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Alexandre, D., Clarke, J. D., Oxtoby, E., Yan, Y. L., Jowett, T. and Holder, N (1996). Ectopic expression of Hoxa-1 in the zebrafish alters the fate of the mandibular arch neural crest and phenocopies a retinoic acid-induced phenotype. Development 122, 735-746.[Abstract]

Becker, N., Gilardi-Hebenstreit, P., Seitanidou, T., Wilkinson, D. and Charnay, P (1995). Characterisation of the Sek-1 receptor tyrosine kinase. Febs Letters 368, 353-357.[Medline]

Birgbauer, E. and Fraser, S. E (1994). Violation of cell lineage restriction compartments in the chick hindbrain. Development 120, 1347-1356.[Abstract]

Birgbauer, E., Sechrist, J., Bronner-Fraser, M. and Fraser, S (1995). Rhombomeric origin and rostrocaudal reassortment of neural crest cells revealed by intravital microscopy. Development 121, 935-945.[Abstract]

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]

Chavrier, P., Vesque, C., Galliot, B., Vigneron, M., Dolle, P., Duboule, D. and Charnay, P (1990). The segment-specific gene Krox-20 encodes a transcription factor with binding sites in the promoter region of the Hox-1.4 gene. EMBO J 9, 1209-1218.[Medline]

Chavrier, P., Zerial, M., Lemaire, P., Almendral, J., Bravo, R. and Charnay, P (1988). A gene encoding a protein with zinc fingers is activated during G0/G1 transition in cultured cells. EMBO J 7, 29-35.[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]

Clarke, J. D. and Lumsden, A (1993). Segmental repetition of neuronal phenotype sets in the chick embryo hindbrain. Development 118, 151-162.[Abstract]

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]

Dolle, P., Lufkin, T., Krumlauf, R., Mark, M., Duboule, D. and Chambon, P (1993). Local alterations of Krox-20 and Hox gene expression in the hindbrain suggest lack of rhombomeres 4 and 5 in homozygote null Hoxa-1 (Hox-1.6) mutant embryos. Proc. Natl. Acad. Sci. USA 90, 7666-7670.[Abstract/Free Full Text]

Dupe, V., Davenne, M., Brocard, J., Dolle, P., Mark, M., Dierich, A., Chambon, P. and Rijli, F. M (1997). In vivo functional analysis of the Hoxa-1 3retinoic acid response element (3 RARE). Development 124, 399-410.[Abstract]

Frasch, M., Chen, X. and Lufin, T (1995). Evolutionary-conserved enhancers direct region-specific expression of murine Hoxa-1 and Hoxa-2 loci in both mice and Drosophila. Development 121, 957-974.[Abstract]

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

Frohman, M. A., Martin, G. R., Cordes, S. P., Halamek, L. P. and Barsh, G. S (1993). Altered rhombomere-specific gene expression and hyoid bone differentiation in the mouse segmentation mutant, kreisler (kr). Development 117, 925-936.[Abstract]

Gavalas, A., Davenne, M., Lumsden, A., Chambon, P. and Rijli, F. M (1997). Role of Hoxa-2 in axon pathfinding and rostral hindbrain patterning. Development 124, 3693-3702.[Abstract]

Gavalas, A., Studer, M., Lumsden, 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]

Gilardi-Hebenstreit, P., Nieto, M. A., Frain, M., Mattei, M. G., Chestier, A., Wilkinson, D. G. and Charnay, P (1992). An Eph-related receptor protein tyrosine kinase gene segmentally expressed in the developing mouse hindbrain. Oncogene 7, 2499-2506.[Medline]

Gould, A., Morrison, A., Sproat, G., White, R. A. and Krumlauf, R (1997). Positive cross-regulation and enhancer sharing: two mechanisms for specifying overlapping Hox expression patterns. Genes Dev 11, 900-913.[Abstract/Free Full Text]

Graham, A., Heyman, I. and Lumsden, A (1993). Even-numberedrhombomeres control the apoptotic elimination of neural crest cells from odd-numbered rhombomeres in the chick hindbrain. Development 119, 233-245.[Abstract]

