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Arnosti, D., Barolo, S., Levine, M. and Small, S (1996). The eve stripe 2 enhancer employs multiple modes of transcriptional synergy. Development 122, 205-214.[Abstract]

Capovilla, M., Eldon, E. and Pirotta, V (1992). The giant gene of Drosophila encodes a b-ZIP DNA-binding protein that regulates the expression of other segmentation genes. Development 114, 99-112.[Abstract]

Driever, W. and Nusslein-Volhard, C (1988). A gradient of bicoidprotein in Drosophila embryos. Cell 43, 59-69.

Driever, W. and Nusslein-Volhard, C (1988). The bicoid protein determines position in the Drosophila embryos in a concentration-dependent manner. Cell 54, 95-104.[Medline]

Driever, W. and Nusslein-Volhard, C (1989). The Bicoid protein is a positive regulator of hunchback transcription in the early Drosophila embryo. Nature 337, 138-143.[Medline]

Driever, W., Thoma, G. and Nusslein-Volhard, C (1989). Determination of spatial domains of zygotic gene expression in the Drosophila embryo by the affinity of binding sites for the bicoid morphogen. Nature 340, 363-367.[Medline]

Eldon, E. and Pirrotta, V (1991). Interactions of the Drosophila gap gene giant with maternal and zygotic patterning genes. Development 111, 367-378.[Abstract]

Frasch, M. and Levine, M (1987). Complementary patterns of even-skipped and fushi tarazu expression involve their differential regulation by a common set of segmentation genes in Drosophila. Genes Dev 1, 981-995.[Abstract/Free Full Text]

Frasch, M., Hoey, T., Rushlow, C., Doyle, H. and Levine, M (1987). Characterization and localization of the even-skipped protein of Drosophila. EMBO J 6, 749-759.[Medline]

Fujioka, M., Miskiewicz, P., Raj, L., Gulledge, A., Weir, M. and Goto, T (1996). Drosophilapaired regulates even-skipped expression through a composite binding site for the paired domain and the homeodomain. Development 122, 2697-2707.[Abstract]

Gaul, U. and J\212ckle, H (1990). Role of gap genes in early Drosophila development. Advances in Genetics 27, 239-275.[Medline]

Gergen, J. P. and Wieshaus, E (1985). The localized requirements for a gene affecting segmentation in Drosophila: Analysis of larvae mosaic for runt. Dev. Biol 109, 321-335.[Medline]

Goto, T., MacDonald, P. and Maniatis, T (1989). Early and late periodic patterns of even - skipped expression are controlled by distinct regulatory elements that respond to different spatial cues. Cell 57, 413-422.[Medline]

Hafen, E., Kuroiwa, A. and Gehring, W (1984). Spatial distribution of transcripts from the segmentation gene fushi tarazu during Drosophila embryonic development. Cell 37, 833-841.[Medline]

Han, K. and Manley, J (1993). Transcriptional repression by the Drosophila even-skipped protein: definition of a minimal repression domain. Genes Dev 7, 491-503.[Abstract/Free Full Text]

Harding, K., Hoey, T., Warrior, R. and Levine, M (1989). Autoregulatory and gap response elements of the even-skipped promoter of Drosophila. EMBO J 8, 1205-1212.[Medline]

Hulskamp, M., Pfeifle, C. and Tautz, D (1990). A morphogenetic gradient of hunchback protein organizes the expression of the gap genes Kruppel and knirps in the early Drosophila embryo. Nature 346, 577-579.[Medline]

Hulskamp, M., Lukowitz, W., Beermann, A., Glaser, G. and Tautz, D (1994). Differential regulation of target genes by different alleles of the segmentation gene hunchback in Drosophila. Genetics 138, 125-134.[Abstract]

Knipple, D., Seifert, E., Rosenberg, U., Preiss, A. and J\212ckle, H (1985). Spatial and temporal patterns of Kruppel gene expression in early Drosophila embryos. Nature 317, 40-44.[Medline]

Kosman, D. and Small, S (1997). Concentration-dependent patterning by an ectopic expression domain of the Drosophila gap gene knirps. Development 124, 1343-1354.[Abstract]

Kraut, R. and Levine, M (1991). Spatial regulation of the gap gene giant during Drosophila development. Development 111, 601-609.[Abstract]

Kraut, R. and Levine, M (1991). Mutually repressive interactions between the gap genes giant and Kruppel define middle body regions of the Drosophila embryo. Development 111, 611-621.[Abstract]

