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Barnea, E., Zuk, D., Simentov, R., Nudel, U. and Yaffe, D (1990). Specificity of expression of the muscle and brain dystrophin gene promoters in muscle and brain cells. Neuron 5, 881-888.[Medline]

Braun, T., Bober, E., Winter, B., Rosenthal, N. and Arnold, H.-H (1990). Myf-6 a new member of the human gene family of myogenic determination factors: evidence for a gene cluster on chromosome 12. EMBO J 9, 821-831.[Medline]

Braun, T., Buschhausen-Denker, G., Bober, E., Tannich, E. and Arnold, H.-H (1989). A novel human muscle factor related to but distinct from MyoD1 induces myogenic conversion in 10T1/2 fibroblasts. EMBO J 8, 701-709.[Medline]

Braun, T., Rudnicki, M. A., Arnold, H.-H. and Jaenisch, R (1992). Targeted inactivation of the muscle regulatory gene Myf -5 results in abnormal rib development and perinatal death. Cell 71, 369-382.[Medline]

Buckingham, M (1992). Making muscle in mammals. Trends Genet 8, 144-149.[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]

Cossu, G., Kelly, R., Donna, S. D., Vivarelli, E. and Buckingham, M (1995). Myoblast differentiation during mammalian somitogenesis is dependent upon a community effect. Proc. Natl. Acad. Sci. USA 92, 2254-2258.[Abstract/Free Full Text]

Davis, R. L., Weintraub, H. and Lassar, A. B (1987). Expression of a single transfected cDNA converts fibroblasts to myoblasts. Cell 51, 987-1000.[Medline]

Easter, S., Jr., Ross, L. S. and Frankfurter, A (1993). Initial tract formation in the mouse brain. J. Neurosci 13, 285-99.[Abstract]

Edmondson, D. G., Lyons, G. E., Martin, J. F. and Olson, E. N (1994). Mef2 gene expression marks the cardiac and skeletal muscle lineages during mouse embryogenesis. Development 120, 1251-1263.[Abstract]

Edmondson, D. G. and Olson, E. N (1989). A gene with homology to the myc similarity region of MyoD1 is expressed during myogenesis and is sufficient to activate the muscle differentiation program. Genes Dev 3, 628-640.[Abstract/Free Full Text]

Figdor, M. C. and Stern, C. D (1993). Segmental organization of embryonic diencephalon. Nature 363, 630-4.[Medline]

Fraser, S. E (1993). Segmentation moves to the fore. Curr. Biol 3, 787-789.

Ghysen, A. and Dambly-Chaudiere, C (1989). Genesis of the Drosophila peripheral nervous system. Trends Genet 5, 251-5.[Medline]

Guillemot, F., Lo, L. C., Johnson, J. E., Auerbach, A., Anderson, D. J. and Joyner, A. L (1993). Mammalian Achaete-Scute homolog-1 is required for the early development of olfactory and autonomic neurons. Cell 75, 463-476.[Medline]

Hasty, P., Bradley, A., Morris, J. H., Edmondson, D. G., Venuti, J. M., Olson, E. N. and Klein, W. H (1993). Muscle deficiency and neonatal death in mice with a targeted mutation in the myogenin gene. Nature 364, 501-506.[Medline]

Houzelstein, D., Lyons, G. E., Chamberlain, J. and Buckingham, M. E (1992). Localization of dystrophin gene transcripts during mouse embryogenesis. J. Cell Biol 119, 811-21.[Abstract/Free Full Text]

Kaushal, S., Schneider, J. W., Nadal-Ginard, B. and Mahdavi, V (1994). Activation of the myogenic lineage by MEF-2A, a factor that induces and cooperates with MyoD. Science 266, 1236-1240.[Abstract/Free Full Text]

Krause, M., Fire, A., White-Harrison, S., Weintraub, H. and Tapscott, S (1992). Functional conservation of nematode and vertebrate myogenic regulatory factors. J. Cell Sci. Suppl 16, 111-115.

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

Lennon, V. A., Peterson, S. and Schubert, D (1979). Neurectoderm markers retained in phenotypical skeletal muscle cells arising from a glial cell line. Nature 281, 586-588.[Medline]

Logan, C., Khoo, W. K., Cado, D. and Joyner, A. L (1993). Two enhancer regions in the mouse En -2 locus direct expression to the mid/hindbrain region and mandibular myoblasts. Development 117, 905-916.[Abstract]

Lyons, G. E., Moore, R., Yahara, O., Buckingham, M. E. and Walsh, F. S (1992). Expression of NCAM isoforms during skeletal myogenesis in the mouse embryo. Dev. Dynamics 194, 94-104.[Medline]

McBurney, N. M., Jones-Villeneuve, E. M. V., Edwards, M. K. S. and Anderson, P. J (1982). Control of muscle and neuronal differentiation in a cultured embryonal carcinoma cell line. Nature 299, 165-167.[Medline]

Miller-Hance, W. C., LaCorbiere, M., Fuller, S. J., Evans, S. M., Lyons, G., Schmidt, C., Robbins, J. and Chien, K. R (1993). In vitro chamber specification during embryonic stem cell cardiogenesis. J. Biol. Chem 268, 25244-25252.[Abstract/Free Full Text]

Miner, J. H., Miller, J. B. and Wold, B. J (1992). Skeletal muscle phenotypes initiated by ectopic MyoD in transgenic mouse heart. Development 114, 853-860.[Abstract]

Miner, J. H. and Wold, B. J (1990). Herculin a fourth member of the MyoD family of myogenic regulatory genes. Proc. Natl. Acad. Sci. USA 87, 1089-1093.[Abstract/Free Full Text]

Moody, S. A., Quigg, M. S. and Frankfurter, A (1987). Development of the peripheral trigeminal system in the chick revealed by an isotype-specific anti-beta-tubulin monoclonal antibody. J. Comp. Neurol 279, 567-580.

