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Bellus, G. A., Gaudenz, K., Zackai, E. H., Clarke, L. A., Szabo, J., Francomano, C. A. and Muenke, M (1996). Identical mutations in three different fibroblast growth factor receptor genes in autosomal dominant craniosynostosis syndromes. Nature Genet 14, 174-176.[Medline]

Bitgood, M. J. and McMahon, A. P (1995). Hedgehog and Bmp genes are coexpressed at many diverse sites of cell-cell interaction in the mouse embryo. Dev. Biol 172, 126-138.[Medline]

Catron, K. M., Wang, H., Hu, G., Shen, M. M. and Abate-Shen, C (1996). Comparison of MSX-1 and MSX-2 suggests a molecular basis for functional redundancy. Mech. Dev 55, 185-199.[Medline]

Chen, Y., Bei, M., Woo, I., Satokata, I. and Maas, R (1996). Msx1 controls inductive signaling in mammalian tooth morphogenesis. Development 122, 3035-3044.[Abstract]

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

Cobb, M. H., Boulton, T. G. and Robbins, D. J (1991). Extracellular signal-regulated kinases: ERK in progress. Cell Regulation 2, 965-978.[Medline]

Cohen, M. M. Jr (1995). Craniosynostoses: phenotypic/molecular correlations [editorial]. Am. J. Med. Genet 56, 334-339.[Medline]

Davidson, D (1995). The function and evolution of Msx genes: pointers and paradoxes. Trends Genet 11, 405-411.[Medline]

Decker, J. D and Hall, S. H (1985). Light and electron microscopy of the new born sagittal suture. Anat. Rec 212, 81-89.[Medline]

Dodig, M., et al (1996). Identification of a TAAT-containing motif required for high level expression of the COL1A1 promoter in differentiated osteoblasts of transgenic mice. J. Biol. Chem 271, 16422-16429.[Abstract/Free Full Text]

Duprez, D., Bell, E. J. H., Richardson, M. K., Archer, C. W., Wolpert, L., Brickell, P. M. and Francis-West, P. H (1996). Overexpression of BMP-2 and BMP-4 alters the size and shape of developing skeletal elements in the chick limb. Mech. Dev 57, 145-157.[Medline]

El Ghouzzi, V., Le Merrer, M., Perrin-Schmitt, F., Lajeunie, E., Benit, P., Renier, D., Bourgeois, P., Bolcato-Bellemin, A. L., Munnich, A. and Bonaventure, J (1997). Mutations of the TWIST gene in the Saethre-Chotzen syndrome. Nat. Genet 15, 42-46.[Medline]

Erlebacher, A., Filvaroff, E. H., Gitelman, S. E. and Derynck, R (1995). Toward a molecular understanding of skeletal development. Cell 80, 371-378.[Medline]

Francis, P. H., Richardson, M. K., Brickell, P. M. and Tickle, C (1994). Bone morphogenetic proteins and a signalling pathway that controls patterning in the developing chick limb. Development 120, 209-218.[Abstract]

Galvin, B. D., Hart, K. C., Meyer, A. N., Webster, M. K. and Donoghue, A. J (1996). Constitutive receptor activation by Crouzon syndrome mutations in fibroblast growth factor receptor (FGFR) 2 and FGFR2/Neu chimeras. Proc. Natl. Acad. Sci. USA 93, 7894-7899.[Abstract/Free Full Text]

Givol, D. and Yayon, A (1992). Complexity of FGF receptors: genetic basis for structural diversity and functional specificity. FASEB J 6, 3362-3369.[Abstract]

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

Green, P. J., Walsh, F. S. and Doherty, P (1996). Promiscuity of fibroblast growth factor receptors. BioEssays 18, 639-646.[Medline]

Hodgkinson, J. E., Davidson, C. L., Beresford, J. and Sharpe, P. T (1993). Expression of a human homeobox-containing gene is regulated by 1,25(OH)2D3 in bone cells. Biochim. Biophys. Acta 1174, 11-16.[Medline]

