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Acampora, D., Mazan, S., Lallemand, Y., Avantaggiato, V., Maury, M., Simeone, A. and Brulet, P (1995). Forebrain and midbrain regions are deleted in Otx2/ mutants due to a defective anterior neuroectoderm specification during gastrulation. Development 121, 3279-3290.[Abstract]

Ang, S.-L., Wierda, A., Wong, D., Stevens, K. A., Cascio, S., Rossant, J. and Zaret, K. S (1993). The formation and maintenance of the definitive endoderm lineage in the mouse: involvement of HNF3/forkhead proteins. Development 119, 1301-1315.[Abstract]

Ang, S.-L., Conlon, R. A., Jin, O. and Rossant, J (1994). Positive and negative signals from mesoderm regulates the expression of mouse Otx2 in ectoderm explants. Development 120, 2979-2989.[Abstract]

Ang, S.-L. and Rossant, J (1994). HNF-3 is essential for node and notochord formation in mouse development. Cell 78, 561-574.[Medline]

Ang, S.-L., Jin, O., Rhinn, M,. Daigle, N., Stevenson, L. and Rossant, J (1996). A targeted mouse Otx2 mutation leads to severe defects in gastrulation and formation of axial mesoderm and to deletion of rostral brain. Development 122, 243-252.[Abstract]

Candia, A. H., Hu, J., Crosby, J., Lalley, P. A., Noden, D., Nadeau, J. H. and Wright, C. V. E (1992). Mox-1 and Mox-2 define a novel homeobox gene subfamily and are differentially expressed during early mesodermal patterning in mouse embryos. Development 116, 1123-1136.[Abstract]

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

Collignon, J., Varlet, I. and Robertson, E. J (1996). Relationship between asymmetric nodal expression and the direction of embryonic turning. Nature 381, 155-158.[Medline]

Conlon, R. A. and Herrmann, B. G (1993). Detection of messenger RNA by in situ hybridization to postimplantation embryo whole mounts. Methods Enzymol 225, 373-383.[Medline]

Crossley, P. H. and Martin, G. R (1995). The mouse Fgf-8 gene encodes a family of polypeptides and is expressed in regions that direct outgrowth and patterning in the developing embryo. Development 121, 439-451.[Abstract]

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

Couly, G. and Le Douarin, N. M (1988). The fate map of the cephalic neural primordium at the presomitic to the 3-somite stage in the avian embryo. Development 103, 101-113.

Davis, C. A. and Joyner, A. L (1988). Expression patterns of the homeobox-containing genes En-1 and En-2 and the proto-oncogene int-1 diverge during mouse development. Genes Dev 2, 1736-1744.[Abstract/Free Full Text]

Davis, C. A., Holmyard, D. P., Millen, K. J. and Joyner, A. L (1991). Examining pattern formation in mouse, chicken and frog embryos with an En-specific antiserum. Development 111, 287-298.[Abstract]

Echelard, Y., Epstein, D. J., St-Jacques, B., Shen, L., Mohler, J., McMahon, J. A. and McMahon, A. P (1993). Sonic Hedgehog, a member of a family of putative signalling molecules, is implicated in the regulation of CNS polarity. Cell 75, 1417-1430.[Medline]

Gaunt, S. J., Blum, M. and De Robertis, E (1993). Expression of the mouse goosecoid gene during mid-embryogenesis may mark mesenchymal cell lineages in the developing head, limbs and body wall. Development 117, 769-778.[Abstract]

Gradwohl, G., Fode, C. and Guillemot, F (1996). Restricted expression of a novel bHLH atonal-related protein to undifferentiated neural progenitors. Dev. Biol 180, 227-241.[Medline]

Hynes, M., Poulsen, K., Tessier-Lavigne, M. and Rosenthal, A (1995). Control of neuronal diversity by the floor plate: Contact-mediated induction of midbrain dopaminergic neurons. Cell 80, 95-101.[Medline]

Izpisua-Belmonte, J. C., De Robertis, E. M., Storey, K. G. and Stern, C. D (1993). The homeobox gene goosecoid and the origin of organizer cells in the early chick blastoderm. Cell 74, 645-659.[Medline]

Kaestner, K. H., Monaghan, A. P., Kern, H., Ang, S.-L., Weitz, S., Lichter, P. and Schutz, G (1995). The mouse fkh-2 gene. Implications for notochord, foregut, and midbrain regionalization. J. Biol. Chem 270, 30029-30035.[Abstract/Free Full Text]

Kelly, O. G. and Melton, D. A (1995). Induction and patterning of the vertebrate nervous system. Trends Genet 11, 273-278.[Medline]

Laird, P. W., Zijderveld, A., Linders, K., Rudnicki, M. A., Jaenisch, R. and Berns, A (1991). Simplified mammalian DNA isolation procedure. Nucleic Acids Res 19, 4293-.[Free Full Text]

Lazzaro, D., Price, M., de Felice, M. and Di Lauro, R (1991). The transcription factor TTF-1 is expressed at the onset of thyroid and lung morphogenesis and in restricted regions of the foetal brain. Development 113, 1093-1104.[Abstract]

