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Arkell, R. and Beddington, R. S. P (1997). BMP-7 influences pattern and growth of the developing hindbrain of mouse embryos. Development 124, 1-12.[Abstract]

Baker, J. C., Beddington, R. S. and Harland, R. M (1999). Wnt signaling in Xenopus embryos inhibits bmp4 expression and activates neural development. Genes Dev 13, 3149-3159.[Abstract/Free Full Text]

Barthels, D., Santoni, M. J., Wille, W., Ruppert, C., Chaix, J. C., Hirsch, M. R., Fontecilla-Camps, J. C. and Goridis, C (1987). Isolation and nucleotide sequence of mouse NCAM cDNA that codes for a Mr 79,000 polypeptide without a membrane-spanning region [published erratum appears in EMBO J._Fb_6 , 3202]. EMBO J 6, 907-914.[Medline]

Bellusci, S., Henderson, R., Winnier, G., Oikawa, T. and Hogan, B. L (1996). Evidence from normal expression and targeted misexpression that bone morphogenetic protein (Bmp-4) plays a role in mouse embryonic lung morphogenesis. Development 122, 1693-1702.[Abstract]

Birren, S. J., Lo, L. and Anderson, D. J (1993). Sympathetic neuroblasts undergo a developmental switch in trophic dependence. Development 119, 597-610.[Abstract/Free Full Text]

Calof, A. L. and Chikaraishi, D. M (1989). Analysis of neurogenesis in a mammalian neuroepithelium: proliferation and differentiation of an olfactory neuron precursor in vitro. Neuron 3, 115-127.[Medline]

Calof, A. L., HagiwarA, N., Holcomb, J. D., Mumm, J. S. and Shou, J (1996). Neurogenesis and cell death in the olfactory epithelium. J. Neurobiol 30, 67-81.[Medline]

Calof, A. L. and Lander, A. D (1991). Relationship between neuronal migration and cell-substratum adhesion: laminin and merosin promote olfactory neuronal migration but are anti-adhesive. J. Cell Biol 115, 779-794.[Abstract/Free Full Text]

Calof, A. L., Mumm, J. S., Rim, P. C. and Shou, J (1998). The neuronal stem cell of the olfactory epithelium. J. Neurobiol 36, 190-205.[Medline]

Caviness, V. S., Takahashi, T. and Nowakowski, R. S (1995). Numbers, time and neocortical neuronogenesis: a general developmental and evolutionary model. Trends Neurosci 18, 379-383.[Medline]

Chang, C. and Hemmati-Brivanlou, A (1999). Xenopus GDF6, a new antagonist of noggin and a partner of BMPs. Development 126, 3347-3357.[Abstract]

Chen, D., Ji, X., Harris, M. A., Feng, J. Q., Karsenty, G., Celeste, A. J.,Rosen, V., Mundy, G. R. and Harris, S. E (1998). Differential roles for bone morphogenetic protein (BMP) receptor type IB and IA in differentiation and specification of mesenchymal precursor cells to osteoblast and adipocyte lineages. J. Cell Biol 142, 295-305.[Abstract/Free Full Text]

DeHamer, M., Guevara, J., Hannon, K., Olwin, B. and Calof, A. L (1994). Genesis of olfactory receptor neurons: Regulation of progenitor cell divisions by fibroblast growth factors. Neuron 13, 1083-1097.[Medline]

Dewulf, N., Verschueren, K., Lonnoy, O., Moren, A., Grimsby, S., Spiegle, K. V., Miyazono, K., Huylebroeck, D. and Dijke, P (1995). Distinct spatial and temporal expression patterns of two type I receptors for bone morphogenetic proteins during mouse embryogenesis. Endocrinology 136, 2652-2663.[Abstract]

Dowd, C. J., Cooney, C. L. and Nugent, M. A (1999). Heparan sulfate mediates bFGF transport through basement membrane by diffusion with rapid reversible binding. J. Biol. Chem 274, 5236-5244.[Abstract/Free Full Text]

Ferguson, E. L. and Anderson, K. V (1992). Decapentaplegic acts as a morphogen to organize dorsal-ventral pattern in the Drosophila embryo. Cell 71, 451-461.[Medline]

Furuta, Y., Piston, D. W. and Hogan, B. L (1997). Bone morphogenetic proteins (BMPs) as regulators of dorsal forebrain development. Development 124, 2203-2212.[Abstract]

Golden, J. A., Bracilovic, A., McFadden, K. A., Beesley, J. S., JL, R. R. and Grinspan, J. B (1999). Ectopic bone morphogenetic proteins 5 and 4 in the chicken forebrain lead to cyclopia and holoprosencephaly. Proc. Natl. Acad. Sci. USA 96, 2439-2444.[Abstract/Free Full Text]

Gordon, M. K., Mumm, J. S., Davis, R. A., Holcomb, J. D. and Calof, A. L (1995). Dynamics of MASH1 expression in vitro and in vivo suggest a non-stem cell site of MASH1 action in the olfactory receptor neuron lineage. Mol. Cell. Neurosci 6, 363-379.[Medline]

