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 Storey, K. G.
Right arrow Articles by Heath, J. K.
Right arrow Search for Related Content
PubMed
Right arrow PubMed Citation
Right arrow Articles by Storey, K. G.
Right arrow Articles by Heath, J. K.
Averbuch-Heller, L., Pruginin, M., Kahane, N., Tsoulfas, P., Parada, L., Rosenthal, A. and Kalcheim, C (1994). Neurotrophin-3 stimulates the differentiation of motoneurons from avian neural tube progenitor cells. Proc. Natl. Acad. Sci. USA 91, 3247-3251.[Abstract/Free Full Text]

Beddington, R. S. P (1994). Induction of a second neural axis by the mouse node. Development 120, 613-620.[Abstract]

Beddington, R. S. P., Rashbass, P. and Wilson, V (1992). Brachyury \320 a gene affecting mouse gastrulation and early organogenesis. Development 1992, 157-165.

Campuzano, S. and Modolell, J (1992). Patterning of the Drosophila nervous system: the achaete-scute gene complex. Trends. Genet 8, 202-208.[Medline]

Cho, K. W. Y., Blumberg, B., Steinbreisser, H. and De Robertis, E. M (1991). Molecular nature of Spemann's organiser: the role of the Xenopus homeobox gene goosecoid. Cell 7, 1111-1120.

Cohn, M. J., Izpisua-Belmonte, J-C, Abud, H., Heath, J. K. and Tickle, C (1995). Fibroblast growth factors induce additional limb development from the flank of chick embryos. Cell 80, 739-746.[Medline]

Cox, W. G. and Hemmati-Brivanlou, A (1995). Caudalisation of neural fate by tissue recombination and bFGF. Development 121, 4349-4358.[Abstract]

Crossley, P. H. and Martin, G. R (1995). The mouse Fgf8 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., Minowada, G., MacArthur, C. A. and Martin, G. R (1996). Roles for FGF8 in the induction, initiation, and maintenance of chick limb development. Cell 84, 127-136.[Medline]

Dias, M. and Schoenwolf, G. C (1990). Formation of ectopic neuroepithelium in chick blastoderms : age related capacities of induction and self-differentiation following transplantation of quail Hensens's node. Anat. Rec 229, 437-448.

Deng, C-X., Wynshaw-Boris, A., Shen, M., Daugherty, C., Orntiz, D. and Leder, P (1994). Murine FGFR-1 is required for early postimplantation growth and axial organisation. Genes Dev 8, 3045-3057.[Abstract/Free Full Text]

Gallera, J (1971). Primary induction in birds. Adv. Morph 9, 149-180.[Medline]

Gensburger, C., Labourdette, G. and Sensenbrenner, M (1987). Brain basic fibroblast growth factor stimulates the proliferation of rat neuronal precursor cells in vitro. FEBS Lett 217, 1-5.[Medline]

Gleizes, P. E., Noaillac-Depeyre, J. and Gas, N (1994). Labelling of basic fibroblast growth factor with digoxigenin: a non-radioactive probe for biochemical and cytological applications. Anal. Biochem 219, 360-7.[Medline]

Godsave, S. and Slack, J. M. W (1991). Single cell analysis of mesoderm formation in the Xenopus embryo. Development 111, 523-530.[Abstract]

Grunz, H. and Tacke, L (1989). Neural differentiation of Xenopus laevis ectoderm takes place after disaggregation and delayed reaggregation without inducer. Cell Diff. Dev 28, 211-218.[Medline]

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

Heikinheimo, M., Lawshe, A., Shakleford, G. M., Wilson, D. B. and MacArthur, C. A (1994). FGF8 expression in the post-gastrulation mouse suggests roles in the development of the face limbs and central nervous system. Mech. Dev 48, 129-138.[Medline]

Hemmati-Brivanlou, A. and Melton, D (1997). Vertebrate Embryonic Cells Will Become Nerve cells Unless Told Otherwise. Cell 88, 13-17.[Medline]

Henrique, D., Adam, J., Myatt, A., Chitnis, A., Lewis, J. and Ish-Horowicz, D. H (1995). Expression of a Delta homologue in prospective neurons in the chick. Nature 375, 787-790.[Medline]

Herrmann, B. G., Labeit, S. Poustka, A., King, T. R. and Lehrach, H (1990). Cloning of the T gene required in mesoderm formation in the mouse embryo. Development 113, 891-911.