Graham, A., Francis-West, P., Brickell, P. and Lumsden, A (1994). The signalling molecule BMP4 mediates apoptosis in the rhombencephalic neural crest. Nature 372, 684-686.[Medline]

Graham, A. and Lumsden, A (1996). Interactions between rhombomeres modulate Krox-20 and follistatin expression in the chick embryo hindbrain. Development 122, 473-480.[Abstract]

Guthrie, S., Prince, V. and Lumsden, A (1993). Selective dispersal of avian rhombomere cells in orthotopic and heterotopic grafts. Development 118, 527-538.[Abstract]

Irving, C., Nieto, A., DasGupta, R., Charnay, P. and Wilkinson, D.G (1996). Progressive spatial restriction of Sek-1 and Krox-20 gene expression during hindbrain segmentation. Dev. Biol., 173, 26-38.[Medline]

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

Levi, G., Topilko, P., Schneider-Maunoury, S., Lasagna, M., Mantero, S., Cancedda, R. and Charnay, P (1996). Defective bone formation in Krox-20 mutant mice. Development 122, 113-120.[Abstract]

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 Guthrie, S (1991). Alternating patterns of cell surface properties and neural crest cell migration during segmentation of the chick hindbrain. Development 2, 9-15.

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

Lumsden, A. and Krumlauf, R (1996). Patterning the vertebrate neuraxis. Science 274, 1109-1115.[Abstract/Free Full Text]

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]

Maconochie, M. K., Nonchev, S., Studer, M., Chan, S. K., Popperl, H., Sham, M. H., Mann, R. S. and Krumlauf, R (1997). Cross-regulation in the mouse HoxB complex: the expression of Hoxb2 in rhombomere 4 is regulated by Hoxb1. Genes Dev 11, 1885-1895.[Abstract/Free Full Text]

Manzanares, M., Cordes, S., Kwan, C. T., Sham, M. H., Barsh, G. S. and Krumlauf, R (1997). Segmental regulation of Hoxb-3 by kreisler. Nature 387, 191-195.[Medline]

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]

Marshall, H., Nonchev, S., Sham, M. H., Muchamore, I., Lumsden, A. and Krumlauf, R (1992). Retinoic acid alters hindbrain Hox code and induces transformation of rhombomeres 2/3 into a 4/5 identity. Nature 360, 737-741.[Medline]

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]

Murphy, P. and Hill, 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]

Murphy, P., Davidson, D. R. and Hill, R. E (1989). Segment-specific expression of a homoeobox-containing gene in the mouse hindbrain. Nature 341, 156-159.[Medline]

Murphy, P., Topilko, P., Schneider-Maunoury, S., Seitanidou, T., Baron-Van Evercooren, A. and Charnay, P (1996). The regulation of Krox-20 expression reveals important steps in the control of peripheral glial cell development. Development 122, 2847-2857.[Abstract]

Niederlander, C. and Lumsden, A (1996). Late emigrating neural crest cells migrate specifically to the exit points of cranial branchiomotor nerves. Development 122, 2367-2374.[Abstract]

Nieto, M. A., Gilardi-Hebenstreit, P., Charnay, P. and Wilkinson, D. G (1992). A receptor protein tyrosine kinase implicated in the segmental patterning of the hindbrain and mesoderm. Development 116, 1137-1150.[Abstract]

Nonchev, S., Maconochie, M., Vesque, C., Aparicio, S., Ariza-McNaughton, L., Manzanares, M., Maruthainar, K., Kuroiwa, A., Brenner, S., Charnay, P. and Krumlauf, R (1996). The conserved role of Krox-20 in directing Hox gene expression during vertebrate hindbrain segmentation. Proc. Natl. Acad. Sci. USA 93, 9339-9345.[Abstract/Free Full Text]

Nonchev, S., Vesque, C., Maconochie, M., Seitanidou, T., Ariza-McNaughton, L., Frain, M., Marshall, H., Sham, M. H., Krumlauf, R. and Charnay, P (1996). Segmental expression of Hoxa-2 in the hindbrain is directly regulated by Krox-20. Development 122, 543-554.[Abstract]

