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Amaya, E., Musci, T. J. and Kirschner, M. W (1991). Expression of a dominant negative mutant of the FGF receptor disrupts mesoderm formation in Xenopus embryos. Cell 66, 257-270.[Medline]

Chomczynski, P. and Sacchi, N (1987). Single-step method of RNA isolation by acidic guanidinium thiocyanate-phenol-chloroform extraction. Anal. Biochem 162, 156-159.[Medline]

Christian, J. L. and Moon, R. T (1993). Interactions between Xwnt-8 and Spemann organizer signaling pathways generate dorsoventral pattern in the embryonic mesoderm of Xenopus. Genes Dev 7, 13-28.[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]

Cooke, J., Smith, J. C., Smith, E. J. and Yaqoob, M (1987). The organization of mesodermal pattern in Xenopus laevis: experiments using a Xenopus mesoderm-inducing factor. Development 101, 893-908.[Abstract/Free Full Text]

Cunliffe, V. and Smith, J. C (1992). Ectopic mesoderm formation in Xenopus embryos caused by widespread expression of a Brachyury homologue. Nature 358, 427-30.[Medline]

Cunliffe, V. and Smith, J. C (1994). Specification of mesodermal pattern in Xenopus laevis by interactions between Brachyury , noggin and Xwnt-8. EMBO J 13, 349-359.[Medline]

Dale, L. and Slack, J. M (1987). Fate map for the 32-cell stage of Xenopus laevis. Development 99, 527-51.[Abstract/Free Full Text]

Fawell, S. E., Lees, J. A., White, R. and Parker, M. G (1990). Characterization of colocalization of steroid binding and dimerization activities in the mouse estrogen receptor. Cell 60, 953-962.[Medline]

Field, J., Nikawa, J., Broek, D., MacDonald, B., Rodgers, L., Wilson, I. A., Lerner, R. A. and Wigler, M (1988). Purification of a RAS -responsive adenylyl cyclase complex from Saccharomyces cerevisiae by use of an epitope addition method. Mol. Cell. Biol 8, 2159-2165.[Abstract/Free Full Text]

Gammill, L. S. and Sive, H (1997). Identification of otx2 target genes and restrictions in ectodermal competence during Xenopus cement gland formation. Development 124, 471-481.[Abstract]

Gillespie, L. L., Paterno, G. D. and Slack, J. M (1989). Analysis of competence: receptors for fibroblast growth factor in early Xenopus embryos. Development 106, 37-46.[Abstract]

Gotoh, Y., Masuyama, N., Suzuki, A., Ueno, N. and Nishida, E (1995). Involvement of the MAP kinase cascade in Xenopus mesoderm induction. EMBO J 14, 2491-2498.[Medline]

Green, J. B. A., Howes, G., Symes, K., Cooke, J. and Smith, J. C (1990). The biological effects of XTC-MIF: quantitative comparison with Xenopus bFGF. Development 108, 229-238.[Abstract]

Halpern, M. E., Ho, R. K., Walker, C. and Kimmel, C. B (1993). Induction of muscle pioneers and floor plate is distinguished by the zebrafish no tail mutation. Cell 75, 99-111.[Medline]

Harland, R. M (1991). In situ hybridization: an improved whole mount method for Xenopus embryos. Meth. Enzymol 36, 675-685.

Herrmann, B. G (1991). Expression pattern of the Brachyury gene in whole-mount TWis/TWis mutant embryos. Development 113, 913-917.[Abstract]

Herrmann, B. G., Labeit, S., Poutska, A., King, T. R. and Lehrach, H (1990). Cloning of the T gene required in mesoderm formation in the mouse. Nature 343, 617-622.[Medline]

Hollenberg, S., Cheng, P. and Weintraub, H (1993). Use of a conditional MyoD transcriptional factor in studies of MyoD trans-activation and muscle determination. Proc. Natl. Acad. Sci. USA 90, 8028-8032.[Abstract/Free Full Text]

Isaacs, H. V., Pownall, M. E. and Slack, J. M. W (1994). eFGF regulates Xbra expression during Xenopus gastrulation. EMBO J 13, 4469-4481.[Medline]

Isaacs, H. V., Pownall, M. E. and Slack, J. M. W (1995). eFGF is expressed in the dorsal mid-line of Xenopus laevis. Int. J. Dev. Biol 39, 575-579.[Medline]

Isaacs, H. V., Tannahill, D. and Slack, J. M. W (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]

Jones, C. M., Lyons, K. M., Lapan, P. M., Wright, C. V. E. and Hogan, B. L. M (1992). DVR-4 (Bone morphogenetic protein-4) as a posterior-ventralizing factor in Xenopus mesoderm induction. Development 115, 639-647.[Abstract]

Kengaku, M. and Okamoto, H (1995). bFGF as a possible morphogen for the anteroposterior axis of the central nervous system in Xenopus. Development 121, 3121-3130.[Abstract]

Kintner, C. R. and Brockes, J. P (1984). Monoclonal antibodies recognise blastemal cells derived from differentiating muscle in newt limb regeneration. Nature 308, 67-69.[Medline]

Kispert, A. and Herrmann, B. G (1993). The Brachyury gene encodes a novel DNA binding protein. EMBO J 12, 3211-3220.[Medline]