Graham, A., Francis-West, P., Brickell, P. and Lumsden, A (1994). The signalling molecule BMP4 mediates apoptosis in the rhombencephalic neural crest. Nature 372, 684-686.[Medline]

Gross, R. E., Mehler, M. F., Mabie, P. C., Zang, Z., Santschi, L. and Kessler, J. A (1996). Bone morphogenetic proteins promote astroglial lineage commitment by mammalian subventricular zone progenitor cells. Neuron 17, 595-606.[Medline]

Guillemot, F. and Joyner, A. L (1993). Dynamic expression of the murine Achaete-Scute homologue Mash-1 in the developing nervous system. Mech. Dev 42, 171-185.[Medline]

Hawley, S. H. B., Wunnenberg-Stapelton, K., Hashimoto, C., Laurent, M. N., Watabe, T., Blumberg, B. W. and Cho, K. W. Y (1995). Disruption of BMP signals in embryuonic Xenopus ectoderm leads to direct neural induction. Genes Dev 9, 2923-2935.[Abstract/Free Full Text]

Holcomb, J. D., Mumm, J. S. and Calof, A. L (1995). Apoptosis in the neuronal lineage of the mammalian olfactory epithelium: regulation in vivo and in vitro. Dev. Biol 172, 307-323.[Medline]

Iemura, S., Yamamoto, T. S., Takagi, C., Uchiyama, H., Natsume, T., Shimasaki, S., Sugino, H. and Ueno, N (1998). Direct binding of follistatin to a complex of bone-morphogenetic protein and its receptor inhibits ventral and epidermal cell fates in early Xenopus embryo. Proc. Natl. Acad. Sci. USA 95, 9337-9342.[Abstract/Free Full Text]

Johansson, B. M. and Wiles, M. V (1995). Evidence for involvement of activin A and bone morphogenetic protein 4 in mammalian mesoderm and hematopoietic development. Mol. Cell Biol 15, 141-151.[Abstract]

Jordan, J., Bottner, M., Schluesener, H. J., Unsicker, K. and Krieglstein, K (1997). Bone morphogenetic proteins: neurotrophic roles for midbrain dopaminergic neurons and implications of astroglial cells. Eur. J. Neurosci 9, 1699-1709.[Medline]

Julliard, A. K. and Hartmann, D. J (1998). Spatiotemporal patterns of expression of extracellular matrix molecules in the developing and adult rat olfactory system. Neuroscience 84, 1135-1150.[Medline]

Kauffman, S. L (1968). Lengthening of the generation cycle during embryonic differentiation of the mouse neural tube. Exp. Cell Res 49, 420-424.[Medline]

Kawakami, Y., Ishikawa, T., Shimabara, M., Tanda, N., Enomoto-Iwamoto, M., Iwamoto, M., Kuwana, T., Ueki, A., Noji, S. and Nohno, T (1996). BMP signaling during bone pattern determination in the developing limb. Development 122, 3557-3566.[Abstract]

Kingsley, D. M (1994). The TGF-superfamily: new members, new receptors, and new genetic tests of function in different organisms. Genes Dev 8, 133-146.[Free Full Text]

Krishna, S., Maduzia, L. L. and Padgett, R. W (1999). Specificity of TGFbeta signaling is conferred by distinct type I receptors and theirassociated SMAD proteins in Caenorhabditis elegans. Development 126, 251-260.[Abstract]

Lee, K. J., Mendelsohn, M. and Jessell, T. M (1998). Neuronal patterning by BMPs: a requirement for GDF7 in the generation of a discrete class of commissural interneurons in the mouse spinal cord. Genes Dev 12, 3394-3407.[Abstract/Free Full Text]

Li, W., Cogswell, C. A. and LoTurco, J. J (1998). Neuronal differentiation of precursors in the neocortical ventricular zone is triggered by BMP. J. Neurosci 18, 8853-8862.[Abstract/Free Full Text]

Lyons, K. M., Pelton, R. W. and Hogan, B. L (1989). Patterns of expression of murine Vgr-1 and BMP-2a RNA suggest that transforming growth factor-beta-like genes coordinately regulate aspects of embryonic development. Genes Dev 3, 1657-1668.[Abstract/Free Full Text]

Mabie, P. C., Mehler, M. F. and Kessler, J. A (1999). Multiple roles of bone morphogenetic protein signaling in the regulation of cortical cell number and phenotype. J. Neurosci 19, 7077-7088.[Abstract/Free Full Text]

Macias, D., Ganan, Y., Sampath, T. K., Piedra, M. E., Ros, M. A. and Hurle, J. M (1997). Role of BMP-2 and OP-1 (BMP-7) in programmed cell death and skeletogenesis during chick limb development. Development 124, 1109-1117.[Abstract]

