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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, 383-396.[Medline]

Agulnick, A. D., Taira, M., Breen, J. J., Tanaka, T., Dawid, I. B. and Westphal, H (1996). Interactions of the LIM-domain-binding factor Ldb1 with LIM homeodomain proteins. Nature 384, 270-2.[Medline]

Arber, S. and Caroni, P (1996). Specificity of single LIM motifs in targeting and LIM/LIM interactions in situ. Genes Dev 10, 289-300.[Abstract/Free Full Text]

Bayer, S. A (1984). Neurogenesis in the rat neostriatum. Int. J. Dev. Neurosci 2, 163-175.

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]

Bourgouin, C., Lundgren, S. E. and Thomas, J. B (1992). Apterous is a Drosophila LIM domain gene required for the development of a subset of embryonic muscles. Neuron 9, 549-61.[Medline]

Bulfone, A., Kim, H. J., Puelles, L., Porteus, M. H., Grippo, J. F. and Rubenstein, J. L (1993). The mouse Dlx-2 (Tes-1) gene is expressed in spatially restricted domains of the forebrain, face and limbs in midgestation mouse embryos. Mech. Dev 40, 129-40.[Medline]

Bulfone, A., Puelles, L., Porteus, M. H., Frohman, M. A., Martin, G. R. and Rubenstein, J. L (1993). Spatially restricted expression of Dlx-1, Dlx-2 (Tes-1), Gbx-2, and Wnt-3 in the embryonic day 12.5 mouse forebrain defines potential transverse and longitudinal segmental boundaries. J. Neurosci 13, 3155-72.[Abstract]

Chapman, G. and Rathjen, P. D (1995). Sequence and evolutionary conservation of the murine Gbx-2 homeobox gene. FEBS Lett 364, 289-292.[Medline]

Chen, G. C., Zheng, L. and Chan, C. S (1996). The LIM domain-containing Dbm1 GTPase-activating protein is required for normal cellular morphogenesis in Saccharomyces cerevisiae. Mol. Cell. Biol 16, 1376-1390.[Abstract]

Cohen, B., McGuffin, M. E., Pfeifle, C., Segal, D. and Cohen, S. M (1992). apterous, a gene required for imaginal disc development in Drosophila encodes a member of the LIM family of developmental regulatory proteins. Genes Dev 6, 715-729.[Abstract/Free Full Text]

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]

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., Martinez, S. and Martin, G. R (1996). Midbrain development induced by FGF8 in the chick embryo. Nature 380, 66-68.[Medline]

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]

Dawid, I. B., Toyama, R. and Taira, M (1995). LIM domain proteins. C. R. Acad. Sci. III 318, 295-306.[Medline]

Deacon, T. W., Pakzaban, P. and Isacson, O (1994). The lateral ganglionic eminence is the origin of cells committed to striatal phenotypes: neural transplantation and developmental evidence. Brain Res 668, 211-219.[Medline]

Dolle, P., Price, M. and Duboule, D (1992). Expression of the murine Dlx-1 homeobox gene during facial, ocular and limb development. Differentiation 49, 93-99.[Medline]

Feuerstein, R., Wang, X., Song, D., Cooke, N. E. and Liebhaber, S. A (1994). The LIM/double zinc-finger motif functions as a protein dimerization domain. Proc. Natl. Acad. Sci. USA 91, 10655-10659.[Abstract/Free Full Text]

Freyd, G., Kim, S. K. and Horvitz, H. R (1990). Novel cysteine-rich motif and homeodomain in the product of the Caenorhabditis elegans cell lineage gene lin-11. Nature 344, 876-879.[Medline]

Fukiishi, Y. and Morris-Kay, G. M (1992). Migration of cranial neural crest cells to the pharyngeal arches and heart in rat embryos. Cell. Tissue Res 268, 1-8.[Medline]

Heikinheimo, M., Lawshe, A., Shackleford, G.M., Wilson, D.B., and MacArthur, C (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]

Imai, H., Osumi Yamashita, N., Ninomiya, Y. and Eto, K (1996). Contribution of early-emigrating midbrain crest cells to the dental mesenchyme of mandibular molar teeth in rat embryos. Dev. Biol 176, 151-165.[Medline]

Iseki, S., Araga, A., Ohuchi, H., Nohno, T., Yoshioka, H., Hayashi, F. and Noji, S (1996). Sonic hedgehog is expressed in epithelial cells during development of whisker, hair and tooth. Biochem. Biophys. Res. Commun 218, 688-693.[Medline]

Jowett, A. K., Vainio, S., Ferguson, M. W., 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]

Jurata, L. W., Kenny, D. A. and Gill, G. N (1996). Nuclear LIM interactor, a rhombotin and LIM homeodomain interacting protein, is expressed early in neuronal development. Proc. Natl. Acad. Sci. USA 93, 11693-11698.[Abstract/Free Full Text]