Isaacs, H. V., Pownall, M. E. and Slack, J. M (1994). eFGF regulates Xbra expression during Xenopus gastrulation. EMBO J 13, 4469-4481.[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 organiser cells in the early chick blastoderm. Cell 74, 645-659.[Medline]

Jungbluth, S. Koentges, G. and Lumsden, A (1997). Coordination of early neural tube development by BDNF/trkB. Development 124, 1877-1885.[Abstract]

Kengaku, M. and Okamoto, H (1993). Basic fibroblast growth factor inducesdifferentiation of neural tube and neural crest lineages of cultured ectoderm cells from Xenopus gastrula. Development 119, 1067-1078.[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]

Kispert, A., Ortner, H., Cooke, J. and Herrmann, B. G (1995). The chick Bra gene: Developmental expression pattern and response to axial induction by localised activin. Dev. Biol 171, 458-470.[Medline]

Knezevic, V., De santo, R. and Mackem, S (1996). T-box genes in chick gastrulation. Development 123, 411-419.

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

Launay, C., Fromentoux, V., Shi, D-L. and Boucaut, J-C (1996). A truncated FGF-receptor blocks neural induction by endogenous Xenopus inducers. Development 122, 869-880.[Abstract]

Lawson, K. A., Meneses, J. J. and Perdersen, R. A (1991). Clonal analysis of the epiblast during germ layer formation in the mouse embryo. Development 113, 891-911.[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]

Liem, K. F., Tremml G., Roelink, H. and Jessell, T. M (1995). Dorsal differentiation of neural plate cells induced by BMP-mediated signals from epidermal ectoderm. Cell 82, 969-979.[Medline]

Mahmood, R. Bresnick, J., Hornbruch, A., Mahony, C., Morton, N., Colquhoun, K., Martin, P., Lumsden, A., Dickson, C. and Mason, I (1995). A role for FGF-8 in the initiation and maintenance of vertebrate limb bud outgrowth. Curr. Biol 5, 797-806.[Medline]

Mahmood, R., Kiefer, P., Guthrie, S., Dickson, C. and Mason, I (1995). Multiple roles for FGF-3 during cranial neural development in the chicken. Development 121, 1399-1410.[Abstract]

Murphy, M., Reid, K., Ford, M., Furness, J. B. and Bartlett, P. F (1994). FGF2 regulates proliferation of neural crest cells, with subsequent neuronal differentiation regulated by LIF or related factors. Development 120, 3519-3528.[Abstract]

New, D. A. T (1955). A technique for the cultivation of the chick embryo in vitro. J. Embryol. Exp. Morph 3, 326-331.

Nieuwkoop, P. D., Boterenbrood, E. C., Kremer, A., Bloesma, F. F. S. N., Hoessels, E. L. M. J., Meyer, G. and Verheyen, F. J (1952). Activation and organisation of the central nervous system in amphibians. J. Exp. Zool 120, 1-108.[Medline]

Ornitz, D. M., Xu, J., Colvin, J. S., McEwen, D. G., MacArthur, C., Coulier, F., Gao, G. and Goldfarb, M (1966). Receptor specificity of the fibroblast growth factor family. J. Biol. Chem 271, 1592-15297.

Patel, K., Connolly, D. J., Amthor, H., Nose, K. and Cooke, J (1996). Cloning and early dorsal axial expression of Flik, a chick follistatin-related gene: evidence for involvement in dorsalization/neural induction. Dev. Biol 178, 327-342.[Medline]

Patel, N. H., Martin-Blanco, E., Coleman, K. G., Poole, S. J., Ellis, M. C., Kornberg, T. B. and Goodman, C. S (1989). Expression of engrailed proteins in arthropods, annelids and chordates. Cell 58, 955-968.[Medline]

Papalopulu, N. and Kintner, C (1996). A posteriorising factor, retinoic acid, reveals that anteroposterior patterning controls the timing of neuronal differentiation in Xenopus neuroectoderm. Development 122, 3409-3418.[Abstract]