Lee, S. M. K., Danielian, P. S., Fritzsch, B. and McMahon, A. P (1997). Evidence that FGF8 signalling from the midbrain-hindbrain junction regulates growth and polarity in the developing midbrain. Development 124, 959-969.[Abstract]

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

Matsuo, I., Kuratani, S., Kimura, C., Takeda, N. and Aizawa, S (1995). Mouse Otx2 functions in the formation and patterning of rostral head. Genes Dev 9, 2646-2658.[Abstract/Free Full Text]

Monaghan, A. P., Kaestner, K. H., Grau. E. and Schutz G (1993). Postimplantation expression patterns indicate a role for the mouse forkhead/HNF-3 alpha, beta and gamma genes in determination of the definitive endoderm, chordamesoderm and neuroectoderm. Development 119, 567-578.[Abstract]

Nornes, H. O., Dressler, G. R., Knapik, E. W., Deutsch, U. and Gruss, P (1990). Spatially and temporally restricted expression of Pax2 during murine neurogenesis. Development 109, 797-809.[Abstract/Free Full Text]

Oliver, G., Mailhos, A., Wehr, R., Copeland, N. G., Jenkins, N. A. and Gruss, P (1995). Six3 , a murine homologue of the sine oculis gene, demarcates the most anterior border of the developing neural plate and is expressed during eye development. Development 121, 4045-4055.[Abstract]

Placzek, M (1995). The role of the notochord and floor plate in inductive interactions. Curr. Opin. Genet. Dev 5, 499-506.[Medline]

Price, M., Lemaistre, M., Pischetola, M., Di Lauro, R. and Duboule, D (1991). A mouse gene related to Distal-less shows a restricted expression in the developing forebrain. Nature 351, 748-751.[Medline]

Rivera-Perez, J. A., Mallo, M., Gendron-Maguire, M., Gridley, T. and Behringer, R. R (1995). Goosecoid is not an essential component of the mouse gastrula organizer but is required for craniofacial and rib development. Development 121, 3005-3012.[Abstract]

Rubenstein, J. L, Martinez, S., Shimamura, K. and Puelles, L (1994). The embryonic vertebrate forebrain: the Prosomeric model. Science 266, 578-580.[Free Full Text]

Shawlot, W. and Behringer, R. R (1995). Requirement for Lim1 in head-organizer function. Nature 374, 425-430.[Medline]

Shimamura, K., Hartigan, D. J., Martinez, S., Puelles, L. and Rubenstein, J. L (1995). Longitudinal organization of the anterior neural plate and neural tube. Development 121, 3923-3933.[Abstract]

Simeone, A., Gulisano, M., Acampora, D., Stornaiuolo, A., Rambaldi, M. and Boncinelli, E (1992). Two vertebrate homeobox genes related to the Drosophila empty spiracles gene are expressed in the embryonic cerebral cortex. EMBO J 11, 2541-2550.[Medline]

Simeone, A., Acampora, D., Mallamaci, A., Stornaiuolo. A., D'Apice. M. R., Nigro, V. and Boncinelli, E (1993). A vertebrate gene related to orthodenticle contains a homeodomain of the bicoid class and demarcates anterior neuroectoderm in the gastrulating mouse embryo. EMBO J 12, 2735-2747.[Medline]

Tanabe, Y. and Jessell, T. M (1996). Diversity and pattern in the developing spinal cord. Science 274, 1115-1123.[Abstract/Free Full Text]

Tao, W. and Lai, E (1992). Telencephalon-restricted expression of BF-1 , a new member of the HNF-3/fork head gene family, in the developing rat brain. Neuron 8, 957-966.[Medline]

Thisse, C., Thisse, B., Halpern, M. and Postlethwait, J.H (1994). goosecoid expression in neurectoderm and mesendoderm is disrupted in zebrafish cyclops gastrulas. Dev. Biol 164, 420-429.[Medline]

Walther, C. and Gruss, P (1991). Pax-6 , a murine paired box gene, is expressed in the developing CNS. Development 113, 1435-1449.[Abstract]

Weinstein, D. C., Ruiz i Altaba, A., Chen, W. S., Hoodless, P., Prezioso, V.R., Jessell, T.M. and Darnell, J. E. Jr (1994). The winged-helix transcription factor HNF-3 is required for notochord development in the mouse embryo. Cell 78, 575-588.[Medline]

Wilkinson, D. G., Bhatt, S., Cook, M., Boncinelli, E. and Krumlauf, R (1989). Segmental expression of Hox-2 homeobox genes in the developing mouse hindbrain. Nature 341, 405-409.[Medline]

Xuan, S., Baptista, C. A., Balas, G., Tao, W., Soares, V. C. and Lai, E (1994). Winged helix transcription factor BF-1 is essential for the development of the cerebral hemispheres. Neuron 14, 1141-1152.

Yamada, G., Mansouri, A., Torres, M., Stuart, E. T., Blum, M., Schultz, De Robertis, E. M. and Gruss, P (1995). Targeted mutation of the murine goosecoid gene results in craniofacial defects and prenatal death. Development 121, 2917-2922.[Abstract]




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