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Araki, K., Araki, M., Miyazaki, J.-I. and Vassalli, P (1995). Site-specific recombination of a transgene in fertilized eggs by transient expression of Cre recombinase. Proc. Natl. Acad. Sci. USA 92, 160-164.[Abstract/Free Full Text]

Becker, N., Seitanidou, T., Murphy, P., Mattei, M.-G., Topilko, P., Nieto, M. A., Wilkinson, D. G., Charnay, P. and Gilardi-Hebenstreit, P (1994). Several receptor tyrosine kinase genes of the Eph family are segmentally expressed in the developing hindbrain. Mech. Dev 47, 3-17.[Medline]

Blum, M., Gaunt, S. J., Cho, K. W., Steinbeisser, H., Blumberg, B., Bittner, D. and Robertis, E. M. D (1992). Gastrulation in the mouse: the role of the homeobox gene goosecoid. Cell 69, 1097-1106.[Medline]

Carpenter, E. M., Goddard, J. M., Chisaka, O., Manley, N. R. and Capecchi, M. R (1993). Loss of Hox-A1 ( Hox-1.6 ) function results in the reorganization of the murine hindbrain. Development 118, 1063-1075.[Abstract]

Chen, F. and Capecchi, M. R (1999). The paralogous mouse Hox genes, Hoxa9 , Hoxb9 and Hoxd9 , function together to control development of the mammary gland in response to pregnancy. Proc. Natl. Acad. Sci. USA 96, 541-546.[Abstract/Free Full Text]

Chisaka, O. and Capecchi, M. R (1991). Regionally restricted developmental defects resulting from targeted disruption of the mouse homeobox gene hox-1.5. Nature 350, 473-479.[Medline]

Chisaka, O., Musci, T. S. and Capecchi, M. R (1992). Developmental defects of the ear, cranial nerves and hindbrain resulting from targeted disruption of the mouse homeobox gene Hox-1.6. Nature 355, 516-520.[Medline]

Cordes, S. P. and Barsh, G. S (1994). The mouse segmentation gene kr encodes a novel basic domain-leucine zipper transcription factor. Cell 79, 1025-1034.[Medline]

Couly, G., Grapin-Botton, A., Coltey, P. and Le Douarin, N. M (1996). The regeneration of the cephalic neural crest, a problem revisited: the regenerating cells originate from the contralateral or from the anterior and posterior neural fold. Development 122, 3393-3407.[Abstract]

Couly, G., Grapin-Botton, A., Coltey, P., Ruhin, B. and Le Douarin, N. M (1998). Determination of the identity of the derivatives of the cephalic neural crest: incompatibility between Hox gene expression and lower jaw development. Development 125, 3445-3459.[Abstract]

Dodd, J., Morton, S. B., Karagogeos, D., Yamamoto, M. and Jessell, T. M (1988). Spatial regulation of axonal glycoprotein expression on subsets of embryonic spinal neurons. Neuron 1, 105-116.[Medline]

Eriksson, U., Hansson, E., Nordlinder, H., Busch, C., Sundelin, J. and Peterson, P. A (1987). Quantitation and tissue localization of the cellular retinoic acid-binding protein. J. Cell. Physiol 133, 482-490.[Medline]

Feng, C. and Capecchi, M. R (1999). Paralogous mouse Hox genes, Hoxa9 , Hoxb9 , and Hoxd9 , function together to control development of the mammary gland in response to pregnancy. Proc. Natl. Acad. Sci. USA 96, 541-546.

Fraser, S., Keynes, R. and Lumsden, A (1990). Segmentation in the chickembryo hindbrain is defined by cell lineage restrictions. Nature 344, 431-435.[Medline]

Frohman, M. A., Boyle, M and Martin, G. R (1990). Isolation of the mouse Hox-2.9 gene; analysis of embryonic expression suggests that positional information along the anterior-posterior axis is specified by mesoderm. Development 110, 589-607.[Abstract/Free Full Text]

Gaunt, S. J., Blum, M. and De Robertis, E. M (1993). Expression of the mouse goosecoid gene during mid-embryogenesis may mark mesenchymal cell lineages in the developing head, limbs and body wall. Development 117, 769-778.[Abstract]

Gavalas, A., Studer, M., Lumsen, A., Rijli, F. M., Krumlauf, R. and Chambon, P (1998). Hoxa1 and Hoxb1 synergize in patterning the hindbrain, cranial nerves and second pharyngeal arch. Development 125, 1123-1136.[Abstract]

Gendron-Maguire, M., Mallo, M., Zhang, M. and Gridley, T (1993). Hoxa-2 mutant mice exhibit homeotic transformation of skeletal elements derived from cranial neural crest. Cell 75, 1317-1331.[Medline]

