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Beck, F., Erler, T., Russell, A. and James, R (1995). Expression of Cdx -2 in the mouse embryo and placenta: Possible role in patterning of the extra-embryonic membranes. Dev. Dyn 204, 219-227.[Medline]

Charite, J., De Graaff, W., Shen, S. and Deschamps, J (1994). Ectopic expression of Hoxb-8 causes duplication of the ZPA in the forelimb and homeotic transformation of axial structures. Cell 78, 589-601.[Medline]

Charite, J., De Graaff, W., Vogels, R., Meijlink, F. and Deschamps, J (1995). Regulation of the Hoxb-8 gene: Synergism between multimerized cis -acting elements increases responsiveness to positional information. Dev. Biol 171, 294-305.[Medline]

Chawengsaksophak, K., James, R., Hammond, V. E., K\232ntgen, F. and Beck, F (1997). Homeosis and intestinal tumours in Cdx2 mutant mice. Nature 386, 84-87.[Medline]

Dearolf, C. R., Topol, J. and Parker, C. S (1989). The caudal gene product is a direct activator of fushi tarazu transcription during Drosophila embryogenesis. Nature 341, 340-343.[Medline]

Deschamps, J. and Wijgerde, M (1993). Two phases in the establishment of HOX expression domains. Dev. Biol 156, 473-480.[Medline]

Doniach, T (1993). Planar and vertical induction of anteroposterior pattern during the development of the amphibian central nervous system. J. Neurobiol 24, 1256-1275.[Medline]

Epstein, M., Pillemer, G., Yelin, R., Yisraeli, J. K. and Fainsod, A (1997). Patterning of the embryo along the anterior-posterior axis: the role of the caudal genes. Development 124, 3805-3814.[Abstract]

Gamer, L. W. and Wright, C. V. E (1993). Murine Cdx-4 bears striking similarities to the Drosophilacaudal gene in its homeodomain sequence and early expression pattern. Mech. Devel 43, 71-81.[Medline]

Gould, A (1997). Functions of mammalian Polycomb group and trithorax group related genes. Curr. Opin. Genet. Dev 7, 488-494.[Medline]

Gould, A., Morrison, A., Sproat, G., White, R. A. H. 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]

Grapin-Botton, A., Bonnin, M.-A., McNaughton, L. A., Krumlauf, R. and Le Douarin, N. M (1995). Plasticity of transposed rhombomeres: Hox gene induction is correlated with phenotypic modifications. Development 121, 2707-2721.[Abstract]

Grapin-Botton, A., Bonnin, M.-A. and Le Douarin, N. M (1997). Hox gene induction in the neural tube depends on three parameters: competence, signal supply and paralogue group. Development 124, 849-859.[Abstract]

Isaacs, H. V., Pownall, M. E. and Slack, J. M. W (1998). Regulation of Hox gene expression and posterior development by the Xenopus caudal homologue Xcad3. EMBO J 17, 3413-3427.[Medline]

Itasaki, N., Sharpe, J., Morrison, A. and Krumlauf, R (1996). Reprogramming Hox expression in the vertebrate hindbrain: Influence of paraxial mesoderm and rhombomere transposition. Neuron 16, 487-500.[Medline]

La Rosee, A., H\212der, T., Taubert, H., Rivera-Pomar, R. and J\212ckle, H (1997). Mechanism and Bicoid-dependent control of hairy stripe 7 expression in the posterior region of the Drosophila embryo. EMBO J 16, 4403-4411.[Medline]

Macdonald, P. M. and Struhl, G (1986). A molecular gradient in early Drosophila embryos and its role in specifying the body pattern. Nature 324, 537-545.[Medline]

Maconochie, M. K., Nonchev, S., Studer, M., Chan, S.-K., P\232pperl, H., Sham, M. H., Mann, R. S. and Krumlauf, R (1997). Cross-regulation inthe mouse HoxB complex: the expression of Hoxb2 in rhombomere 4 is regulated by Hoxb1. Genes Dev 11, 1885-1895.[Abstract/Free Full Text]

