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

Altshuler, D. M., 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]

Anchan, R., Reh, T. A., Angello, J., Balliet, A. and Walker, M (1991). EGF and TGFstimulate retinal neuroepithelial cell proliferation in vitro. Neuron 6, 1-20.[Medline]

Bradley, D. J., Towle, H. C., Young, W. S. 3d (1992). Spatial and temporal expression of alpha-and beta-thyroid hormone receptor mRNAs, including the beta 2-subtype, in the developing mammalian nervous system. J. Neurosci 12, 2288-2302.[Abstract]

Bugge, T. H., Pohl, J., Lonnoy, O. and Stunnenberg, H. G (1992). RXR alpha, a promiscuous partner of retinoic acid and thyroid hormone receptors. EMBO J 11, 1409-1418.[Medline]

Diaz-Araya, C. and Provis, J. M (1992). Evidence of photoreceptor migration during early foveal development: A quantitative analysis of human fetal retina. Vis. Neurosci 8, 505-514.[Medline]

Dizhoor, A. M., Ray, S., Kumar, S., Spencer, M., Brolley, D., Walsh, K. A., Philipov, P. P., Hurley, J. B., Stryer, L (1991). Recoverin: a calcium sensitive activator of retinal rod guanylate cyclase. Science 251, 915-918.[Abstract/Free Full Text]

Dolle, P., Fraulob, V., Kastner, P. and Chambon, P (1994). Developmental expression of murine retinoid X receptor (RXR) genes. Mech. Dev 45, 91-104.[Medline]

Dolle, P., Ruberte, E., Leroy, P., Morriss-Kay, G. and Chambon, P (1990). Retinoic acid receptors and cellular retinoid binding proteins. I. A systematic study of their differential pattern of transcription during mouse organogenesis. Development 110, 1133-1151.[Abstract/Free Full Text]

Durand, B., Saunders, M., Leroy, P., Leid, M. and Chambon, P (1992). All-trans and 9-cis retinoic acid induction of CRABPII transcription is mediated by RAR-RXR heterodimers bound to DR1 and DR2 repeated motifs. Cell 71, 73-85.[Medline]

Forrest, D., Sjoberg, M. and Vennstrom, B (1990). Contrasting developmental and tissue-specific expression of alpha and beta thyroid hormone receptor genes. EMBO J 9, 1519-1528.[Medline]

Gaur, V. P., De Leeuw, A. M., Milam, A. H. and Saari, J. C (1990). Localization of cellular retinoic acid-binding protein to amacrine cells of rat retina. Exp. Eye Res 50, 505-511.[Medline]

Giguere, V., Ong, E. S., Segui, P. and Evans, R. M (1987). Identification of a receptor for the morphogen retinoic acid. Nature 330, 624-629.[Medline]

Gould, E. and Butcher, L. L (1989). Developing cholinergic basal forebrain neurons are sensitive to thyroid hormone. J. Neurosci 9, 3347-3358.[Abstract]

Hargrave, P.A. and McDowell, J.H (1992). Rhodopsin and phototransduction. Int. Rev. Cytol 137, 49-97.

Harris, W. A. and Messersmith, S. L (1992). Two cellular inductions involved in photoreceptor determination in the Xenopus retina. Neuron 9, 357-372.[Medline]

Hendrickson, A (1992). A morphological comparison of foveal development in man and monkey. Eye 6, 136-144.

Hendrickson, A. E. and Kupfer, C (1976). The histogenesis of the fovea in the macaque monkey. Invest. Ophthalmol 15, 746-756.

Hetzel, B. S., Chavadej, J. and Potter, B. J (1988). The brain in iodine deficiency. Neuropath. Appl. Neurobiol 14, 93-104.[Medline]

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

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

Kelley, M. W., Turner, J. K. and Reh, T. A (1995). Regulation of proliferation and photoreceptor differentiation in fetal human retinal cell cultures. Invest. Ophthalmol. Vis. Sci 36, 1280-1289.[Abstract/Free Full Text]

Kliewer, S. A., Umesono, K., Heyman, R. A., Mangelsdorf, D. J., Dyck, J. A. and Evans, R. M (1992). Retinoid X receptor-COUP-TF interactions modulate retinoic acid signaling. Proc. Natl. Acad. Sci. USA 89, 1448-1452.[Abstract/Free Full Text]

