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Auerbach, R (1954). Analysis of the developmental effects of a lethal mutation in the house mouse. J. Exper. Zool 127, 305-329.

Barr, F. G., Galili, N., Holick, J., Biegel, J. A., Rovera, G. and Emanuel, B. S (1993). Rearrangement of the PAX3 paired box gene in the paediatric solid tumour alveolar rhabdomyosarcoma. Nature Genet 3, 113-117.[Medline]

Bernasconi, M., Remppis, A., Fredericks, W., Rauscher, F. and Schafer, B (1996). Induction of apoptosis in rhabdomyosarcoma cells through down-regulation of PAX proteins. Proc. Natl. Acad. Sci. USA 93, 13164-13169.[Abstract/Free Full Text]

Bladt, F., Riethmacher, D., Isenmann, S., Aguzzi, A. and Birchmeier, C (1995). Essential role for the c-met receptor in migration of myogenic precursor cells into the limb bud. Nature 376, 768-771.[Medline]

Bober, E., Franz, T., Arnold, H., Gruss, P. and Tremblay, P (1994). Pax-3 is required for the development of limb muscles: a possible role for the migration of dermomyotomal muscle progenitor cells. Development 120, 603-612.[Abstract]

Borycki, A.-G., Li, J., Jin, F., Emerson, C. P. J. and Epstein, J. A (1999). Pax3 functions in cell survival and in Pax7 regulation. Development 126, 1665-1674.[Abstract]

Brand-Saberi, B., Muller, T. S., Wilting, J., Christ, B. and Birchmeier, C (1996). Scatter factor/hepatocyte growth factor (SF/HGF) induces emigration of myogenic cells at interlimb level in vivo. Dev. Biol 179, 303-308.[Medline]

Chen, F., Liu, K. C. and Epstein, J. A (1999). Lbx2, a novel murine homeobox gene related to the Drosophila ladybird genes is expressed in the developing urogenital system, eye and brain. Mech. Dev 84, 181-184.[Medline]

Conway, S., Henderson, D. and Copp, A (1997). Pax3 is required for cardiac neural crest migration in the mouse: evidence from the splotch (Sp2H) mutant. Development 124, 505-514.[Abstract]

Daston, G., Lamar, E., Olivier, M. and Goulding, M (1996). Pax-3 is necessary for migration but not differentiation of limb muscle precursors in the mouse. Development 122, 1017-1027.[Abstract]

Driscoll, D. A (1994). Genetic basis of DiGeorge and velocardio-facial syndromes. Cur. Opin. Pediat 6, 702-706.[Medline]

Epstein, D. J., Vekemans, M. and Gros, P (1991). Splotch (Sp2H), a mutation affecting development of the mouse neural tube, shows a deletion within the paired homeodomain of Pax-3. Cell 67, 767-774.[Medline]

Epstein, D. J., Vogan, K. J., Trasler, D. G. and Gros, P (1993). A mutation within intron 3 of the Pax-3 gene produces aberrantly spliced mRNA transcripts in the splotch (Sp) mouse mutant. Proc. Natl. Acad. Sci. USA 90, 532-536.[Abstract/Free Full Text]

Epstein, J. A., Shapiro, D. N., Cheng, J., Lam, P. Y. and Maas, R. L (1996). Pax3 modulates expression of the c-Met receptor during limb muscle development. Proc. Natl. Acad. Sci. USA 93, 4213-4218.[Abstract/Free Full Text]

Franz, T (1989). Persistent truncus arteriosus in the Splotch mutant mouse. Anat. Embryol 180, 457-464.[Medline]

Franz, T., Kothary, R., Surani, M. A., Halata, Z. and Grim, M (1993). The Splotch mutation interferes with muscle development in the limbs. Anat. Embryol 187, 153-160.[Medline]

Galili, N., Davis, R. J., Fredericks, W. J., Mukhopadhyay, S., Rauscher, F. J., III, Emanuel, B. S., Rovera, G. and Barr, F. G (1993). Fusion of a fork head domain gene to PAX3 in the solid tumor alveolar rhabdomyosarcoma. Nat. Genet 5, 230-235.[Medline]

Goulding, M. D., Chalepakis, G., Deutsch, U., Erselius, J. R. and Gruss, P (1991). Pax-3, a novel murine DNA binding protein expressed during early neurogenesis. EMBO J 10, 1135-1147.[Medline]

Goulding, M., Lumsden, A. and Paquette, A. J (1994). Regulation of Pax-3 expression in the dermomyotome and its role in muscle development. Development 120, 957-971.[Abstract]

Huang, G. Y., Cooper, E. S., Waldo, K., Kirby, M. L., Gilula, N. B. and Lo, C. W (1998). Gap junction-mediated cell-cell communication modulates mouse neural crest migration. J. Cell Biol 143, 1725-1734.[Abstract/Free Full Text]

