|
|
|
|||
| Home Help Feedback Subscriptions Archive Search Table of Contents | ||||
Development, Vol 117, Issue 2 461-470, Copyright © 1993 by Company of Biologists
JOURNAL ARTICLES |
AK Jowett, S Vainio, MW Ferguson, PT Sharpe and I Thesleff
Department of Pedodontics and Orthodontics, University of Helsinki, Finland.
Duplication of the msh-like homeobox gene of Drosophila may be related to the evolution of the vertebrate head. The murine homologues of this gene, msx 1 and msx 2 are expressed in the developing craniofacial complex including the branchial arches, especially in regions of epithelial-mesenchymal organogenesis including the developing tooth. By performing in vitro recombination experiments using homochronic dental and non-dental epithelial and mesenchymal tissues from E10 to E18 mouse embryos, we have found that the maintenance of homeobox gene expression in the tooth is dependent upon tissue interactions. In homotypic recombinants, dental-type tissue interactions occur, leading to expression of both genes in a manner similar to that seen during in vivo development. msx 1 is expressed exclusively in mesenchyme, both in the dental papilla and follicle. msx 2 is expressed in the dental epithelium and only in the mesenchyme of the dental papilla. In heterotypic recombinants, the dental epithelium is able to induce msx 1 expression in non-dental mesenchyme, this potential being lost at the bell stage. In these recombinants msx 2 was induced by presumptive dental epithelium prior to the bud stage but not thereafter. The expression of msx 1 and msx 2 in dental mesenchyme requires the presence of epithelium until the early bell stage. However, whereas non-dental, oral epithelium is capable of maintaining expression of msx 1 in dental mesenchyme throughout tooth development, induction of msx 2 was temporally restricted suggesting regulation by a specific epithelial-mesenchymal interaction related to the inductive events of tooth formation. msx 1 and msx 2, as putative transcription factors, may play a role in regulating the expression of other genes during tooth formation. We conclude that expression of msx 1 in jaw mesenchyme requires a non-specific epithelial signal, whereas msx 2 expression in either epithelium or mesenchyme requires reciprocal interactions between specialized dental cell populations.
This article has been cited by other articles:
![]() |
S.H. Zaky and R. Cancedda Engineering Craniofacial Structures: Facing the Challenge Journal of Dental Research, December 1, 2009; 88(12): 1077 - 1091. [Abstract] [Full Text] [PDF] |
||||
![]() |
P. M. Munne, M. Tummers, E. Jarvinen, I. Thesleff, and J. Jernvall Tinkering with the inductive mesenchyme: Sostdc1 uncovers the role of dental mesenchyme in limiting tooth induction Development, February 1, 2009; 136(3): 393 - 402. [Abstract] [Full Text] [PDF] |
||||
![]() |
F. Clauss, M.-C. Maniere, F. Obry, E. Waltmann, S. Hadj-Rabia, C. Bodemer, Y. Alembik, H. Lesot, and M. Schmittbuhl Dento-Craniofacial Phenotypes and underlying Molecular Mechanisms in Hypohidrotic Ectodermal Dysplasia (HED): a Review Journal of Dental Research, December 1, 2008; 87(12): 1089 - 1099. [Abstract] [Full Text] [PDF] |
||||
![]() |
K. Satoh, S. Hamada, K. Kimura, A. Kanno, M. Hirota, J. Umino, W. Fujibuchi, A. Masamune, N. Tanaka, K. Miura, et al. Up-Regulation of MSX2 Enhances the Malignant Phenotype and Is Associated with Twist 1 Expression in Human Pancreatic Cancer Cells Am. J. Pathol., April 1, 2008; 172(4): 926 - 939. [Abstract] [Full Text] [PDF] |
||||
![]() |
W. Cheng, W. B. Jacobs, J. J. R. Zhang, A. Moro, J.-H. Park, M. Kushida, W. Qiu, A. A. Mills, and P. C. W. Kim {Delta}Np63 plays an anti-apoptotic role in ventral bladder development Development, December 1, 2006; 133(23): 4783 - 4792. [Abstract] [Full Text] [PDF] |