Karlsson, O., Thor, S., Norberg, T., Ohlsson, H. and Edlund, T (1990). Insulin gene enhancer binding protein Isl-1 is a member of a novel class of proteins containing both a homeo-and a Cys-His domain. Nature 344, 879-882.[Medline]

Kikuchi, Y., H.Segawa, Tokumoto, M., Tsubokawa, T., Hotta, Y., Uyemura, K. and Okamoto, H (1997). Ocular and cerebellar defects in Zebrafish induced by overexpression of the LIM domains of the Islet-3 LIM/homeodomain protein. Neuron 18, 369-382.[Medline]

Kratochwil, K., Dull, M., Farinas, I., Galceran, J. and Grosschedl, R (1996). Lef1 expression is activated by BMP-4 and regulates inductive tissue interactions in tooth and hair development. Genes Dev 10, 1382-1394.[Abstract/Free Full Text]

Krumlauf, R (1994). Hox genes in vertebrate development. Cell 78, 191-201.[Medline]

Lammers, G. J., Gribnau, A. A. M. and Donkelaar, H. J. T (1980). Neurogenesis in the basal forebrain in the chinese hamster (Cricetulus griseus). Anat. Embryol 158, 193-211.[Medline]

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

Lumsden, A. and Krumlauf, R (1996). Patterning the vertebrate neuraxis. Science 274, 1109-15.[Abstract/Free Full Text]

Lundgren, S. E., Callahan, C. A., Thor, S. and Thomas, J. B (1995). Control of neuronal pathway selection by the Drosophila LIM homeodomain gene apterous. Development 121, 1769-73.[Abstract]

MacKenzie, A., Leeming, G. L., Jowett, A. K., Ferguson, M. W. and Sharpe, P. T (1991). The homeobox gene Hox 7.1 has specific regional and temporal expression patterns during early murine craniofacial embryogenesis, especially tooth development in vivo and in vitro. Development 111, 269-85.[Abstract]

MacKenzie, A., Ferguson, M. W. 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, 403-20.[Abstract]

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]

Marchand, R., Lajoie, L. and Blanchet, C (1986). Histogenesis at the level of the basal forebrain. Neuroscience 17, 581-607.

Neubuser, A. Peters, H., Balling, R., and Martin, G.R (1997). Antagonistic Interactions between FGF and BMP signaling pathways: A mechanism for positioning the sites of tooth development. Cell 90, 247-255.[Medline]

Noden, D (1983). The role of the neural crest in patterning of avian cranial skeletal, connective and muscle tissues. Dev. Biol 96, 144-165.[Medline]

Ohuchi, H., Nakagawa, T., Yamamoto, A., Araga, A., Ohata, T., Ishimaru, Y., Yoshioka, H., Kuwana, T., Nohno, T., Yamasaki, M., Itoh, N. and Noji, S (1997). The mesenchymal factor, FGF10, initiates and maintains the outgrowth of the chick limb bud through interaction with FGF8, an apical ectodermal factor. Development 124, 2235-2244.[Abstract]

Olsson, M., Campbell, K., Wictorin, K. and Bjorklund, A (1995). Projection neurons in fetal striatal transplants are predominantly derived from the lateral ganglionic eminence. Neuroscience 69, 1169-1182.[Medline]

Osumi Yamashita, N., Ninomiya, Y., Doi, H. and Eto, K (1994). The contribution of both forebrain and midbrain crest cells to the mesenchyme in the frontonasal mass of mouse embryos. Dev. Biol 164, 409-419.[Medline]

Peters, H., Neubuser, A. and Balling, R (1998). Pax genes and oncogenesis: Pax9 meets tooth development. Eur. J. Oral. Sci 106, 38-43.

Pfaff, S. L., Mendelsohn, M., Stewart, C. L., Edlund, T. and Jessell, T. M (1996). Requirement for LIM homeobox gene Isl1 in motor neuron generation reveals a motor neuron-dependent step in interneuron differentiation. Cell 84, 309-320.[Medline]

Porteus, M. H., Bulfone, A., Liu, J. K., Puelles, L., Lo, L. C. and Rubenstein, J. L (1994). DLX-2, MASH-1, and MAP-2 expression and bromodeoxyuridine incorporation define molecularly distinct cell populations in the embryonic mouse forebrain. J. Neurosci 14, 6370-6383.[Abstract]

Richman, J. M. and Tickle, C (1989). Epithelia are interchangeable between facial primordia of chick embryos and morphogenesis is controlled by the mesenchyme. Dev. Biol 136, 201-210.[Medline]