Jones, M. C (1990). The neurocristopathies: reinterpretation based upon the mechanism of abnormal morphogenesis. Cleft Palate J 27, 136-140.[Medline]

Kioussi, C., Gross, M. K. and Gruss, P (1995). Pax3: a paired domain gene as a regulator in PNS myelination. Neuron 15, 553-562.[Medline]

Kirby, M. L., Gale, T. F. and Stewart, D. E (1983). Neural crest cells contribute to aorticopulmonary septation. Science 220, 1059-1061.[Abstract/Free Full Text]

Kirby, M. L., Kumiski, D. H., Myers, T., Cerjan, C. and Mishima, N (1993). Backtransplantation of chick cardiac neural crest cells cultured in LIF rescues heart development. Dev. Dyn 198, 296-311.[Medline]

Koblar, S. A., Murphy, M., Barrett, G. L., Underhill, A., Gros, P. and Bartlett, P. F (1999). Pax-3 regulates neurogenesis in neural crest-derived precursor cells. J. Neurosci. Res 56, 518-530.[Medline]

Kothary, R (1991). Unusual cell specific expression of a major human cytomegaloviurs immediate early gene promoter-lacZ hybrid gene in transgenic mouse embryos. Mech. Dev 35, 25-31.[Medline]

Li, J., Liu, K., Jin, F. and Epstein, J. A (1999). Transgenic rescue of congenital heart disease and spina bifida in Splotch mice. Development 126, 2495-2503.[Abstract]

Lo, C. W., Cohen, M. F., Huang, G. Y., Lazatin, B. O., Patel, N., Sullivan, R., Pauken, C. and Park, S. M (1997). Cx43 gap junction gene expression and gap junctional communication in mouse neural crest cells. Dev. Genet 20, 119-132.[Medline]

Lutz, B., Kuratani, S., Cooney, A., Wawersik, S., Tsai, S. Y., Eichele, G. and Tsai, M (1994). Developmental regulation of the orphan receptor COUP-TFII gene in spinal motor neurons. Development 120, 25-36.[Abstract]

Mackenzie, S., Walsh, F. S. and Graham, A (1998). Migration of hypoglossal myoblast precursors. Dev. Dyn 213, 349-358.[Medline]

Maroto, M., Reshef, R., Munsterberg, A. E., Koester, S., Goulding, M. and Lassar, A (1997). Ectopic Pax-3 activates myoD and myf-5 expression in embryonic mesoderm and neural tissue. Cell 89, 139-148.[Medline]

Moase, C. E. and Trasler, D. G (1990). Delayed neural crest cell emigration from Sp and Spd mouse neural tube explants. Teratology 42, 171-182.[Medline]

Natoli, T. A., Ellsworth, M. K., Wu, C., Gross, K. W. and Pruitt, S. C (1997). Positive and negative DNA sequence elements are required to establish the pattern of Pax3 expression. Development 124, 617-626.[Abstract]

Phelan, S. A., Ito, M. and Loeken, M. R (1997). Neural tube defects in embryos of diabetic mice: role of the Pax-3 gene and apoptosis. Diabetes 46, 1189-1197.[Abstract]

Phillips, M. T., Kirby, M. L. and Forbes, G (1987). Analysis of the cranial neural crest distribution in the developing heart using quail-chick chimeras. Circ. Res 60, 27-30.[Abstract/Free Full Text]

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]

Serbedzija, G. N. and McMahon, A. P (1997). Analysis of neural crest cell migration in Splotch mice using a neural crest-specific lacZ reporter. Dev. Biol 185, 139-147.[Medline]

Shapiro, D. N., Sublett, J. E., Li, B., Downing, J. R. and Naeve, C. W (1993). Fusion of PAX3 to a member of the forkhead family of transcription factors in human alveolar rhabdomyosarcoma. Cancer Res 53, 5108-5112.[Abstract/Free Full Text]

Soriano, P (1999). Generalized lacZ expression with the ROSA26 Cre reporter strain. Nat. Genet 21, 70-71.[Medline]

Tajbakhsh, S., Rocancourt, D., Cossu, G. and Buckingham, M (1997). Redefining the genetic hierarchies controlling skeletal myogenesis: Pax-3 and myf-5 act upstream of myoD. Cell 89, 127-138.[Medline]

Tremblay, P., Kessel, M. and Gruss, P (1995). A transgenic neuroanatomical marker identifies cranial neural crest deficiencies associated with the Pax3 mutant Splotch. Dev. Biol 171, 317-329.[Medline]

Waldo, K. L., Lo, C. W. and Kirby, M. L (1999). Connexin 43 expression reflects neural crest patterns during cardiovascular development. Dev. Biol 208, 307-323.[Medline]




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