||||
![]() |
E. Diamond, M. Amen, Q. Hu, H. M. Espinoza, and B. A. Amendt Functional interactions between Dlx2 and lymphoid enhancer factor regulate Msx2 Nucleic Acids Res., November 6, 2006; 34(20): 5951 - 5965. [Abstract] [Full Text] [PDF] |
||||
![]() |
A. E. Coudert, L. Pibouin, B. Vi-Fane, B. L. Thomas, M. Macdougall, A. Choudhury, B. Robert, P. T. Sharpe, A. Berdal, and F. Lezot Expression and regulation of the Msx1 natural antisense transcript during development Nucleic Acids Res., September 12, 2005; 33(16): 5208 - 5218. [Abstract] [Full Text] [PDF] |
||||
![]() |
T. Aberg, R. Rice, D. Rice, I. Thesleff, and J. Waltimo-Siren Chondrogenic Potential of Mouse Calvarial Mesenchyme J. Histochem. Cytochem., May 1, 2005; 53(5): 653 - 663. [Abstract] [Full Text] [PDF] |
||||
![]() |
M.L. Klein, P. Nieminen, L. Lammi, E. Niebuhr, and S. Kreiborg Novel Mutation of the Initiation Codon of PAX9 Causes Oligodontia Journal of Dental Research, January 1, 2005; 84(1): 43 - 47. [Abstract] [Full Text] [PDF] |
||||
![]() |
T. Andl, K. Ahn, A. Kairo, E. Y. Chu, L. Wine-Lee, S. T. Reddy, N. J. Croft, J. A. Cebra-Thomas, D. Metzger, P. Chambon, et al. Epithelial Bmpr1a regulates differentiation and proliferation in postnatal hair follicles and is essential for tooth development Development, May 15, 2004; 131(10): 2257 - 2268. [Abstract] [Full Text] [PDF] |
||||
![]() |
A.R. Vieira Oral Clefts and Syndromic Forms of Tooth Agenesis as Models for Genetics of Isolated Tooth Agenesis Journal of Dental Research, March 1, 2003; 82(3): 162 - 165. [Abstract] [Full Text] [PDF] |
||||
![]() |
T. Yamashiro, M. Tummers, and I. Thesleff Expression of Bone Morphogenetic Proteins and Msx Genes during Root Formation Journal of Dental Research, March 1, 2003; 82(3): 172 - 176. [Abstract] [Full Text] [PDF] |
||||
![]() |
S. Banerjee-Basu and A. D. Baxevanis Molecular evolution of the homeodomain family of transcription factors Nucleic Acids Res., August 1, 2001; 29(15): 3258 - 3269. [Abstract] [Full Text] [PDF] |
||||
![]() |
M. Mina Regulation of Mandibular Growth and Morphogenesis Critical Reviews in Oral Biology & Medicine, January 1, 2001; 12(4): 276 - 300. [Abstract] [Full Text] [PDF] |
||||
![]() |
M. Molnick and T. Jaskoll Mouse Submandibular Gland Morphogenesis: a Paradigm for Embryonic Signal Processing Critical Reviews in Oral Biology & Medicine, January 1, 2000; 11(2): 199 - 215. [Abstract] [Full Text] [PDF] |
||||
![]() |
J. R.D. Moiseiwitsch The Role of Serotonin and Neurotransmitters During Craniofacial Development Critical Reviews in Oral Biology & Medicine, January 1, 2000; 11(2): 230 - 239. [Abstract] [Full Text] [PDF] |
||||
![]() |
A. Hollnagel, V. Oehlmann, J. Heymer, U. Ruther, and A. Nordheim Id Genes Are Direct Targets of Bone Morphogenetic Protein Induction in Embryonic Stem Cells J. Biol. Chem., July 9, 1999; 274(28): 19838 - 19845. [Abstract] [Full Text] [PDF] |
||||
![]() |
P. A. Mossey The Heritability of Malocclusion: Part 1—Genetics, Principles and Terminology J. Orthod., June 1, 1999; 26(2): 103 - 113. [Abstract] [Full Text] [PDF] |
||||
![]() |
S. Cheifetz BMP Receptors in Limb and Tooth Formation Critical Reviews in Oral Biology & Medicine, January 1, 1999; 10(2): 182 - 198. [Abstract] [Full Text] [PDF] |
||||
![]() |
K. M. McGowan and P. A. Coulombe Onset of Keratin 17 Expression Coincides with the Definition of Major Epithelial Lineages during Skin Development J. Cell Biol., October 19, 1998; 143(2): 469 - 486. [Abstract] [Full Text] [PDF] |
||||
![]() |
G. Hu, H. Vastardis, A. J. Bendall, Z. Wang, M. Logan, H. Zhang, C. Nelson, S. Stein, N. Greenfield, C. E. Seidman, et al. Haploinsufficiency of MSX1: a Mechanism for Selective Tooth Agenesis Mol. Cell. Biol., October 1, 1998; 18(10): 6044 - 6051. [Abstract] [Full Text] |