Kispert, A., Koschorz, B. and Herrmann, B. G (1995). The T protein encoded by Brachyury is a tissue-specific transcription factor. EMBO J 14, 4763-4772.[Medline]

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

Krieg, P. A. and Melton, D. A (1984). Functional messenger RNAs are produced by SP6 in vitro transcription of cloned cDNA. Nucl. Acids Res 12, 7057-7070.[Abstract/Free Full Text]

LaBonne, C., Burke, B. and Whitman, M (1995). Role of MAP kinase in mesoderm induction and axial patterning during Xenopus development. Development 121, 1475-1486.[Abstract]

Lamb, T. M. and Harland, R. M (1995). Fibroblast growth factor is a direct neural inducer, which combined with noggin generates anterior-posterior neural pattern. Development 121, 3627-3636.[Abstract]

Littlewood, T. D., Hancock, D. C., Danielian, P. S., Parker, M. G. and Evan, G. I (1995). A modified oestrogen receptor ligand-binding domain as an improved switch for the regulation of heterologous proteins. Nucl. Acids Res 23, 1686-1690.[Abstract/Free Full Text]

Mattioni, T., Louvion, J.-F. and Picard, D (1994). Regulation of protein activities by fusion to steroid binding domains. Meth. Cell. Biol 43, 335-352.

Mohun, T. J., Brennan, S., Dathan, N., Fairman, S. and Gurdon, J. B (1984). Cell type-specific activation of actin genes in the early amphibian embryo. Nature 311, 716-721.[Medline]

Moody, S. A (1987). Fates of the blastomeres of the 32 cell Xenopus embryo. Dev. Biol 122, 300-319.[Medline]

O'Reilly, M.-A. J., Smith, J. C. and Cunliffe, V (1995). Patterning of the mesoderm in Xenopus : dose-dependent and synergistic effects of Brachyury and Pintallavis. Development 121, 1351-1359.[Abstract]

Rao, Y (1994). Conversion of a mesodermalizing molecule, the Xenopus Brachyury gene, into a neuralizing factor. Genes Dev 8, 939-947.[Abstract/Free Full Text]

Ruiz i Altaba, A. and Melton, D. A (1989). Bimodal and graded expression of the Xenopus homeobox gene Xhox3 during embryonic development. Development 106, 173-83.[Abstract]

Sargent, M. G. and Bennett, M. F (1990). Identification in Xenopus of a structural homologue of the Drosophila gene Snail. Development 109, 967-973.[Abstract/Free Full Text]

Schulte-Merker, S., Ho, R. K., Herrmann, B. G. and Nusslein-Volhard, C (1992). The protein product of the zebrafish homologue of the mouse T gene is expressed in nuclei of the germ ring and the notochord of the early embryo. Development 116, 1021-1032.[Abstract]

Schulte-Merker, S. and Smith, J. C (1995). Mesoderm formation in response to Brachyury requires FGF signalling. Curr. Biol 5, 62-67.[Medline]

Schulte-Merker, S., van Eeden, F. M., Halpern, M. E., Kimmel, C. B. and Nusslein-Volhard, C (1994). No tail (ntl) is the zebrafish homologue of the mouse T (Brachyury) gene. Development 120, 1009-1015.[Abstract]

Slack, J. M. W (1984). Regional biosynthetic markers in the early amphibian embryo. J. Embryol. exp. Morph 80, 289-319.[Medline]

Slack, J. M. W (1994). Inducing factors in Xenopus early embryos. Curr. Biol 4, 116-126.[Medline]

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

Smith, J. C., Price, B. M. J., Green, J. B. A., Weigel, D. and Herrmann, B. G (1991). Expression of a Xenopus homolog of Brachyury ( T ) is an immediate-early response to mesoderm induction. Cell 67, 79-87.[Medline]

Smith, J. C. and Slack, J. M. W (1983). Dorsalization and neural induction: properties of the organizer in Xenopus laevis. J. Embryol. Exp. Morph 78, 299-317.[Medline]

Smith, J. C. and Watt, F. M (1985). Biochemical specificity of Xenopus notochord. Differentiation 29, 109-115.[Medline]

Smith, W. C. and Harland, R. M (1991). Injected Xwnt-8 RNA acts early in Xenopus embryos to promote formation of a vegetal dorsalizing center. Cell 67, 753-765.[Medline]

Snape, A. M. and Smith, J. C (1996). A protein kinase involved in cell cycle regulation during the Xenopus midblastula transition. EMBO J 15, 4556-4565.[Medline]

Tucker, A. S. and Slack, J. M. W (1995). Tail bud determination in the vertebrate embryo. Cur. Biol 5, 807-813.[Medline]

Umbhauer, M., Marshall, C. J., Mason, C. S., Old, R. W. and Smith, J. C (1995). Mesoderm induction in Xenopus caused by activation of MAP kinase. Nature 376, 58-62.[Medline]

Whiting, J., Marshall, H., Cook, M., Krumlauf, R., Rigby, P. W. J., Stott, D. and Allemann, R. K (1991). Multiple spatially specific enhancers are required to reconstruct the pattern of Hox-2.6 gene expression. Genes Dev 5, 2048-2059.[Abstract/Free Full Text]

Wilkinson, D. G., Bhatt, S. and Herrmann, B. G (1990). Expression pattern of the mouse T gene and its role in mesoderm formation. Nature 343, 657-659.[Medline]




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