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Brewster, R., Lee, J. and Ruiz i Altaba, A (1998). Gli/Zic factors pattern the neural plate by defining domains of cell differentiation. Nature 393, 579-83.[Medline]

Chitnis, A., Henrique, D., Lewis, J., Ish-Horowicz, D. and Kintner, C (1995). Primary neurogenesis in Xenopus embryos regulated by a homologue of the Drosophila neurogenic gene Delta. Nature 375, 761-766.[Medline]

Cho, K. W., Morita, E. A., Wright, C. V. and De Robertis, E. M (1991). Overexpression of a homeodomain protein confers axis-forming activity to uncommitted Xenopus embryonic cells. Cell 65, 55-64.[Medline]

Collignon, J., Sockanathan, S., Hacker, A., Cohen-Tannoudji, M., Norris, D., Rastan, S., Stevanovic, M., Goodfellow, P. N. and Lovell-Badge, R (1996). A comparison of the properties of Sox3 with Sry and two related genes, Sox1 and Sox2. Development 122, 509-520.[Abstract]

Condie, B. G., Brivanlou, A. H. and Harland, R. M (1990). Most of the homeobox-containing Xhox 3 transcripts in early Xenopus embryos cannot encode a homeodomain protein. Mol. Cell Biol 10, 3376-3385.[Abstract/Free Full Text]

Conlon, F. L., Sedgwick, S. G., Weston, K. M. and Smith, J. C (1996). Inhibition of Xbra transcription activation causes defects in mesodermal patterning and reveals autoregulation of Xbra in dorsal mesoderm. Development 122, 2427-2435.[Abstract]

Hemmati-Brivanlou, A., Kelly, O. G. and Melton, D. A (1994). Follistatin, an antagonist of activin, is expressed in the Spemann organizer and displays direct neuralizing activity. Cell 77, 283-295.[Medline]

Hemmati-Brivanlou, A. and Melton, D (1997). Vertebrate neural induction. Annu Rev Neurosci 20, 43-60.[Medline]

Hensey, C. and Gautier, J (1997). A developmental timer that regulates apotosis at the onset of gastrulation. Mech. Dev 69, 183-195.[Medline]

Hopwood, N. D., Pluck, A. and Gurdon, J. B (1989). MyoD expression in the forming somites is an early response to mesoderm induction in Xenopus embryos. EMBO J 8, 3409-3417.[Medline]

Horb, M. E. and Thomsen, G. H (1999). Tbx5 is essential for heart development. Development 126, 1739-1751.[Abstract]

Isaacs, H. V., Tannahill, D. and Slack, J. M (1992). Expression of a novel FGF in the Xenopus embryo. A new candidate inducing factor for mesoderm formation and anteroposterior specification. Development 114, 711-720.[Abstract]

Kamachi, Y., Sockanathan, S., Liu, Q., Breitman, M., Lovell-Badge, R. and Kondoh, H (1995). Involvement of SOX proteins in lens-specific activation of crystallin genes. EMBO J 14, 3510-3519.[Medline]

Kolm, P. J. and Sive, H. L (1995). Efficient hormone-inducible protein function in Xenopus laevis. Dev. Biol 171, 267-272.[Medline]

Kroll, K. L. and Amaya, E (1996). Transgenic Xenopus embryos from sperm nuclear transplantations reveal FGF signaling requirements during gastrulation. Development 122, 3173-3183.[Abstract]

Kuo, J. S., Patel, M., Gamse, J., Merzdorf, C., Liu, X., Apekin, V. and Sive,H (1998). Opl: a zinc finger protein that regulates neural determination and patterning in Xenopus. Development 125, 2867-2882.[Abstract]

Lamb, T. M., Knecht, A. K., Smith, W. C., Stachel, S. E., Economides, A. N., Stahl, N., Yancopolous, G. D. and Harland, R. M (1993). Neural induction by the secreted polypeptide noggin. Science 262, 713-718.[Abstract/Free Full Text]

Lee, J. E (1997). Basic helix-loop-helix genes in neural development. Curr. Opin. Neurobiol 7, 13-20.[Medline]

Ma, Q., Kintner, C. and Anderson, D. J (1996). Identification of neurogenin, a vertebrate neuronal determination gene. Cell 87, 43-52.[Medline]

Massague, J (1998). TGF-beta signal transduction. Annu. Rev. Biochem 67, 753-791.[Medline]