Goddard, J. M., Rossel, M., Manley, N. R. and Capecchi, M. R (1996). Mice with targeted disruption of Hoxb-1 fail to form the motor nucleus of the VIIth nerve. Development 122, 3217-3228.[Abstract]

Godwin, A. R., Stadler, H. S., Nakamura, K. and Capecchi, M. R (1998). Detection of targeted GFP-Hox gene fusions during mouse embryogenesis. Proc. Natl. Acad. Sci. USA 95, 13042-13047.[Abstract/Free Full Text]

Helmbacher, F., Pujades, C., Desmarquet, C., Frain, M., Rijli, F. M., Chambon, P. and Charnay, P (1998). Hoxa1 and Krox-20 synergize to control the development of rhombomere 3. Development 125, 4739-4748.[Abstract]

Hunt, P., Gulisano, M., Cook, M., Sham, M.-H., Faiella, A., Wilkinson, D., Boncinelli, E. and Krumlauf, R (1991). A distinct Hox code for the branchial region of the vertebrate head. Nature 353, 861-864.[Medline]

Hunt, P. and Krumlauf, R (1991). Deciphering the hox code: clues to patterning branchial regions of the head. Cell 66, 1075-1078.[Medline]

Kappen, C (1996). Hox genes in the lung. Am. J. Respir. Cell Mol. Biol 15, 156-162.[Medline]

K\232ntges, G. and Lumsden, A (1996). Rhombencephalic neural crest segmentation is preserved throughout craniofacial ontogeny. Development 122, 3229-3242.[Abstract]

LaRosa, G. J. and Gudas, L. J (1988). Early retinoic acid induced F9 teratocarcinoma stem cell gene ERA-1: alternate splicing creates transcripts for a homeobox-containing protein and one lacking the homeobox. Mol. Cell. Biol 8, 3906-3917.[Abstract/Free Full Text]

Lufkin, T., Dierich, A., LeMeur, M., Mark, M. and Chambon, P (1991). Disruption of the Hox-1.6 homeobox gene results in defects in a region corresponding to its rostral domain of expression. Cell 66, 1105-1119.[Medline]

Lumsden, A. and Keynes, R (1989). Segmental patterns of neuronal development in the chick hindbrain. Nature 337, 424-428.[Medline]

Lumsden, A., Sprawson, N. and Graham, A (1991). Segmental origin and migration of neural crest cells in the hindbrain region of the chick embryo. Development 113, 1281-1291.[Abstract]

Maden, M., Horton, C., Graham, A., Leonard, L., Pizzey, J., Siegenthaler, G., Lumsden, A. and Eriksson, U (1992). Domains of cellular retinoic acid-binding protein I (CRABP I) expression in the hindbrain and neural crest of the mouse embryo. Mech. Dev 37, 13-23.[Medline]

Maden, M., Graham, A., Gale, E., Rollinson, C. and Zile, M (1997). Positional apoptosis during vertebrate CNS development in the absence of endogenous retinoids. Development 124, 2799-2805.[Abstract]

Manley, N. R. and Capecchi, M. R (1995). The role of hoxa-3 in mouse thymus and thyroid development. Development 121, 1989-2003.[Abstract]

Manley, N. R. and Capecchi, M. R (1997). Hox group 3 paralogous genes act synergistically in the formation of somitic and neural crest-derived structures. Dev. Biol 192, 274-288.[Medline]

Manley, N. R. and Capecchi, M. R (1998). Hox group 3 paralogs regulate the development and migration of the thymus, thyroid and parathyroid glands. Dev. Biol 195, 1-15.[Medline]

Mansour, S. L., Goddard, J. M. and Capecchi, M. R (1993). Mice homozygous for a targeted disruption of the proto-oncogene int-2 have developmental defects in the tail and inner ear. Development 117, 13-28.[Abstract]

Mark, M., Lufkin, T., Vonesch, J.-L., Ruberte, E., Olivo, J.-C., Dolle, P., Gorry, P., Lumsden, A. and Chambon, P (1993). Two rhombomeres are altered in Hoxa-1 mutant mice. Development 119, 319-338.[Abstract]

McKay, I. J., Muchamore, I., Krumlauf, R., Maden, M., Lumsden, A. and Lewis, J (1994). The kreisler mouse: a hindbrain segmentation mutant that lacks two rhombomeres. Development 120, 2199-2211.[Abstract]

Mitchell, P. J., Timmons, P. M., Hebert, J. M., Rigby, P. W. and Tijian, R (1991). Transcription factor AP-2 is expressed in neural crest cell lineages during mouse embryogenesis. Genes Dev 5, 105-110.[Abstract/Free Full Text]

Mollard, R. and Dziadek, M (1997). Homeobox genes from clusters A and B demonstrate characteristics of temporal colinearity and differential restrictions in spatial expression domains in the branching mouse lung. Int. J. Dev. Biol 41, 655-666.[Medline]