Hoffmann, H. M., et al (1996). Bone tissue-specific transcription of the osteocalcin gene: role of an activator osteoblast-specific complex and suppressor hox proteins that bind the OC box. J. Cell Biochem 61, 310-324.[Medline]

Howard, T. D., Paznekas, W. A., Green, E. D., Chiang, L. C., Ma, N., Ortiz de Luna, R. I., Garcia Delgado, C., Gonzalez-Ramos, M., Kline, A. D.and Jabs, E. W (1997). Mutations in TWIST, a basic helix-loop-helix transcription factor, in Saethre-Chotzen syndrome. Nature Genet 15, 36-41.[Medline]

Iseki, S., Wilkie, A. O. M., Heath, J. K., Ishimaru, T., Eto, K. and Morriss-Kay, G (1997). Fgfr2 and Osteopontin domains in the developing skull vault are mutually exclusive and can be altered by locally applied FGF2. Development 124, 3375-3384.[Abstract]

Jabs, E. W., et al (1993). A mutation in the homeodomain of the human MSX2 gene in a family affected with autosomal dominant craniosynostosis. Cell 75, 443-450.[Medline]

Jabs, E. W., Li, X., Scott, A. F., Meyers, G., Chen, W., Eccles, M., Mao, J. I., Charnas, L. R., Jackson, C. E. and Jaye, M (1994). Jackson-Weiss and Crouzon syndromes are allelic with mutations in fibroblast growth factor receptor 2. Nature Genet 8, 275-279.[Medline]

Johansen, V. A. and Hall, S. H (1982). Morphogenesis of the mouse coronal suture. Acta Anat 114, 58-67.[Medline]

Jowett, A. K., Vainio, S., Ferguson, M. W. J., Sharpe, P. T. and Thesleff, I (1993). Epithelial-mesenchymal interactions are required for msx 1 and msx 2 gene expression in the developing murine molar tooth. Development 117, 461-470.[Abstract]

Katagiri, T., Yamaguchi, A., Komaki, M., Abe, E., Takahashi, N., Ikeda, T., Rosen, B. and Wozney, J. M (1994). Bone morphogenetic protein-2 converts the differentiation pathway of C2C12 myoblasts into the osteoblast lineage. J. Cell Biol 127, 1755-1766.[Abstract/Free Full Text]

Kingsley, D. M (1994). What do BMPs do in mammals? Clues from the mouse short-ear mutation. Trends Genet 10, 16-21.[Medline]

Kingsley, D. M., Bland, A. E., Grubber, J. M., Marker, P. C., Russell, L. B., Copeland, N. G. and Jenkins, N. A (1992). The mouse short ear skeletal morphogenesis locus is associated with defects in a bone morphogenetic member of the TGF beta superfamily. Cell 71, 399-410.[Medline]

Krauss, S., Concordet, J. P. and Ingham, P. W (1993). A functionally conserved homolog of the Drosophila segment polarity gene hh is expressed in tissues with polarizing activity in zebrafish embryos. Cell 75, 1431-1444.[Medline]

Laufer, E., Nelson, C. E., Johnson, R. L., Morgan, B. A. and Tabin, C (1994). Sonic hedgehog and Fgf-4 act through a signaling cascade and feedback loop to integrate growth and patterning of the developing limb bud. Cell 79, 993-1003.[Medline]

Liu, Y. H., Kundu, R., Wu, L., Luo, W., Ignelzi, M. A., Snead, M.L. and Maxson, R. E (1995). Premature suture closure and ectopic cranial bone in mice expressing Msx2 transgenes in the developing skull. Proc. Natl. Acad. Sci. USA 92, 6137-6141.[Abstract/Free Full Text]

Ma, L., Golden, S., Wu, L. and Maxson, R (1996). The molecular basis of Boston-type craniosynostosis: the Pro148-->His mutation in the N-terminal arm of the MSX2 homeodomain stabilizes DNA binding without altering nucleotide sequence preferences. Hum. Mol. Genet 5, 1915-1920.[Abstract/Free Full Text]

Mackenzie, A., Ferguson, M. W. J. and Sharpe, P. T (1992). Expression patterns of the homeobox gene, Hox-8, in the mouse embryo suggest a role in specifying tooth initiation and shape. Development 115, 403-420.[Abstract]