Richman, J. M. and Tickle, C (1992). Epithelial-mesenchymal interactions in the outgrowth of limb buds and facial primordia in chick embryos. Dev. Biol 154, 299-308.[Medline]

Riddle, R. D., Ensini, M., Nelson, C., Tsuchida, T., Jessell, T. M. and Tabin, C (1995). Induction of the LIM homeobox gene Lmx1 by WNT7a establishes dorsoventral pattern in the vertebrate limb. Cell 83, 631-640.[Medline]

Robinson, G. W. and Mahon, K. A (1994). Differential and overlappingexpression domains of Dlx-2 and Dlx-3 suggest distinct roles for Distal-less homeobox genes in craniofacial development. Mech. Dev 48, 199-215.[Medline]

Sanchez Garcia, I. and Rabbitts, T. H (1993). Redox regulation of in vitro DNA-binding activity by the homeodomain of the Isl-1 protein. J. Mol. Biol 231, 945-949.[Medline]

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

Saxen, L (1966). The effect of tetracyclin on osteogenesis in vitro. J. Exp. Zool 162, 269-294.

Schaeren-Wiemers, N. and Gerfin-Moser, A (1993). A single protocol to detect transcripts of various types and expression levels in neural tissue and cultured cells: in situ hybridization using digoxigenin-labelled cRNA probes. Histochemistry 100, 431-440.[Medline]

Schmeichel, K. L. and Beckerle, M. C (1994). The LIM domain is a modular protein-binding interface. Cell 79, 211-219.[Medline]

Serbedzija, G. N., Bronner Fraser, M. and Fraser, S. E (1992). Vital dye analysis of cranial neural crest cell migration in the mouse embryo. Development 116, 297-307.[Medline]

Sheng, H. Z., Moriyama, K., Yamashita, T., Li, H., Potter, S. S., Mahon, K. A., Westphal, H (1997). Multistep control of pituitary organogenesis. Science 278, 1809-1812.[Abstract/Free Full Text]

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

Taira, M., Otani, H., Jamrich, M. and Dawid, I. B (1994). Expression of the LIM class homeobox gene Xlim-1 in pronephros and CNS cell lineages of Xenopus embryos is affected by retinoic acid and exogastrulation. Development 120, 1525-1536.[Abstract]

Taira, M., Evrard, J. L., Steinmetz, A. and Dawid, I. B (1995). Classification of LIM proteins. Trends Genet 11, 431-2.[Medline]

Tanabe, Y. and Jessell, T. M (1996). Diversity and pattern in the developing spinal cord. Science 274, 1115-1123.[Abstract/Free Full Text]

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

Thomas, B. L., Tucker, A. S., Ferguson, C., Qiu, M., Hardcastle, Z., Rubenstein, J. L. R. and Sharpe, P. T (1997). The role of Dlx-1 and Dlx-2 in patterning of the murine dentition. Development 124, 4811-4818.[Abstract]

Thor, S. and Thomas, J. B (1997). The Drosophila islet gene governs axon pathfinding and neurotransmitter identity. Neuron 18, 397-409.[Medline]

Tickle, C (1995). Vertebrate limb development. Curr. Opin. Genet. Dev 5, 478-484.[Medline]

Trowel, O. A (1959). The culture of mature organs in a synthetic medium. Exp. Cell Res 16, 118-147.[Medline]

Tsuchida, T., Ensini, M., Morton, S. B., Baldassare, M., Edlund, T., Jessell, T. M. and Pfaff, S. L (1994). Topographic organization of embryonic motor neurons defined by expression of LIM homeobox genes. Cell 79, 957-790.[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]

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 8, 2691-2703.[Abstract/Free Full Text]

Vogel, A., Rodriguez, C., Warnken, W. and Izpisua Belmonte, J. C (1995). Dorsal cell fate specified by chick Lmx1 during vertebrate limb development. Nature 378, 716-720.[Medline]

Way J.C., Chalfie C. M (1988). mec-3 , a homeobox-containing gene that specifies differentiation of the touch receptor neurons in C. elegans. Cell 54, 5-16.[Medline]

Xue, D., Tu, Y. and Chalfie, M (1993). Cooperative interactions between the Caenorhabditis elegans homeoproteins UNC-86 and MEC-3. Science 261, 1324-1328.[Abstract/Free Full Text]


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Distinct cortical migrations from the medial and lateral ganglionic eminences
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[Abstract] [PDF]


Home page
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[Abstract] [Full Text] [PDF]


Home page
J. Neurosci.Home page
O. Marin, S. A. Anderson, and J. L. R. Rubenstein
Origin and Molecular Specification of Striatal Interneurons
J. Neurosci., August 15, 2000; 20(16): 6063 - 6076.
[Abstract] [Full Text] [PDF]