Pownall, M. E., Tucker, A. S., Slack, J. M. W. and Isaacs, H. V (1996). eFGF, Xcad3, and Hox genes form a molecular pathway that establishes the anteroposterior axis in Xenopus. Development 122, 3881-3892.[Abstract]

Riese, J., Zeller, R. and Dono, R (1995). Nucleo-cytoplasmic translocation and secretion of fibroblast growth factor-2 during avian gastrulation. Mech. Dev 49, 13-22.[Medline]

Roberts, C., Platt, N., Streit, A., Schachner, M. and Stern, C. D (1991). The L5 epitope: an early marker for neural induction in the chick embryo and its involvement in inductive interactions. Development 112, 959-970.[Abstract]

Roelink,H., Porter, J. A., Chiang, C., Tanabe, Y., Chang, D. T., Beachy, P. A. and Jessell, T. M (1995). Floor plate and motor neuron induction by different concentrations of the amino-terminal cleavage product of sonic hedgehog autoproteolysis. Cell 81, 445-455.[Medline]

Sasai, Y. Lu, B. Piccolo, S. and De Robertis, E. M (1996). Endoderm induction by the organiser secreted factors chordin and noggin in the Xenopus animal caps. EMBO J 15, 4547-4555.[Medline]

Schubert, F. R., Fainsod, A., Gruenbaum, Y. and Gruss, P (1995). Expression of a novel murine homeobox gene Sax-1 in the developing nervous system. Mech. Dev 51, 99-114.[Medline]

Shah, N., Groves, A. and Anderson, D. J (1996). Alternative neural crest fates are instructively promoted by TGFb superfamily members. Cell 85, 331-343.[Medline]

Sharpe, C. R. and Goldstone, K (1997). Retinoid receptors promote primary neurogenesis in Xenopus. Development 124, 515-523.[Abstract]

Shimamura, K. and Rubenstein, J. L (1997). Inductive interactions direct early regionalisation of the mouse forebrain. Development 124, 2709-2718.[Abstract]

Slack, J. M. W (1994). Inducing factors in Xenopus early embryos. Current Biology 4, 116-125.[Medline]

Slack, J. M. W. and Tannahill, D (1992). Mechanisms of anteroposterior axis specification in vertebrates: lessons from amphibians. Development 114, 285-302.[Abstract]

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

Sokol, S. and Melton, D. A (1991). Pre-existent pattern in Xenopus animal cap pole cells revealed by induction with activin. Nature 351, 409-11.[Medline]

Spann, P., Ginsburg, M., Rangini, Z., Fainsod, A., Eyal-Giladi, H. and Gruenbaum, Y (1994). The spatial and temporal dynamics of Sax1(CHox3) homeobox gene expression in the chick's spinal cord. Development 120, 1817-1828.[Abstract]

Stern, C. D (1990). The marginal zone and its contribution to the hypoblast and primitive streak of the chick embryo. Development 109, 667-682.[Abstract]

Storey, K. G., Crossley, J. M., De Robertis, E. M., Norris, W. E. and Stern, C. D (1992). Neural induction and regionalisation in the chick embryo. Development 114, 729-741.[Abstract]

Storey, K. G., Selleck, M. A. and Stern, C. D (1995). Neural induction and regionalisation by different subpopulations of cells in Hensen's node. Development 121, 417-428.[Abstract]

Streit, A., Stern, C. D., Thery, C., Ireland, G. W., Aparicio, S., Sharpe, M. J. and Gherardi, E (1995). A role for HGF/SF in neural induction and its expression in Hensen's node during gastrulation. Development 121, 813-824.[Abstract]

Streit, A.,Yuen, C. T., Loveless, R. W., Lawson, A. M., Finne, J., Schmitz, B., Feizi, T. and Stern, C. D (1996). The Lexcarbohydrate sequence is recognised by the antibody L5, a functional antigen in early neural development. J. Neurochem 66, 834-844.[Medline]