Macdonald, P., Ingham, P. and Struhl, G (1986). Isolation, structure, and expression of even-skipped : A second pair-rule gene of Drosophila containing a homeobox. Cell 47, 721-734.[Medline]

Margolis, J., Borowsky, M., Steingrimsson, E., Shim, C., Lengyel, J. andPosakony, J (1995). Posterior stripe expression of hunchback is driven from two promoters by a common enhancer element. Development 121, 3067-3077.[Abstract]

Mohler, J., Eldon, E. and Pirrotta, V (1989). A novel spatial transcription associated with the segmentation gene, giant , of Drosophila. EMBO J 8, 1539-1548.[Medline]

Pankratz, M., Busch, M., Hoch, M., Seifert, E. and J\212ckle, M (1992). Spatial control of the gap gene knirps in the Drosophila embryo by posterior morphogen system. Science 255, 986-989.[Abstract/Free Full Text]

Petschek, J., Perrimon, N. and Mahowald, A (1987). Region specific effects in l(1) giant embryos of Drosophila. Dev. Biol 119, 177-189.

Preiss, A., Rosenberg, U., Kienlin, A., Seifert, E. and J\212ckle, H (1985). Molecular genetics of Kruppel , a gene required for segmentation of the Drosophila embryo. Nature 313, 27-32.[Medline]

Reinitz, J. and Levine, M (1990). Control of the initiation of homeotic gene expression by the gap genes giant and tailless in Drosophila. Dev. Biol 140, 57-72.[Medline]

Ronchi, E., Treisman, J., Dostatni, N., Struhl, G. and Desplan, C (1993). Down-regulation of the Drosophila morphogen Bicoid by the Torso receptor-mediated signal transduction cascade. Cell 74, 347-355.[Medline]

Schulz, C. and Tautz, D (1994). Autonomous concentration-dependent activation and repression of Kruppel by hunchback in the Drosophila embryo. Development 120, 3043-3049.[Abstract]

Simpson-Brose, M., Treisman, J. and Desplan, C (1994). Synergy between the Hunchback and Bicoid morphogens is required for anterior patterning in Drosophila. Cell 78, 855-865.[Medline]

Small, S., Kraut, R., Hoey, T., Warrior, R. and Levine, M (1991). Transcriptional regulation of a pair-rule stripe in Drosophila. Genes Dev 5, 827-839.[Abstract/Free Full Text]

Small, S., Blair, A. and Levine, M (1992). Regulation of even-skipped stripe 2 in the Drosophila embryo. EMBO J 11, 4047-4057.[Medline]

Small, S., Arnosti, D. and Levine, M (1993). Spacing ensures autonomous expression of different stripe enhancers in the even-skipped promoter. Development 119, 767-772.[Abstract]

Small, S., Blair, A. and Levine, M (1996). Regulation of two pair-rule stripes by a single enhancer in the Drosophila embryo. Dev. Biol 175, 314-324.[Medline]

Stanojevic, D., Hoey, T. and Levine, M (1989). Sequence-specific DNA binding activities of gap proteins encoded by hunchback and Kruppel in Drosophila. Nature 341, 331-335.[Medline]

Stanojevic, D., Small, S. and Levine, M (1991). Regulation of a segmentation stripe by overlapping activators and repressors in Drosophila. Science 246, 1385-1387.

Struhl, G., Struhl, K. and MacDonald, P (1989). The gradient morphogen Bicoid is a concentration-dependent transcriptional activator. Cell 57, 1259-1273.[Medline]

Struhl, G., Johnston, P. and Lawrence, P (1992). Control of Drosophila body pattern by the hunchback morphogen gradient. Cell 69, 237-248.[Medline]

Struhl, G., Fitzgerald, K. and Greenwald, I (1993). Intrinsic activity of the Lin-12 and Notch intracellular domains in vivo. Cell 74, 331-345.[Medline]

St. Johnston, D. and Nusslein-Volhard, C (1992). The origin of pattern and polarity in the Drosophila embryo. Cell 68, 201-219.[Medline]

Tautz, D (1988). Regulation of the Drosophila segmentation gene hunchback by two maternal morphogenetic centres. Nature 332, 281-284.[Medline]

Vavra, S. and Carroll, S (1989). The zygotic control of Drosophila pair-rule gene expression. I. A search for new pair-rule regulatory loci. Development 107, 663-672.[Abstract]

Vinson, C., Sigler, P. and Mcknight, S (1989). Scissors-grip model for DNA recognition by a family of leucine zipper proteins. Science 246, 911-916.[Abstract/Free Full Text]




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This Article
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