Marigo, V., Davey, R. A., Zuo, Y., Cunningham, J. M. and Tabin, C. J (1996). Biochemical evidence that Patched is the Hedgehog receptor. Nature 384, 176-179.[Medline]

Marti, E., Takada, R., Bumcrot, D. A., Sasaki, H. and McMahon, P (1995). Distribution of Sonic hedgehog peptides in the developing chick and mouse embryo. Development 121, 2537-2547.[Abstract]

Muenke, M. and Schell, U (1995). Fibroblast-growth-factor receptor mutations in human skeletal disorders. Trends in Genetics 11, 308-313.[Medline]

Muenke, N., et al (1994). A common mutation in the fibroblast growth factor receptor 1 gene in Pfeiffer syndrome. Nature Genet 8, 269-273.[Medline]

Neilson, K. M. and Friesel, R. E (1995). Constitutive activation of fibroblast growth factor receptor-2 by a point mutation associated with Crouzon syndrome. J. Biol. Chem 270, 26037-26040.[Abstract/Free Full Text]

Newberry, E. P., Boudreaux, J. M. and Towler, D. A (1996). The rat osteocalcin fibroblast growth factor (FGF)-responsive element: an okadaic acid-sensitive, FGF-selective transcriptional response motif. Molecular Endocrinology 10, 1029-1040.[Abstract]

Newberry, E. P., Latifi, T., Battaile, J. T. and Towler, D. A (1997). Stucture-function analysis of Msx2-mediated transcriptional suppression. Biochemistry 36, 10451-10462.[Medline]

Northrop, J., Woods, A., Seger, R., Suzuki, A., Ueno, N., Krebs, E. and Kimelman, D (1995). BMP-4 regulates the dorsal-ventral differences in FGF/MAPKK-mediated mesoderm induction in Xenopus. Dev. Biol 172, 242-253.[Medline]

Opperman, L. A., Passarelli, R. W., Morgan, E. P. Reintjes, M. and Ogle, R. C (1995). Cranial sutures require tissue interactions with dura mater to resist osseous obliteration in vitro. J. Bone Miner. Res 10, 1979-1987.

Ornitz, D. M., Xu, J., Colvin, J. S., McEwen, D. G., MacArthur, C. A., Coulier, F., Gao, G. and Goldfarb, M (1996). Receptor specificity of the fibroblast growth factor family. J. Biol. Chem 271, 15292-15297.[Abstract/Free Full Text]

Orr-Urtreger, A., Bedford, M.T., Burakova, T., Arman, E., Zimmer, Y., Yayon, A., Givol, D. and Lonai, P (1993). Developmental localization of the splicing alternatives of fibroblast growth factor receptor-2 (FGFR2). Dev. Biol 158, 475-486.[Medline]

Riddle, R. D., Johnson, R. L., Laufer, E. and Tabin C (1993). Sonic hedgehog mediates the polarizing activity of the ZPA. Cell 75, 1401-1416.[Medline]

Satokata, I. and Maas, R (1994). Msx1 deficient mice exhibit cleft palate and abnormalities of craniofacial and tooth development. Nature Genet 6, 348-356.[Medline]

Semenza, G. L., Wang, G. L. and Kundu, R (1995). DNA binding and transcriptional properties of wild-type and mutant forms of the homeodomain protein Msx2. Biochem. Biophys. Res. Commun 209, 257-262.[Medline]

Shiang, R., Thompson, L. M., Zhu, Y-Z., Church, D. M., Fielder, T., Bocian, M., Winokur, S. T. and Wasmuth, J. J (1994). Mutations in the transmembrane domain of FGFR3 cause the most common genetic form of dwarfism, achondroplasia. Cell 78, 335-342.[Medline]

Stone, D. M., et al (1996). The tumour-suppressor gene patched encodes a candidate receptor for Sonic hedgehog. Nature 384, 129-134.[Medline]

Tabin, C (1995). The initiation of the limb bud: growth factors, Hox genes, and retinoids. Cell 80, 671-674.[Medline]