Streit, A., Socknathan, S., Perez, L. Rex, M., Scotting, P. J., Sharpe, P. T., Lovell-Badge, R. and Stern, C. D (1997). Preventing loss of competence for neural induction: HGF/SF, L5 and Sox2. Development 124, 1191-1202.[Abstract]

Temple, S. and Qian, X (1995). bFGF, neurotrophins and the control of cortical neurogenesis. Neuron 15, 249-252.[Medline]

Thomas, P. and Beddington, R (1996). Anterior primitive endoderm may be responsible for patterning the anterior neural plate in the mouse embryo. Current Biol 6, 1487-1496.[Medline]

Waddington, C. H (1932). Experiments on the development of chick and duck embryos cultivated in vitro. Phil. Trans. Roy. Soc. Lon 221, 179-230.

Wilkie, A. O. M., Morriss-Kay, G. M., Jones, E. Y. and Heath, J. K (1995). Functions of fibroblast growth factors and their receptors. Curr. Biol 5, 500-507.[Medline]

Wilkinson, D. G., Bhatt, S., Chavrier, P., Bravo, R. and Charnay, P (1989). Segment-specific expression of a zinc-finger gene in the developing nervous system of the mouse. Nature 112, 959-970.

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

Yamada, T., Placzek, M., Tanaka, H., Dodd, J. and Jessell, T. M (1991). Control of cell pattern in the developing nervous system: polarising activity of the floorplate and notochord. Cell 64, 635-647.[Medline]

Yamaguchi, T., Harpal, K., Henkemeyer, M. and Rossant, J (1994). Fgfr-1 is required for embryonic growth and mesoedrm patterning during mouse gastrulation. Genes Dev 8, 3032-3044.[Abstract/Free Full Text]

Yu, R. T., McKeown, M., Evans, R. M. and Umesono, K (1994). Relationship between Drosophila gap gene tailless and a vertebrate nuclear receptor Tlx. Nature 370, 375-379.[Medline]




This article has been cited by other articles:


Home page
Hum Mol GenetHome page
J. Gaulden and J. F. Reiter
Neur-ons and neur-offs: regulators of neural induction in vertebrate embryos and embryonic stem cells
Hum. Mol. Genet., April 15, 2008; 17(R1): R60 - R66.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
R. B. Fletcher, J. C. Baker, and R. M. Harland
FGF8 spliceforms mediate early mesoderm and posterior neural tissue formation in Xenopus
Development, May 1, 2006; 133(9): 1703 - 1714.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
S. Scholpp, O. Wolf, M. Brand, and A. Lumsden
Hedgehog signalling from the zona limitans intrathalamica orchestrates patterning of the zebrafish diencephalon
Development, March 1, 2006; 133(5): 855 - 864.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
T. Takemoto, M. Uchikawa, Y. Kamachi, and H. Kondoh
Convergence of Wnt and FGF signals in the genesis of posterior neural plate through activation of the Sox2 enhancer N-1
Development, January 15, 2006; 133(2): 297 - 306.
[Abstract] [Full Text] [PDF]


Home page
Genes Dev.Home page
J. Akai, P. A. Halley, and K. G. Storey
FGF-dependent Notch signaling maintains the spinal cord stem zone
Genes & Dev., December 1, 2005; 19(23): 2877 - 2887.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
M. Delfino-Machin, J. S. Lunn, D. N. Breitkreuz, J. Akai, and K. G. Storey
Specification and maintenance of the spinal cord stem zone
Development, October 1, 2005; 132(19): 4273 - 4283.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
C. D. Stern
Neural induction: old problem, new findings, yet more questions
Development, May 1, 2005; 132(9): 2007 - 2021.
[Abstract] [Full Text] [PDF]


Home page
Endocr. Rev.Home page
R. T. Bottcher and C. Niehrs
Fibroblast Growth Factor Signaling during Early Vertebrate Development
Endocr. Rev., February 1, 2005; 26(1): 63 - 77.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
C. Linker and C. D. Stern
Neural induction requires BMP inhibition only as a late step, and involves signals other than FGF and Wnt antagonists
Development, November 15, 2004; 131(22): 5671 - 5681.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
S. Scholpp, C. Lohs, and M. Brand
Engrailed and Fgf8 act synergistically to maintain the boundary between diencephalon and mesencephalon
Development, October 15, 2003; 130(20): 4881 - 4893.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
S.-I. Yabe, K. Tanegashima, Y. Haramoto, S. Takahashi, T. Fujii, S. Kozuma, Y. Taketani, and M. Asashima
FRL-1, a member of the EGF-CFC family, is essential for neural differentiation in Xenopus early development
Development, May 15, 2003; 130(10): 2071 - 2081.
[Abstract] [Full Text] [PDF]