Popperl, 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]

Prince, V. and Lumsden, A (1994). Hoxa-2 expression in normal and transposed rhombomeres: independent regulation in the neural tube and neural crest. Development 120, 911-923.[Abstract]

Rijli, F. M., Gavalas, A. and Chambon, P (1998). Segmentation and specification in the branchial region of the head: the role of the Hox selector genes. Int. J. Dev. Biol 42, 393-401.[Medline]

Schneider-Maunoury, S., Seitanidou, T., Charnay, P. and Lumsden, A (1997). Segmental and neuronal architecture of the hindbrain of Krox-20 mouse mutants. Development 124, 1215-1226.[Abstract]

Schneider-Maunoury, S., Topilko, P., Seitandou, 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]

Seitanidou, T., Schneider-Maunoury, S., Desmarquet, C., Wilkinson, D. G. and Charnay, P (1997). Krox-20 is a key regulator of rhombomere-specific gene expression in the developing hindbrain. Mech. Dev 65, 31-42.[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]

Sham, M. H., Vesque, C., Nonchev, S., Marshall, H., Frain, M., Gupta, R. D., Whiting, J., Wilkinson, D., Charnay, P. and Krumlauf, R (1993). The zinc finger gene Krox20 regulates HoxB2 (Hox2.8) during hindbrain segmentation. Cell 72, 183-196.[Medline]

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., Marshall, 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]

Swiatek, P. J. and Gridley, T (1993). Perinatal lethality and defects in hindbrain development in mice homozygous for a targeted mutation of the zinc finger gene Krox20. Genes Dev 7, 2071-2084.[Abstract/Free Full Text]

Theil, T., Frain, M., Gilardi-Hebenstreit, P., Flenniken, A., Charnay, P. and Wilkinson, D. G (1998). Segmental expression of the EphA4 ( Sek-1 ) receptor tyrosine kinase in the hindbrain is under transcriptional control of Krox-20. Development, 125, 443-452.[Abstract]

Topilko, P., Schneider-Maunoury, S., Levi, G., Baron-Van Evercooren, A., Chennoufi, A. B., Seitanidou, T., Babinet, C. and Charnay, P (1994). Krox-20 controls myelination in the peripheral nervous system. Nature 371, 796-799.[Medline]

Vesque, C., Maconochie, M., Nonchev, S., Ariza-McNaughton, L., Kuroiwa, A., Charnay, P. and Krumlauf, R (1996). Hoxb-2 transcriptional activation in rhombomeres 3 and 5 requires an evolutionarily conserved cis-acting element in addition to the Krox-20 binding site. EMBO J 15, 5383-5396.[Medline]

Wilkinson, D. G (1995). Genetic control of segmentation in the vertebrate hindbrain. Perspect Dev. Neurobiol 3, 29-38.[Medline]

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]

Wilkinson, D. G., Bhatt, S., Cook, M., Boncinelli, E. and Krumlauf, R (1989). Segmental expression of Hox-2 homoeobox-containing genes in the developing mouse hindbrain. Nature 341, 405-409.[Medline]

Wingate, R. J. and Lumsden, A (1996). Persistence of rhombomeric organisation in the postsegmental hindbrain. Development 122, 2143-2152.[Abstract]

Wizenmann, A. and Lumsden, A (1997). Segregation of rhombomeres by differential chemoaffinity. Mol. Cell Neurosci 9, 448-459.

Xu, Q., Alldus, G., Holder, N. and Wilkinson, D. G (1995). Expression of truncated Sek-1 receptor tyrosine kinase disrupts the segmental restriction of gene expression in the Xenopus and zebrafish hindbrain. Development 121, 4005-4016.[Abstract]

Zhang, M., Kim, H. J., Marshall, H., Gendron-Maguire, M., Lucas, D. A., Baron, A., Gudas, L. J., Gridley, T., Krumlauf, R. and Grippo, J. F (1994). Ectopic Hoxa-1 induces rhombomere transformation in mouse hindbrain. Development 120, 2431-2442.[Abstract/Free Full Text]


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