.
[Abstract] [Full Text] [PDF]


Home page
Nucleic Acids ResHome page
X. Mu, S. Zhao, R. Pershad, T.-F. Hsieh, A. Scarpa, S. W. Wang, R. A. White, P. D. Beremand, T. L. Thomas, L. Gan, et al.
Gene expression in the developing mouse retina by EST sequencing and microarray analysis
Nucleic Acids Res., December 15, 2001; 29(24): 4983 - 4993.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
F. Trousse, E. Marti, P. Gruss, M. Torres, and P. Bovolenta
Control of retinal ganglion cell axon growth: a new role for Sonic hedgehog
Development, October 15, 2001; 128(20): 3927 - 3936.
[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 Zhang, X. M.
Right arrow Articles by Yang, X. J.
Right arrow Search for Related Content
PubMed
Right arrow PubMed Citation
Right arrow Articles by Zhang, X. M.
Right arrow Articles by Yang, X. J.