Mizuseki, K., Kishi, M., Matsui, M., Nakanishi, S. and Sasai, Y (1998). Xenopus Zic-related-1 and Sox2 , two factors induced by chordin, have distinct activities in the initiation of neural induction. Development 125, 579-587.[Abstract]

Mizuseki, K., Kishi, M., Shiota, K., Nakanishi, S. and Sasai, Y (1998). SoxD : an essential mediator of induction of anterior neural tissues in Xenopus embryos. Neuron 21, 77-85.[Medline]

Nakata, K., Nagai, T., Aruga, J. and Mikoshiba, K (1997). Xenopus Zic3, a primary regulator both in neural and neural crest development. Proc. Natl Acad. Sci. USA 94, 11980-11985.[Abstract/Free Full Text]

Nishiguchi, S., Wood, H., Kondoh, H., Lovell-Badge, R. and Episkopou, V (1998). Sox1 directly regulates the gamma-crystallin genes and is essential for lens development in mice. Genes Dev 12, 776-781.[Abstract/Free Full Text]

Penzel, R., Oschwald, R., Chen, Y., Tacke, L. and Grunz, H (1997). Characterization and early embryonic expression of a neural specific transcription factor x SOX3 in Xenopus laevis. Int. J. Dev. Biol 41, 667-677.[Medline]

Pevny, L. H. and Lovell-Badge, R (1997). Sox genes find their feet. Curr. Opin. Genet. Dev 7, 338-344.[Medline]

Pevny, L. H., Sockanathan, S., Placzek, M. and Lovell-Badge, R (1998). A role for SOX1 in neural determination. Development 125, 1967-1978.[Abstract]

Rupp, R. A., Snider, L. and Weintraub, H (1994). Xenopus embryos regulate the nuclear localization of XMyoD. Genes Dev 8, 1311-1323.[Abstract/Free Full Text]

Sasai, Y., Lu, B., Steinbeisser, H., Geissert, D., Gont, L. K. and DeRobertis, E. M (1994). Xenopus chordin: a novel dorsalizing factor activated by organizer-specific homeobox genes. Cell 79, 779-790.[Medline]

Sasai, Y., Lu, B., Steinbeisser, H. and De Robertis, E. M (1995). Regulation of neural induction by the Chd and Bmp-4 antagonistic patterning signals in Xenopus. Nature 376, 333-336.[Medline]

Shibuya, H., Iwata, H., Masuyama, N., Gotoh, Y., Yamaguchi, K., Irie, K., Matsumoto, K., Nishida, E. and Ueno, N (1998). Role of TAK1 and TAB1 in BMP signaling in early Xenopus development. EMBO J 17, 1019-1028.[Medline]

Smith, D. F. and Toft, D. O (1993). Steroid receptors and their associated proteins. Mol. Endocrinol 7, 4-11.[Medline]

Suzuki, A., Ueno, N. and Hemmati-Brivanlou, A (1997). Xenopus msx1 mediates epidermal induction and neural inhibition by BMP4. Development 124, 3037-3044.[Abstract]

Tada, M., O'Reilly, M. A. and Smith, J. C (1997). Analysis of competence and of Brachyury autoinduction by use of hormone-inducible Xbra. Development 124, 2225-2234.[Abstract]

Uwanogho, D., Rex, M., Cartwright, E. J., Pearl, G., Healy, C., Scotting, P. J. and Sharpe, P. T (1995). Embryonic expression of the chicken Sox2 , Sox3 and Sox11 genes suggests an interactive role in neuronal development. Mech. Dev 49, 23-36.[Medline]

Wegner, M (1999). From head to toes: the multiple facets of Sox proteins. Nucleic Acids Res 27, 1409-1420.[Abstract/Free Full Text]

Wilson, P. A. and Hemmati-Brivanlou, A (1995). Induction of epidermis and inhibition of neural fate by Bmp-4. Nature 376, 331-333.[Medline]

Witta, S. E., Agarwal, V. R. and Sato, S. M (1995). XlPOU 2, a noggin-inducible gene, has direct neuralizing activity. Development 121, 721-730.[Abstract]

Wright, C. V., Morita, E. A., Wilkin, D. J. and De Robertis, E. M (1990). The Xenopus XlHbox 6 homeo protein, a marker of posterior neural induction, is expressed in proliferating neurons. Development 109, 225-234.[Abstract]

Xu, R. H., Kim, J., Taira, M., Lin, J. J., Zhang, C. H., Sredni, D., Evans, T. and Kung, H. F (1997). Differential regulation of neurogenesis by the two Xenopus GATA-1 genes. Mol. Cell Biol 17, 436-443.[Abstract]




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