Takahashi, Y. and Le Douarin, N.M (1990). cDNA cloning of a quail homeobox gene and its expression in neural crest-derived mesenchyme and lateral plate mesoderm. Proc. Natl. Acad. Sci. USA 87, 7482-7486.[Abstract/Free Full Text]

Takahashi, Y., Bontoux, M. and Le Douarin, N. M (1991). Epithelio-mesenchymal interactions are critical for Quox 7 expression and membrane bone differentiation in the neural crest-derived mandibular mesenchyme. EMBO J 10, 2387-2393.[Medline]

Tavormina, P. L., et al (1995). Thanatophoric dysplasia (type I and II) caused by distinct mutations in fibroblast growth factor receptor 3. Nature Genet 9, 321-328.[Medline]

Towler, D. A., Bennett, C. D. and Rodan, G. A (1994). Activity of the rat osteocalcin basal promoter in osteoblastic cells is dependent upon homeodomain and CP1 binding motifs. Mol. Endocrinol 8, 614-624.[Abstract]

Towler, D. A., Rutledge, S. J. and Rodan, G. A (1994). Msx-2/Hox 8.1: a transcriptional regulator of the rat osteocalcin promoter. Mol. Endocrinol 8, 1484-1493.[Abstract]

Ullrich, A. and Schlessinger, J (1990). Signal transduction by receptors with tyrosine kinase activity. Cell 61, 203-212.[Medline]

Vaahtokari, A., \201berg, T., Jernvall, J., Ker\212nen, S. and Thesleff, I (1996). The enamel knot as a signaling center in the developing mouse tooth. Mech. Dev 54, 39-43.[Medline]

Vaahtokari, A., \201berg, T. and Thesleff, I (1996). Apoptosis in the developing tooth: association with an embryonic signaling center and suppression by EGF and FGF-4. Development 122, 121-129.[Abstract]

Vainio, S., Jalkanen, M., Vaahtokari, A., Sahlberg, C., Mali, M., Bernfield, M. and Thesleff, I (1991). Expression of syndecan gene is induced early, is transient, and correlates with changes in mesenchymal cell proliferation during tooth organogenesis. Dev. Biol 147, 322-333.[Medline]

Vainio, S., Karavanova, I., Jowett, A. and Thesleff, I (1993). Identification of BMP-4 as a signal mediating secondary induction between epithelial and mesenchymal tissues during early tooth development. Cell 75, 45-58.[Medline]

Vortkamp, A., Lee, K., Lanske, B., Segre, G. V., Kronenberg, H. M. and Tabin, C. J (1996). Regulation of rate of cartilage differentiation by indian hedgehog and PTH-related protein. Science 273, 613-622.[Abstract]

Watanabe, Y. and Le Douarin, N. M (1996). A role for BMP-4 in the development of subcutaneous cartilage. Mech. Dev 57, 69-78.[Medline]

Wilkie, A. O. M., et al (1995). Apert syndrome results from localized mutations of FGFR2 and is allelic with Crouzon syndrome. Nature Genet 9, 165-172.[Medline]

Winograd, J., et al (1997). Perinatal lethality and multiple craniofacial malformations in MSX2 transgenic mice. Hum. Mol. Genet 6, 369-379.[Abstract/Free Full Text]

Wozney, J. M (1992). The bone morphogenetic protein family and osteogenesis. Mol. Reprod. Dev 32, 160-167.[Medline]

Wozney, J. M., Rosen, V., Celeste, A. J., Mitsock, L. M., Whitters, M. J., Kriz, R. W., Hewick, R. M. and Wang, E. A (1988). Novel regulators of bone formation: molecular clones and activities. Science 242, 1528-1534.[Abstract/Free Full Text]

Yamada, T., Pfaff, L. S., Edlund, T. and Jessell, T. M (1993). Control of cell pattern in the neural tube: motor neuron induction by diffusible factors from notochord and floor plate. Cell 73, 673-686.[Medline]

Yamaguchi, T. P. and Rossant, J (1995). Fibroblast growth factors in mammalian development. Curr. Opin. Genet. Dev 5, 485-491.[Medline]




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