Home page
JDRHome page
L. Sarkar and P.T. Sharpe
Inhibition of Wnt Signaling by Exogenous Mfrzbl Protein Affects Molar Tooth Size
Journal of Dental Research, April 1, 2000; 79(4): 920 - 925.
[Abstract] [PDF]


Home page
DevelopmentHome page
L Gunhaga, T. Jessell, and T Edlund
Sonic hedgehog signaling at gastrula stages specifies ventral telencephalic cells in the chick embryo
Development, January 8, 2000; 127(15): 3283 - 3293.
[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
Proc. Natl. Acad. Sci. USAHome page
Y. Zhao, Y.-J. Guo, A. C. Tomac, N. R. Taylor, A. Grinberg, E. J. Lee, S. Huang, and H. Westphal
Isolated cleft palate in mice with a targeted mutation of the LIM homeobox gene Lhx8
PNAS, December 21, 1999; 96(26): 15002 - 15006.
[Abstract] [Full Text] [PDF]


Home page
Genes Dev.Home page
A. Trumpp, M. J. Depew, J. L.R. Rubenstein, J. M. Bishop, and G. R. Martin
Cre-mediated gene inactivation demonstrates that FGF8 is required for cell survival and patterning of the first branchial arch
Genes & Dev., December 1, 1999; 13(23): 3136 - 3148.
[Abstract] [Full Text]


Home page
J. Neurosci.Home page
A. A. Lavdas, M. Grigoriou, V. Pachnis, and J. G. Parnavelas
The Medial Ganglionic Eminence Gives Rise to a Population of Early Neurons in the Developing Cerebral Cortex
J. Neurosci., September 15, 1999; 19(18): 7881 - 7888.
[Abstract] [Full Text] [PDF]


Home page
Genes Dev.Home page
A. Sagasti, O. Hobert, E. R. Troemel, G. Ruvkun, and C. I. Bargmann
Alternative olfactory neuron fates are specified by the LIM homeobox gene lim-4
Genes & Dev., July 15, 1999; 13(14): 1794 - 1806.
[Abstract] [Full Text]


Home page
JDRHome page
A.S. Tucker and P.T. Sharpe
Molecular Genetics of Tooth Morphogenesis and Patterning: The Right Shape in the Right Place
Journal of Dental Research, April 1, 1999; 78(4): 826 - 834.
[Abstract] [PDF]


Home page
J. Neurosci.Home page
S. Retaux, M. Rogard, I. Bach, V. Failli, and M.-J. Besson
Lhx9: A Novel LIM-Homeodomain Gene Expressed in the Developing Forebrain
J. Neurosci., January 15, 1999; 19(2): 783 - 793.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
L Sussel, O Marin, S Kimura, and J. Rubenstein
Loss of Nkx2.1 homeobox gene function results in a ventral to dorsal molecular respecification within the basal telencephalon: evidence for a transformation of the pallidum into the striatum
Development, January 8, 1999; 126(15): 3359 - 3370.
[Abstract] [PDF]


Home page
DevelopmentHome page
A. Tucker, G Yamada, M Grigoriou, V Pachnis, and P. Sharpe
Fgf-8 determines rostral-caudal polarity in the first branchial arch
Development, January 1, 1999; 126(1): 51 - 61.
[Abstract] [PDF]


Home page
DevelopmentHome page
A. Tucker, A Al Khamis, C. Ferguson, I Bach, M. Rosenfeld, and P. Sharpe
Conserved regulation of mesenchymal gene expression by Fgf-8 in face and limb development
Development, January 1, 1999; 126(2): 221 - 228.
[Abstract] [PDF]


Home page
ScienceHome page
A. S. Tucker, K. L. Matthews, and P. T. Sharpe
Transformation of Tooth Type Induced by Inhibition of BMP Signaling
Science, November 6, 1998; 282(5391): 1136 - 1138.
[Abstract] [Full Text]


Home page
Genes Dev.Home page
C. A. Ferguson, A. S. Tucker, L. Christensen, A. L. Lau, M. M. Matzuk, and P. T. Sharpe
Activin is an essential early mesenchymal signal in tooth development that is required for patterning of the murine dentition
Genes & Dev., August 15, 1998; 12(16): 2636 - 2649.
[Abstract] [Full Text]


Home page
DevelopmentHome page
M Bei and R Maas
FGFs and BMP4 induce both Msx1-independent and Msx1-dependent signaling pathways in early tooth development
Development, January 11, 1998; 125(21): 4325 - 4333.
[Abstract] [PDF]


Home page
CROBMHome page
K.M. Weiss, D.W. Stock, and Z. Zhao
Dynamic Interactions and the Evolutionary Genetics of Dental Patterning
Critical Reviews in Oral Biology & Medicine, January 1, 1998; 9(4): 369 - 398.
[Abstract] [Full Text] [PDF]


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