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Akam, M (1987). The molecular basis for metameric pattern in the Drosophila embryo. Development 101, 1-22.[Abstract]

Ananthan, J., Baler, R., Morrissey, D., Zuo, J., Lan, Y., Weir, M. and Voellmy, R (1993). Synergistic activation of transcription is mediated by the N-terminal domain of Drosophila fushi tarazu homeoprotein and can occur without DNA binding by the protein. Mol. Cell. Biol 13, 1599-1609.[Abstract/Free Full Text]

Baldwin, C. T., Hoth, C. F., Amos, J. A., da-Silva, E. O. and Milunski, A (1992). An exonic mutation in HuP2 paired domain gene causes Waardenburg's syndrome. Nature 355, 637-638.[Medline]

Baumgartner, S. and Noll, M (1991). Network of interactions among pair-rule genes regulating paired expression during primordial segmentation of Drosophila. Mech. Dev 33, 1-18.

Bertuccioli, C., Fasano, L., Jun, S., Wang, S., Sheng, G. and Desplan, C (1996). In vivo requirement for the paired domain and homeodomain of the paired segmentation gene product. Development 122, 2673-2685.[Abstract]

Bopp, D., Burri, M., Baumgartner, S., Frigerio, G. and Noll, M (1986). Conservation of a large protein domain in the segmentation gene paired and in functionally related genes of Drosophila. Cell 47, 1033-1040.[Medline]

Bopp, D., Jamet, E., Baumgartner, S., Burri, M., and Noll, M (1989). Isolation of two tissue-specific Drosophila paired box genes, poxmeso and poxneuro. EMBO J 8, 3447-3457.[Medline]

Burri, M., Tromvoukis, Y., Bopp, D., Frigerio, G. and Noll, M (1989). Conservation of the paired domain in metazoans and its structure in three isolated human genes. EMBO J 8, 1183-1190.[Medline]

Cadigan, K. M., Grossniklaus, U. and Gehring, W. J (1994). Functional redundancy: the respective roles of the two sloppy paired genes in Drosophila segmentation. Proc. Natl. Acad. Sci. USA 91, 6324-6328.[Abstract/Free Full Text]

Cadigan, K. M., Grossniklaus, U. and Gehring, W. J (1994). Localized expression of sloppy paired protein maintains the polarity of Drosophila parasegments. Genes Dev 8, 899-913.[Abstract/Free Full Text]

Cai, J., Lan, Y., Appel, L. F. and Weir, M (1994). Dissection of the Drosophila paired protein: functional requirements for conserved motifs. Mech Dev 47, 139-150.[Medline]

Carroll, S. B. and Scott, M. P (1986). Zygotically active genes that affect the spatial expression of the fushi tarazu segmentation gene during early Drosophila embryogenesis. Cell 45, 113-126.[Medline]

Chalepakis, G., Wijnholds, J. and Gruss, P (1994). Pax-3-DNA interaction: flexibility in the DNA binding and induction of DNA conformational changes by paired domains. Nucleic Acids Res 22, 3131-3137.[Abstract/Free Full Text]

Coulter, D., Swaykus, E. A., Beran-Koehn, M. A., Goldberg, D., Wieschaus, E. and Schedl, P (1990). Molecular Analysis of odd-skipped , a zinc finger encoding segmentation gene with a novel pair-rule expression pattern. EMBO J 8, 3795-3804.

DiNardo, S., Sher, E., Heemskerk-Jongens, J., Kassis, J. A. and O'Farrell, P. H (1988). Two-tiered regulation of spatially patterned engrailed gene expression during Drosophila embryogenesis. Nature 332, 604-609.[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]

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]

Frigerio, G., Burri, M., Bopp, D., Baumgartner, S. and Noll, M (1986). Structure of the segmentation gene paired and the Drosophila PRD gene set as part of a gene network. Cell 47, 735-746.[Medline]

Fujioka, M., Jaynes, J. B. and Goto, T (1995). Early even-skipped stripes act as morphogenetic gradients at the single cell level to establish engrailed expression. Development 121, 4371-4382.[Abstract]

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]

Grossniklaus, U., Pearson, R. K. and Gehring, W. J (1992). The Drosophila sloppy paired locus encodes two proteins involved in segmentation that show homology to mammalian transcription factors. Genes Dev 6, 1030-1051.[Abstract/Free Full Text]

Gutjahr, T., Vanario-Alonso, C. E., Pick, L. and Noll, M (1994). Multiple regulatory elements direct the complex expression pattern of the Drosophila segmentation gene paired. Mech. Dev 48, 119-128.[Medline]

Han, K., Levine, M. S. and Manley, J. L (1989). Synergistic activation and repression of transcription by Drosophila homeobox proteins. Cell 56, 573-583.[Medline]

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

Hidalgo, A (1991). Interactions between segment polarity genes and the generation of the segmental pattern in Drosophila. Mech. Dev 35, 77-87.[Medline]

Hiromi, Y., Kuroiwa, A. and Gehring, W. J (1985). Control elements of the Drosophila segmentation gene fushi tarazu. Cell 43, 603-613.[Medline]

Hoey, T. and Levine, M (1988). Divergent homeobox proteins recognize similar DNA sequences in Drosophila. Nature 332, 858-861.[Medline]

Howard, K., Ingham, P. and Rushlow, C (1988). Region-specific alleles of the Drosophila segmentation gene hairy. Genes Dev 2, 1037-1046.[Abstract/Free Full Text]

Howard, K. R. and Struhl, G (1990). Decoding positional information: regulation of the pair-rule gene hairy. Development 110, 1223-1231.[Abstract/Free Full Text]

