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\201berg, T., Wozney, J. and Thesleff, I (1997). Expression patterns of BMPs in the developing mouse tooth suggests roles in morphogenesis and cell differentiation. Dev. Dyn 210, 407-416.[Medline]

Bei, M. and Maas, R (1998). FGFs and BMP4 induce both Msx-1 independent and Msx-1 dependent signaling pathways in early tooth development. Development 125, 4325-4333.[Abstract]

D'Souza, R. N., Cavender, A., Sunavala, G., Ohshima, A. J., Kulkarni, A. B. and MacDougall, M (1997). Gene expression patterns of murine dentin matrix protein 1 (Dmp1) and dentin sialophosphoprotein (DSPP) suggests distinct developmental functions in vivo. J. Bone Miner. Res 12, 2040-2049.[Medline]

D'Souza, R. N., Niederreither, K. and de Crombrugghe, B (1993). Osteoblast-specific expression of the alpha 2(I) collagen promoter in transgenic mice: correlation with the distribution of TGF-beta 1. J. Bone Mineral Res 8, 1127-1136.[Medline]

Ducy, P. and Karsenty, G (1995). Two distinct osteoblast-specific cis- acting elements control expression of the mouse ostecalcin gene. Mol. Cell. Biol 15, 1858-1869.[Abstract]

Ducy, P., Zhang, R., Geoffroy, V., Ridall, A. L. and Karsenty, G (1997). Osf2/Cbfa1: a transcriptional activator of osteoblast differentiation. Cell 89, 747-754.[Medline]

Hall, B.K (1978). Initiation of osteogenesis by mandibular mesenchyme. Arch. Oral Biol 23, 1157-1161.[Medline]

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

berg, T., Kettunen, P., Keranen, S. and Thesleff, I (1998). The life history of an embryonic signalling center: BMP-4 induces p21 and is associated with apoptosis in the mouse tooth enamel knot. Development 125, 161-169.[Abstract]

Komori, T., Yagi, H., Nomura, S., Yamaguchi, A., Sasaki, K., Deguchi, K., Shimizu, Y., Bronson, R. T., Gao, Y. H., Inada, M., Sato, M., Okamoto, R., Kitamura, Y., Yoshiki, S. and Kishimoto, T (1997). Targeted disruption of Cbfa1 results in a complete lack of bone formation owing to maturational arrest of osteoblasts. Cell 89, 755-764.[Medline]

Lee, B., Thirunavukkarasu, K., Zhou, L., Pastore, L., Baldini, A., Hecht, J., Geoffroy, V., Ducy, P. and Karsenty, G (1997). Missense mutations abolishing DNA binding of the osteoblast specific transcription factor OSF2/CBFA1 in cleidocranial dysplasia. Nature Genet 16, 307-310.[Medline]

Linde, A. and Goldberg, M (1993). Dentinogenesis. Crit. Rev. Oral Biol. Med 4, 679-728.[Abstract/Free Full Text]

Lumsden, A. G. S (1988). Spatial organisation of the epithelium and the roleof neural crest cells in the initiation of the mammalian tooth. Development 103, 155-169.

Maas, R. and Bei, M (1997). The genetic control of early tooth development. Crit. Rev. Oral Biol. Med 8, 4-39.[Abstract/Free Full Text]

Matzuk, M. M., Kumar, T. R., Vassalli, A., Bickenbach, J. R., Roop, D. R., Jaenisch, R. and Bradley, A (1995). Functional analysis of activins during mammalian development. Nature 374, 354-356.[Medline]

Mets\212ranta, M., Toman, De., deCrombrugghe, B. and Vuorio, E (1991). Specific hybridization probes for mouse type 1,2,3 and 9 collagen mRNA. Biochim. Biophys. Acta 18, 241-243.

Mina, M. and Kollar, E. J (1987). The induction of odontogenesis in non-dental mesenchyme combined with early murine mandibular arch epithelium. Arch. Oral Biol 32, 123-127.[Medline]

Mundlos, S., Otto, F., Mundlos, C., Mulliken, J. B., Aylsworth, A. S., Albright, S., Lindhout, D., Cole, W. G., Henn, W., Knoll, J. H., Owen, M. J., Mertelsmann, R., Zabel, B. U. and Olsen, B. R (1997). Mutations involving the transcription factor CBFA1 cause cleidocranial dysplasia. Cell 89, 773-779.[Medline]

Ogawa, E., Maruyama, M., Kagoshima, H., Inuzuka, M., Lu, J., Satake, M., Shigesada, K. and Ito, Y (1993). PEBP2/PEA2 represents a new family of transcription factor homologous to the products of the Drosophila runt and the human AML1 gene. Proc. Natl. Acad. Sci. USA 90, 6859-6863.[Abstract/Free Full Text]

Otto, F., Thornell, A. P., Crompton, T., Denzel, A., Gilmour, K. C., Rosewell, I. R., Stamp, G. W., Beddington, R. S., Mundlos, S., Olsen, B. R., Selby, P. B. and Owen, M. J (1997). Cbfa1, a candidate gene for cleidocranial dysplasia syndrome, is essential for osteoblast differentiation and bone development. Cell 89, 765-771.[Medline]

Peters, H., Neubuser, A., Kratochwil, K. and Balling, R (1998). Pax9-deficient mice lack pharyngeal pouch derivatives and teeth and exhibit craniofacial and limb abnormalities. Genes Dev 12, 2735-2747.[Abstract/Free Full Text]

Qiu, M., Bulfone, A., Ghattas, I., Meneses, J., Sharpe, P. T., Presley, R., Pederson, R. A. and Rubenstein, J. L. R (1997). Role of the Dlx homeobox genes in proximodistal patterning of the branchial arches: mutations of Dlx-1, Dlx-2, and Dlx-1 and-2 alter morphogenesis of proximal skeletal and soft tissue structures derived from first and second arches. Dev. Biol 185, 165-184.[Medline]

Ruch, J. V., Lesot, H., Karcher-Djuricic, V., Meyer, J. M. and Mark, M (1983). Epithelial-mesenchymal interactions in tooth germs: mechanism of differentiation. J. Biol. Buccale 11, 173-193.[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]

Thesleff, I., Vaahtokari, A., Partanen, A. M (1995). Regulation of organogenesis. Common molecular mechanisms regulating the development of teeth and other organs. Int. J. Dev. Biol 39, 35-50.[Medline]

Thesleff, I., Nieminen, P (1996). Tooth morphogenesis and cell differentiation. Curr. Opin. Cell Biol 8, 844-850.[Medline]

Thesleff, I. and Sharpe, P (1997). Signalling networks regulating dental development. Mech. Dev 67, 111-123.[Medline]

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 mesenchyme tissues during early tooth development. Cell 75, 45-58.[Medline]

Van Genderen, C., Okamura, R. M., Farinas, I., Quo, R. G., Parslow, T. G., Bruhn, L. and Grosschedl, R (1994). Development of several organs that require inductive epithelial-mesenchymal interactions is impaired in LEF-1 deficient mice. Genes Dev 5, 656-669.[Abstract/Free Full Text]


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