Home page
Am. J. Physiol. Regul. Integr. Comp. Physiol.Home page
R. Dono
Fibroblast growth factors as regulators of central nervous system development and function
Am J Physiol Regulatory Integrative Comp Physiol, April 1, 2003; 284(4): R867 - R881.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
S. Bel-Vialar, N. Itasaki, and R. Krumlauf
Initiating Hox gene expression: in the early chick neural tube differential sensitivity to FGF and RA signaling subdivides the HoxB genes in two distinct groups
Development, March 13, 2003; 129(22): 5103 - 5115.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
R. D. del Corral, D. N. Breitkreuz, and K. G. Storey
Onset of neuronal differentiation is regulated by paraxial mesoderm and requires attenuation of FGF signalling
Development, January 4, 2002; 129(7): 1681 - 1691.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
S. Zhao, F.-C. Hung, J. S. Colvin, A. White, W. Dai, F. J. Lovicu, D. M. Ornitz, and P. A. Overbeek
Patterning the optic neuroepithelium by FGF signaling and Ras activation
Development, December 15, 2001; 128(24): 5051 - 5060.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
N Bertrand, F Medevielle, and F Pituello
FGF signalling controls the timing of Pax6 activation in the neural tube
Development, January 11, 2000; 127(22): 4837 - 4843.
[Abstract] [PDF]


Home page
DevelopmentHome page
F Marin and P Charnay
Hindbrain patterning: FGFs regulate Krox20 and mafB/kr expression in the otic/preotic region
Development, January 11, 2000; 127(22): 4925 - 4935.
[Abstract] [PDF]


Home page
DevelopmentHome page
L Mathis and J. Nicolas
Different clonal dispersion in the rostral and caudal mouse central nervous system
Development, January 3, 2000; 127(6): 1277 - 1290.
[Abstract] [PDF]


Home page
DevelopmentHome page
B. Thomas, J. Liu, J. Rubenstein, and P. Sharpe
Independent regulation of Dlx2 expression in the epithelium and mesenchyme of the first branchial arch
Development, January 1, 2000; 127(2): 217 - 224.
[Abstract] [PDF]


Home page
DevelopmentHome page
C. Ferguson, A. Tucker, and P. Sharpe
Temporospatial cell interactions regulating mandibular and maxillary arch patterning
Development, January 1, 2000; 127(2): 403 - 412.
[Abstract] [PDF]


Home page
DevelopmentHome page
A. Rowan, C. Stern, and K. Storey
Axial mesendoderm refines rostrocaudal pattern in the chick nervous system
Development, January 7, 1999; 126(13): 2921 - 2934.
[Abstract] [PDF]


Home page
DevelopmentHome page
S Yuan and G. Schoenwolf
Reconstitution of the organizer is both sufficient and required to re-establish a fully patterned body plan in avian embryos
Development, January 6, 1999; 126(11): 2461 - 2473.
[Abstract] [PDF]


Home page
DevelopmentHome page
H Shamim, R Mahmood, C Logan, P Doherty, A Lumsden, and I Mason
Sequential roles for Fgf4, En1 and Fgf8 in specification and regionalisation of the midbrain
Development, January 2, 1999; 126(5): 945 - 959.
[Abstract] [PDF]


Home page
DevelopmentHome page
V Knezevic, R De Santo, and S Mackem
Continuing organizer function during chick tail development
Development, January 5, 1998; 125(10): 1791 - 1801.
[Abstract] [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 Storey, K. G.
Right arrow Articles by Heath, J. K.
Right arrow Search for Related Content
PubMed
Right arrow PubMed Citation
Right arrow Articles by Storey, K. G.
Right arrow Articles by Heath, J. K.