Lauder, J. M (1977). The effects of early hypo-and hyperthyroidism on the development of rat cerebellar cortex. III. Kinetics of cell proliferation in the external granular layer. Brain Res 126, 31-51.[Medline]

Leid, M., Kastner, P., Lyons, R., Nakshatri, H., Saunders, M., Zacharewski, T., Chen, J. Y., Staub, A., Garnier, J. M., Mader, S. et al (1992). Purification, cloning, and RXR identity of the HeLa cell factor with which RAR or TR heterodimerizes to bind target sequences efficiently. Cell 68, 377-395.[Medline]

Lerea, C.L., Bunt-Milam, A.H. and Hurley, J.B (1989). Alpha transducin is present in blue-, green-, and red-sensitive cone photoreceptors in the human retina. Neuron 3, 367-376.[Medline]

McCaffery, P., Lee, M. O., Wagner, M. A., Sladek, N. E. and Drager, U. C (1992). Asymmetrical retinoic acid synthesis in the dorsoventral axis of the retina. Development 115, 371-382.[Abstract]

McCaffery, P., Posch, K. C., Napoli, J. L. Gudas, L., and Drager, U. C (1993). Changing patterns of the retinoic acid system in developing retina. Dev. Biol 158, 390-399.[Medline]

Mangelsdorf, D. J., Borgmeyer, U., Heyman, R. A., Zhou, J. Y., Ong, E. S., Oro, A. E., Kakizuka, A. and Evans, R. M (1992). Characterization of three RXR genes that mediate the action of 9-cis retinoic acid. Genes and Develop 6, 329-344.[Abstract/Free Full Text]

Mangelsdorf, D. J., Ong, E. S., Dyck, J. A. and Evans, R. M (1990). Nuclear receptor that identifies a novel retinoic acid response pathway. Nature 345, 224-229.[Medline]

Marks, M. S., Hallenbeck, P. L., Nagata, T., Segars, J. H., Appella, E., Nikodem, V. M. and Ozato, K (1992). H-2RIIBP (RXR beta) heterodimerization provides a mechanism for combinatorial diversity in the regulation of retinoic acid and thyroid hormone responsive genes. EMBO J 11, 1419-1435.[Medline]

Marsh-Armstrong, N., McCaffery, P., Gilbert, W., Dowling, J. E. and Drager, U. C (1994). Retinoic acid is necessary for development of the ventral retina in zebrafish. Proc. Natl. Acad. Sci. USA 91, 7286-7290.[Abstract/Free Full Text]

Mellstrom, B., Naranjo, J. R., Santos, A., Gonzalez, A. M. and Bernal, J (1991). Independent expression of the alpha and beta c-erbA genes in developing rat brain. Mol. Endocrinol 5, 1339-1350.[Abstract/Free Full Text]

Milam, A. H., Dacey, D. M. and Dizhoor, A. M (1993). Recoverin immunoreactivity in mammalian cone bipolar cells. Vis. Neurosci 10, 1-12.[Medline]

Mlodzik, M., Hiromi, Y., Weber, U., Goodman, C. S. and Rubin, G (1990). The Drosophila seven-up gene, a member of the steroid receptor gene superfamily, controls photoreceptor cell fate. Cell 60, 211-224.[Medline]

Nicholson, J. L. and Altman, J (1972). The effects of early hypo-and hyperthyroidism on the development of rat cerebellar cortex. I. Cell proliferation and differentiation. Brain Res 44, 13-23.[Medline]

Packer, O., Hendrickson, A. E. and Curcio, C. A (1990). Developmental redistribution of photoreceptors across the Macaca nemestrina (pigtail macaque) retina. J. Comp. Neurol 298, 472-493.[Medline]

Petkovich, M., Brand, N. J., Krust, A. and Chambon, P (1987). A human retinoic acid receptor which belongs to the family of nuclear receptors. Nature 330, 444-450.[Medline]

Pickard, M. R., Sinha, A. K., Ogilvie, L., and Ekins, R. P (1993). The influence of the maternal thyroid hormone environment during pregnancy on the ontogenesis of brain and placental ornithine decarboxylase activity in the rat. J. Endocrinol 139, 205-212.[Abstract/Free Full Text]