||||
![]() |
M Grigoriou, A. Tucker, P. Sharpe, and V Pachnis Expression and regulation of Lhx6 and Lhx7, a novel subfamily of LIM homeodomain encoding genes, suggests a role in mammalian head development Development, January 6, 1998; 125(11): 2063 - 2074. [Abstract] [PDF] |
||||
![]() |
H. Kim, D. Rice, P. Kettunen, and I Thesleff FGF-, BMP- and Shh-mediated signalling pathways in the regulation of cranial suture morphogenesis and calvarial bone development Development, January 4, 1998; 125(7): 1241 - 1251. [Abstract] [PDF] |
||||
![]() |
T. Takahashi, C. Guron, S. Shetty, H. Matsui, and R. Raghow A Minimal Murine Msx-1 Gene Promoter. ORGANIZATION OF ITS cis-REGULATORY MOTIFS AND THEIR ROLE IN TRANSCRIPTIONAL ACTIVATION IN CELLS IN CULTURE AND IN TRANSGENIC MICE J. Biol. Chem., September 5, 1997; 272(36): 22667 - 22678. [Abstract] [Full Text] [PDF] |
||||
![]() |
L. Rifas, D. A. Towler, and L. V. Avioli Gestational exposure to ethanol suppresses msx2 expression in developing mouse embryos PNAS, July 8, 1997; 94(14): 7549 - 7554. [Abstract] [Full Text] [PDF] |
||||
![]() |
R. Maas and M. Bei The Genetic Control of Early Tooth Development Critical Reviews in Oral Biology & Medicine, January 1, 1997; 8(1): 4 - 39. [Abstract] [Full Text] [PDF] |
||||
![]() |
K Kratochwil, M Dull, I Farinas, J Galceran, and R Grosschedl Lef1 expression is activated by BMP-4 and regulates inductive tissue interactions in tooth and hair development. Genes & Dev., June 1, 1996; 10(11): 1382 - 1394. [Abstract] [PDF] |
||||
![]() |
A. Monsoro-Burq, D Duprez, Y Watanabe, M Bontoux, C Vincent, P Brickell, and N Le Douarin The role of bone morphogenetic proteins in vertebral development Development, January 11, 1996; 122(11): 3607 - 3616. [Abstract] [PDF] |
||||
![]() |
Y Chen, M Bei, I Woo, I Satokata, and R Maas Msx1 controls inductive signaling in mammalian tooth morphogenesis Development, January 10, 1996; 122(10): 3035 - 3044. [Abstract] [PDF] |
||||
![]() |
D. Phippard, S. Weber-Hall, P. Sharpe, M. Naylor, H Jayatalake, R Maas, I Woo, D Roberts-Clark, P. Francis-West, Y. Liu, et al. Regulation of Msx-1, Msx-2, Bmp-2 and Bmp-4 during foetal and postnatal mammary gland development Development, January 9, 1996; 122(9): 2729 - 2737. [Abstract] [PDF] |
||||
![]() |
M. Tabata, K Kim, J. Liu, K Yamashita, T Matsumura, J Kato, M Iwamoto, S Wakisaka, K Matsumoto, T Nakamura, et al. Hepatocyte growth factor is involved in the morphogenesis of tooth germ in murine molars Development, January 4, 1996; 122(4): 1243 - 1251. [Abstract] [PDF] |
||||
![]() |
A Vaahtokari, T Aberg, and I Thesleff Apoptosis in the developing tooth: association with an embryonic signaling center and suppression by EGF and FGF-4 Development, January 1, 1996; 122(1): 121 - 129. [Abstract] [PDF] |
||||
![]() |
M.C. Johnston and P.T. Bronsky Prenatal Craniofacial Development: New Insights On Normal and Abnormal Mechanisms Critical Reviews in Oral Biology & Medicine, January 1, 1995; 6(1): 25 - 79. [Abstract] [Full Text] [PDF] |
||||
![]() |
M.C. Johnston and P.T. Bronsky Prenatal Craniofacial Development: New Insights on Normal and Abnormal Mechanisms Critical Reviews in Oral Biology & Medicine, January 1, 1995; 6(4): 368 - 422. [Abstract] [Full Text] [PDF] |
||||
![]() |
C van Genderen, R M Okamura, I Farinas, R G Quo, T G Parslow, L Bruhn, and R Grosschedl Development of several organs that require inductive epithelial-mesenchymal interactions is impaired in LEF-1-deficient mice. Genes & Dev., November 15, 1994; 8(22): 2691 - 2703. [Abstract] [PDF] |
||||
![]() |
A Pavlova, E Boutin, G Cunha, and D Sassoon Msx1 (Hox-7.1) in the adult mouse uterus: cellular interactions underlying regulation of expression Development, January 2, 1994; 120(2): 335 - 345. [Abstract] [PDF] |
||||