Moser, M., Ruschoff, J. and Buettner, R (1997). Comparative analysis of AP-2 alpha and AP-2 beta gene expression during murine embryogenesis. Dev. Dyn 208, 115-124.[Medline]

Murphy, P.andHill, R. E (1991). Expression of the mouse labial- like homeobox-containing genes, Hox 2.9 and Hox 1.6 , during segmentation of the hindbrain. Development 111, 61-74.[Abstract]

Noden, D. M (1983). The embryonic origins of avian cephalic and cervical muscles and the associated Connective tissues. Am. J. Anat 168, 257-276.[Medline]

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

Podlasek, C. A., Duboule, D. and Bushman, W (1997). Male accessory sex organ morphogenesis is altered by loss of function of Hoxd-13. Dev. Dyn 208, 454-465.[Medline]

P\232pperl, H., Bienz, M., Studer, M., Chan, S.-K., Aparicio, S., Brenner, S., Mann, R. S. and Krumlauf, R (1995). Segmental expression of Hoxb-1 is controlled by a highly conserved autoregulatory loop dependent upon exd/pbx. Cell 81, 1031-1042.[Medline]

Porteus, M. H., Brice, A. E., Bulfone, A., Usdin, T. B., Ciaranello, R. D. and Rubenstein, J. L (1992). Isolation and characterization of a library of cDNA clones that are preferentially expressed in the embryonic telencephalon. Brain Res. Mol. Brain Res 12, 7-22.[Medline]

Rijli, F. M., Mark, M., Lakkaraju, S., Dierich, A., Dolle, P. and Chambon, P (1993). A homeotic transformation is generated in the rostral branchial region of the head by disruption of Hoxa-2 , which acts as a selector gene. Cell 75, 1333-1349.[Medline]

Ruberte, E., Friederich, V., Morris-Kay, G. and Chambon, P (1992). Differential distribution patterns of CRABP1 and CRABP2 transcripts during mouse embryogenesis. Development 115, 973-987.[Abstract]

Saldivar, J. R., Sechrist, J. W., Krull, C. E., Ruffins, S. and Bronner-Fraser, M (1997). Dorsal hindbrain ablation results in rerouting of neural crest migration and changes in gene expression, but normal hyoid development. Development 124, 2729-2739.[Abstract]

Schneider-Maunoury, S., Topilko, P., Seitanidou, T., Levi, G., Cohen-Tannoudji, M., Pournin, S., Babinet, C. and Charnay, P (1993). Disruption of Krox-20 results in alteration of rhombomeres 3 and 5 in the developing hindbrain. Cell 75, 1199-1214.[Medline]

Schorle, H., Meier, P., Buchert, M., Daenisch, R. and Mitchell, P. J (1996). Transcription factor AP-2 essential for cranial closure and craniofacial development. Nature 381, 235-238.[Medline]

Schwenk, F., Baron, U. and Rajewsky, K (1995). A cre- transgenic mouse strain for the ubiquitous deletion of loxP -flanked gene segments including deletion in germ cells. Nucleic Acids Res 23, 5080-5081.[Free Full Text]

Studer, M., Lumsden, A., Ariza-McNaughton, L., Bradley, A. and Krumlauf, R (1996). Altered segmental identity and abnormal migration of motor neurons in mice lacking Hoxb-1. Nature 384, 630-634.[Medline]

Studer, M., Gavalas, A., Marxhall, H., Ariza-McNaughton, L., Rijli, F. M., Chambon, P. and Krumlauf, R (1998). Genetic interactions between Hoxa1 and Hoxb1 reveal new roles in regulation of early hindbrain patterning. Development 125, 1025-1036.[Abstract]

Trainor, P. A. and Tam, P. P (1995). Cranial paraxial mesoderm and neural crest cells of the mouse embryo: co-distribution in the craniofacial mesenchyme but distinct segregation in branchial arches. Development 121, 2569-2582.[Abstract]

Wallin, J., Eibel, H., Neubuser, A., Wilting, J., Koseki, H. and Balling, R (1996). Pax1 is expressed during development of the thymus epithelium and is required for normal T-cell maturation. Development 122, 23-30.[Abstract]

Wilkinson, D. G., Bhatt, S., Chavrier, P., Bravo, R. and Charnay, P (1989). Segment-specific expression of a zinc-finger gene in the developing nervous system of the mouse. Nature 337, 461-464.[Medline]

Zhang, J., Hagopian-Donaldson, S., Serbedzija, G., Elsemore, J., Plehn-Dujowich, D., McMahon, A. P., Flavell, R. A. and Williams, T (1996). Neural tube, skeletal and body wall defects in mice lacking transcription factor AP-2. Nature 381, 238-241.[Medline]




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