Prati, M., Calvo, R., Morreale, G., Morreale-de-Escobar, G (1992). L-thyroxine and 3,5,3-triiodothyronine concentrations in the chicken egg and in the embryo before and after the onset of thyroid function. Endocrinology 130, 2651-2659.[Abstract/Free Full Text]

Raymond, P. A., Reifler, M. J. and Rivlin P. K (1988). Regeneration of goldfish retina: rod precursors are a likely source of regenerated cells. J. Neurobiol 19, 431-463.[Medline]

Reh, T. A (1987). Cell-specific regulation of neuronal production in the larval frog retina. J. Neurosci 7, 3317-3324.[Abstract]

Reh, T. A (1992). Cellular interactions determine neuronal phenotypes in rodent retinal cultures. J. Neurobiol 23, 1067-1083.[Medline]

Ruberte, E., Dolle, P., Chambon, P., Morriss-Kay, G (1991). Retinoic acid receptors and cellular retinoid binding proteins. II. Their differential pattern of transcription during early morphogenesis in mouse embryos. Development 111, 45-60.[Abstract]

Seleiro, E. A., Darling, D. and Brickell, P. M (1994). The chicken retinoid-X-receptor-gamma gene gives rise to two distinct species of mRNA with different patterns of expression. Biochem. J 301, 283-288.

Sjoberg, M., Vennstrom, B. and Forrest, D (1992). Thyroid hormone receptors in chick retinal development: differential expression of mRNAs for alpha and N-terminal variant beta receptors. Development 114, 39-47.[Abstract]

Sparrow, J. R., Hicks, D. and Barnstable, C. J (1990). Cell commitment and differentiation in explants of embryonic rat neural retina. Comparison with the developmental potential of dissociated retina. Brain Res. Dev. Brain Res 51, 69-84.[Medline]

Studer, M., Popperl, H., Marshall, H., Kuroiwa, A. and Krumlauf, R (1994). Role of a conserved retinoic acid response element in rhombomere restriction of Hoxb-1. Science 265, 1728-1732.[Abstract/Free Full Text]

Takumi, K. and Uehara F (1991). In vivo lectin-binding of photoreceptors and interphotoreceptor matrix in rat. Jpn. J. Ophthalmol 35, 16-22.[Medline]

Tsai, S., Bartelmez, S., Heyman, R., Damm, K., Evans, R. and Collins, S. J (1992). A mutated retinoic acid receptor-alpha exhibiting dominant-negative activity alters the lineage development of a multipotent hematopoietic cell line. Genes Dev 6, 2258-2269.[Abstract/Free Full Text]

Vandaele, S., Nordquist, D. T., Feddersen, R. M., Tretjakoff, I., Peterson, A. C., and Orr, H. T (1991). Purkinje cell protein-2 regulatory regions and transgene expression in cerebellar compartments. Genes Dev 5, 1136-48.[Abstract/Free Full Text]

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

Wikler, K. C. and Rakic, P (1991). Relation of an array of early-differentiating cones to the photoreceptor mosaic in the primate retina. Nature 351, 397-400.[Medline]

Yip, D. K. and Auersperg, N (1972). The dye-exclusion test for cell viability: persistence of differential staining following fixation. In Vitro 7, 323-329.[Medline]

Yu, V. C., Delsert, C., Andersen, B., Holloway, J. M., Devary, O. V., Naar, A. M., Kim, S. Y., Boutin, J. M., Glass, C. K. and Rosenfeld, M. G (1991). RXR beta: a coregulator that enhances binding of retinoic acid, thyroid hormone, and vitamin D receptors to their cognate response elements. Cell 67, 1251-1266.[Medline]

Yuodelis, C. and Hendrickson, A. E (1986). A qualitative and quantitative analysis of the human fovea during development. Vision Res 26, 847-856.[Medline]

Zhang, X. K., Hoffmann, B., Tran, P. B., Graupner, G. and Pfahl, M (1992). Retinoid X receptor is an auxiliary protein for thyroid hormone and retinoic acid receptors. Nature 355, 441-446.[Medline]


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