Margalit, Y., Yarus, S., Shapira, E., Gruenbaum, Y. and Fainsod, A (1993). Isolation and characterization of target sequences of the chicken CdxA homeobox gene. Nucl. Acids Res 21, 4915-4922.[Abstract/Free Full Text]

McGinnis, W. and Krumlauf, R (1992). Homeobox genes and axial patterning. Cell 68, 283-302.[Medline]

Meyer, B. I. and Gruss, P (1993). Mouse Cdx-1 expression during gastrulation. Development 117, 191-203.[Abstract]

Mlodzik, M. and Gehring, W. J (1987). Hierarchy of the genetic interactions that specify the anteroposterior segmentation pattern of the Drosophila embryo as monitored by caudal protein expression. Development 101, 421-435.[Abstract]

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]

Pownall, M. E., Tucker, A. S., Slack, J. M. W. and Isaacs, H. V (1996). eFGF , xcad3 and Hox genes form a molecular pathway that establishes the anteroposterior axis in Xenopus. Development 122, 3881-3892.[Abstract]

Quandt, K., Frech, K., Karas, H., Wingender, E. and Werner, T (1995). MatInd and MatInspector: new fast and versatile tools for detection of consensus matches in nucleotide sequence data. Nucl. Acids Res 23, 4878-4884.[Abstract/Free Full Text]

Rivera-Pomar, R., Lu, X., Perrimon, N., Taubert, H. and J\212ckle, H (1995). Activation of posterior gap gene expression in the Drosophila blastoderm. Nature 376, 253-256.[Medline]

Ruiz i Altaba, A (1993). Induction and axial patterning of the neural plate: planar and vertical signals. J. Neurobiol 24, 1276-1304.[Medline]

Schulz, C. and Tautz, D (1995). Zygotic caudal regulation by hunchback and its role in abdominal segment formation of the Drosophila embryo. Development 121, 1023-1028.[Abstract]

Schumacher, A. and Magnuson, T (1997). Murine Polycomb -and trithorax -group genes regulate homeotic pathways and beyond. Trends Genet 13, 167-170.

Shashikant, C. S., Bieberich, C. J., Belting, H.-G., Wang, J. C. H., Borbely, M. A. and Ruddle, F. H (1995). Regulation of Hoxc-8 during mouse embryonic development: identification and characterization of critical elements involved in early neural tube expression. Development 121, 4339-4347.[Abstract]

Shen, W.-F., Rozenfeld, S., Lawrence, H. J. and Largman, C (1997). The Abd-B-like Hox homeodomain proteins can be subdivided by the ability to form complexes with Pbx1a on a novel DNA target. J. Biol. Chem 272, 8198-8206.[Abstract/Free Full Text]

Subramanian, V., Meyer, B. I. and Gruss, P (1995). Disruption of the murine homeobox gene Cdx1 affects axial skeletal identities by altering the mesodermal expression domains of Hox genes. Cell 83, 641-653.[Medline]

Suh, E., Chen, L., Taylor, J. and Traber, P. G (1994). A homeodomain protein related to caudal regulates intestine-specific gene transcription. Mol. Cell. Biol 14, 7340-7351.[Abstract/Free Full Text]

Taylor, J. K., Levy, T., Suh, E. R. and Traber, P. G (1997). Activation of enhancer elements by the homeobox gene Cdx2 is cell line specific. Nucl. Acids Res 25, 2293-2300.[Abstract/Free Full Text]

Vogels, R., Charite, J., De Graaff, W. and Deschamps, J (1993). Proximal cis -acting elements cooperate to set Hoxb-7 (Hox-2.3) expression boundaries in transgenic mice. Development 118, 71-82.[Abstract]

Waring, D. A. and Kenyon, C (1990). Selective silencing of cell communication influences anteroposterior pattern formation in C. elegans. Cell 60, 123-131.[Medline]

Waring, D. A. and Kenyon, C (1991). Regulation of cellular responsiveness to inductive signals in the developing C. elegans nervous system. Nature 350, 712-715.[Medline]




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