Massague, J (1996). TGFbeta signaling: receptors, transducers, and Mad proteins. Cell 85, 947-950.[Medline]

Mumm, J. S., Shou, J. and Calof, A. L (1996). Colony-forming progenitors from mouse olfactory epithelium: Evidence for feedback regulation of neuron production. Proc. Natl. Acad. Sci. USA 93, 11167-11172.[Abstract/Free Full Text]

Nguyen, M., Park, S., Marques, G. and Arora, K (1998). Interpretation of a BMP activity gradient in Drosophila embryos depends on synergistic signaling by two type I receptors, SAX and TKV. Cell 95, 495-506.[Medline]

Piccolo, S., Sasai, Y., Lu, B. and De Robertis, E. M (1996). Dorsoventral patterning in Xenopus: inhibition of ventral signals by direct binding of chordin to BMP-4. Cell 86, 589-598.[Medline]

Reddi, A. H (1995). Cartilage morphogenesis: role of bone and cartilage morphogenetic proteins, homeobox genes and extracellular matrix. Matrix Biol 14, 599-606.[Medline]

Reddi, A. H (1997). Bone morphogenetic proteins: an unconventional approach to isolation of first mammalian morphogens. Cytokine Growth Factor Rev 8, 11-20.[Medline]

Reissmann, E., Ernsberger, U., Francis-West, P. H., Rueger, D., Brickell, P. M. and Rohrer, H (1996). Involvement of bone morphogenetic protein-4 and bone morphogenetic protein-7 in the differentiation of the adrenergic phenotype in developing sympathetic neurons. Development 122, 2079-2088.[Abstract]

Schneider, C., Wicht, H., Enderich, J., Wegner, M. and Rohrer, H (1999). Bone morphogenetic proteins are required in vivo for the generation of sympathetic neurons. Neuron 24, 861-870.[Medline]

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

Song, Q., Mehler, M. F. and Kessler, J. A (1998). Bone morphogenetic proteins induce apoptosis and growth factor dependence of cultured sympathadrenal progenitor cells. Dev. Biol 196, 119-127.[Medline]

ten Dijke, P., Yamashita, H., Sampath, T. K., Reddi, A. H., Estevez, M., Riddle, D. L., Ichijo, H., Heldin, C. H. and Miyazono, K (1994). Identification of type I receptors for osteogenic protein-1 and bone morphogenetic protein-4. J. Biol. Chem 269, 16985-16988.[Abstract/Free Full Text]

Tonegawa, A., Funayama, N., Ueno, N. and Takahashi, Y (1997). Mesodermal subdivision along the mediolateral axis in chicken controlled by different concentrations of BMP-4. Development 124, 1975-1984.[Abstract]

Varley, J. E. and Maxwell, G. D (1996). BMP-2 and BMP-4, but not BMP-6, increase the number of adrenergic cells which develop in quail trunk neural crest cultures. Exp. Neurol 140, 84-94.[Medline]

Varley, J. E., Wehby, R. G., Rueger, D. C. and Maxwell, G. D (1995). Number of adrenergic and Islet-1 immunoreactive cells is increased in avian trunk neural crest cultures in the presence of human recombinant Osteogenic Protein-1. Dev. Dyn 203, 434-447.[Medline]

Wilson, P. A. and Hemmati-Brivanlou, A (1995). Induction of epidermis and inhibition of neural fate by Bmp-4. Nature 376, 331-336.[Medline]

Wilson, P. A., Lagna, G., Suzuki, A. and Hemmati-Brivanlou, A (1997). Concentration-dependent patterning of the Xenopus ectoderm by BMP4 and its signal transducer Smad1. Development 124, 3177-3184.[Abstract]

Winnier, G., Blessing, M., Labosky, P. A. and Hogan, B. L (1995). Bone morphogenetic protein-4 is required for mesoderm formation and patterning in the mouse. Genes Dev 9, 2105-2116.[Abstract/Free Full Text]

Zhang, D., Mehler, M. F., Song, Q. and Kessler, J. A (1998). Development of bone morphogenetic protein receptors in the nervous system and possible roles in regulating trkC expression. J. Neurosci 18, 3314-3326.[Abstract/Free Full Text]

Zhang, H. and Bradley, A (1996). Mice deficient for BMP2 are nonviable and have defects in amnion/chorion and cardiac development. Development 122, 2977-2986.[Abstract]

Zimmerman, L. B., Jesus-Escobar, J. M. D. and Harland, R. M (1996). The Spemann organizer signal noggin binds and inactivates bone morphogenetic protein 4. Cell 86, 599-606.[Medline]

Zou, H. and Niswander, L (1996). Requirement for BMP signaling in interdigital apoptosis and scale formation. Science 272, 738-741.[Abstract]

Zou, H., Wieser, R., Massague, J. and Niswander, L (1997). Distinct roles of type I bone morphogenetic protein receptors in the formation and differentiation of cartilage. Genes Dev 11, 2191-2203.[Abstract/Free Full Text]


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