Nabeshima, Y., Hanaoka, K., Hayasaka, M., Esumi, E., Li, S., Nonaka, I. and Nabeshima, Y (1993). Myogenin gene disruption results in perinatal lethality because of severe muscle defect [see comments]. Nature 364, 532-5.[Medline]

Ohanian, C (1968). The occurrence of striated muscle within the cerebellum of the albino rat. Acta anat 71, 108-111.[Medline]

Olson, E. N. and Klein, W. H (1994). bHLH factors in muscle development: dead lines and commitments, what to leave in and what to leave out. Genes Dev 8, 1-8.[Free Full Text]

Ott, M. O., Bober, E., Lyons, G., Arnold, H. and Buckingham, M (1991). Early expression of the myogenic regulatory gene, myf-5, in precursor cells of skeletal muscle in the mouse embryo. Development 111, 1097-107.[Abstract/Free Full Text]

Puelles, L. and Rubenstein, J. L. R (1993). Expression patterns of homeobox and other putative regulatory genes in the embryonic mouse forebrain suggest a neuromeric organization. Trends Neurosci 16, 472-479.[Medline]

Rhodes, S. J. and Konieczny, S (1989). Identification of MRF4: a new member of the muscle regulatory factor gene family. Genes Dev 3, 2050-2061.[Abstract/Free Full Text]

Rudnicki, M. A., Schneglesberg, P. N. J., Stead, R. H., Braun, T., Arnold, H.-H. and Jaenisch, R (1993). MyoD or myf-5 is required for the formation of skeletal muscle. Cell 75, 1351-1359.[Medline]

Santerre, R. F., Bales, K. R., Janney, M. J., Hannon, K., Fisher, L. F., Bailey, C. S., Morris, J., Ivarie, R. and II, C. K. S (1993). Expression of bovine myf-5 induces ectopic skeletal muscle fromation in transgenic mice. Mol. Cell Biol 13, 6044-6051.[Abstract/Free Full Text]

Sassoon, D., Lyons, G., Wright, W. E., Lin, V., Lassar, A., Weintraub, H. and Buckingham, M (1989). Expression of two myogenic regulatory factors myogenin and MyoD1 during mouse embryogenesis. Nature 341, 303-7.[Medline]

Schubert, D., Harris, A. J., Devine, C. E. and Heinemann, S (1974). Characterization of a unique muscle cell line. J. Cell Biol 61, 398-413.[Abstract/Free Full Text]

Tajbakhsh, S. and Buckingham, M (1994). Mouse limb muscle is determined in the absence of the earliest myogenic factor myf-5. Proc. Natl. Acad. Sci. USA 91, 747-751.[Abstract/Free Full Text]

Tajbakhsh, S., Vivarelli, E., Angelis, G. C.-D., Rocancourt, D., Buckingham, M. and Cossu, G (1994). A population of myogenic cells derived from the mouse neural tube. Neuron 13, 813-821.[Medline]

Valtz, N. L. M., Hayes, T. E., Norregaard, T., Liu, S. and McKay, R. D. G (1991). An embryonic origin for medulloblastoma. New Biologist 3, 364-371.[Medline]

Walsh, F. S., Barton, C. H., Putt, W., Moore, S. E., Kelsell, D., Spurr, N. and Goodfellow, P. N (1990). N-cadherin gene maps to human chromosome 18 and is not linked to the E-cadherin gene. J. Neurochem 55, 805-812.[Medline]

Wegner, M., Drolet, D. W. and Rosenfeld, M. G (1993). POU-domain proteins: structure and function of developmental regulators. Curr. Opin. Cell Biol 5, 488-498.[Medline]

Weintraub, H., Davis, R., Tapscott, S., Thayer, M., Krause, M., Benezra, R., Blackwell, T. K., Turner, D., Rupp, R., Hollenberg, S., Zhuang, Y. and Lassar, A (1991). The MyoD gene family: nodal point during specification of the muscle cell lineage. Science 251, 761-766.[Abstract/Free Full Text]

Wright, W. E., Sassoon, D. A. and Lin, V. K (1989). Myogenin, a factor regulating myogenesis, has a domain homologous to MyoD. Cell 56, 607-617.[Medline]

Zimmerman, L., Lendahl, U., Cunningham, M., McKay, R., Parr, B., Gavin, B., Mann, J., Vassileva, G. and McMahon, A (1994). Independent regulatory elements in the nestin gene direct transgene expression to neural stem cells or muscle precursors. Neuron 12, 11-24.[Medline]




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