Ingham, P. W (1988). The molecular genetics of embryonic pattern formation in Drosophila. Nature 335, 25-34.[Medline]

Jiang, J., Hoey, T. and Levine, M (1991). Autoregulation of a segmentation gene in Drosophila: combinatorial interaction of the even-skipped homeo box protein with a distal enhancer element. Genes Dev 5, 265-277.[Abstract/Free Full Text]

Jun, S. and Desplan, C (1996). Cooperative interaction between paired domain and homeodomain. Development 122, 2639-2650.[Abstract]

Klingler, M. and Gergen, J. P (1993). Regulation of runt transcription by Drosophila segmentation genes. Mech. Dev 43, 3-19.[Medline]

Li, X., and Noll, M (1993). Role of the gooseberry gene in Drosophila embryos: maintenance of wingless expression by a wingless - gooseberry autoregulatory loop. EMBO J 12, 4499-4509.[Medline]

Li, X. and Noll, M (1994). Evolution of distinct developmental functions of three Drosophila genes by acquisition of different cis-regulatory regions. Nature 367, 83-87.[Medline]

Maier, D., Preiss, A. and Powell, J. R (1990). Regulation of the segmentation gene fushi tarazu has been functionally conserved in Drosophila. EMBO J 9, 3957-3966.[Medline]

Manoukian, A. S. and Krause, H. M (1992). Concentration-dependent activities of the even-skipped protein in Drosophila embryos. Genes Dev 6, 1740-1751.[Abstract/Free Full Text]

Manoukian, A. S. and Krause, H. M (1993). Control of segmental asymmetry in Drosophila embryos. Development 118, 785-796.[Abstract]

Miskiewicz, P., Morrissey, D., Lan, Y., Raj, L., Kessler, S., Fujioka, M., Goto, T. and Weir, M (1996). Both the paired domain and homeodomain are required for in vivo function of Drosophila Paired. Development 122, 2709-2718.[Abstract]

Morrissey, D., Askew, D., Raj, L. and Weir, M (1991). Functional dissection of the paired segmentation gene in Drosophila embryos. Genes Dev 5, 1684-1696.[Abstract/Free Full Text]

Nusslein-Volhard, C. and Wieschaus, E (1980). Mutations affecting segment number and polarity in Drosophila. Nature 287, 795-801.[Medline]

Pankratz, M. J., Seifert, E., Gerwin, N., Billi, B., Nauber, U. and Jackle, H (1990). Gradients of Kruppel and knirps gene products direct pair-rule gene stripe patterning in the posterior region of the Drosophila embryo. Cell 61, 309-317.[Medline]

Riddihough, G. and Ish-Horowicz, D (1991). Individual stripe regulatory elements in the Drosophila hairy promoter respond to maternal, gap, and pair-rule genes. Genes Dev 5, 840-854.[Abstract/Free Full Text]

Rubin, G. M. and Spradling, A. C (1982). Genetic transformation of Drosophila with transposable element vectors. Science 218, 348-353.[Abstract/Free Full Text]

Sackerson, C (1995). Pattern of conservation and divergence at the even-skipped locus of Drosophila. Mech. Dev 51, 199-215.[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]

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

Tassabehji, M., Read, A. P., Newton, A. E., Harris, R., Balling, R., Gruss,P. and Strachan, T (1992). Waardenburg's syndrome patients have mutations in the human homologue of the Pax-3 paired box gene. Nature 355, 635-636.[Medline]

Tautz, D. and Pfeifle, C (1989). A non-radioactive in situ hybridization method for the localization of specific RNAs in Drosophila embryos reveals translational control of the segmentation gene hunchback. Chromosoma 98, 81-85.[Medline]

Thummel, C. S., Boulet, A. M. and Lipshitz, H. D (1988). Vectors for Drosophila P-element-mediated transformation and tissue culture transfection. Gene 74, 445-456.[Medline]

Treisman, J., Harris, E. and Desplan, C (1991). The paired box encodes a second DNA-binding domain in the paired homeo domain protein. Genes Dev 5, 594-604.[Abstract/Free Full Text]

Walther, C., Guenet, J.-L., Simon, D., Deutsch, U., Jostes, B., Goulding, M. D., Plachov, D., Balling, R. and Gruss, P (1991). Pax: A murine multigene family of paired box-containing genes. Genomics 11, 424-434.[Medline]

Warrior, R. and Levine, M (1990). Dose-dependent regulation of pair-rule stripes by gap proteins and the initiation of segment polarity. Development 110, 759-767.[Abstract/Free Full Text]

Wilson, A. C., Ochman, H. and Prager, E. M (1987). Molecular time scale for evolution. Trends In Genetics 3, 241-247.

Wilson, D., Sheng, G., Lecuit, T., Dostatni, N. and Desplan, C (1993). Cooperative dimerization of paired class homeo domains on DNA. Genes Dev 7, 2120-2134.[Abstract/Free Full Text]

Wilson, D. S., Guenther, B., Desplan, C. and Kuriyan, J (1995). High resolution crystal structure of a paired (Pax) class cooperative homeodomain dimer on DNA. Cell 82, 709-720.[Medline]

Xu, W., Rould, M. A., Jun, S., Desplan, C. and Pabo, C. O (1995). Crystal structure of a paired domain-DNA complex at 2.5 A resolution reveals structural basis for Pax developmental mutations. Cell 80, 639-650.[Medline]

Yu, Y. and Pick, L (1995). Non-periodic cues generate seven ftz stripes in the Drosophila embryo. Mech. Dev 50, 163-175.[Medline]


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