even-skipped


REFERENCES

Ahringer, J. (1996). Posterior patterning by the Caenorhabditis elegans even-skipped homolog vab-7. Genes Dev 10: 1120-30

Ahringer, J. (1997). Maternal control of a zygotic patterning gene in Caenorhabditis elegans. Development 124(19): 3865-3869.

Andrioli, L. P. M., et al. (2002). Anterior repression of a Drosophila stripe enhancer requires three position-specific mechanisms. Development 129: 4931-4940. 12397102

Arnosti, D. N., et al. (1996). The eve stripe 2 enhancer employs multiple modes of transcriptional synergy. Development 122: 205-214

Austin, R. J. and Biggin, M. D. (1995). A domain of the even-skipped protein represses transcription by preventing TFIID binding to a promoter: repression by cooperative blocking. Mol Cell Biol 15: 4683-4693

Azpiazu, N., et al. (1996). Segmentation and specification of the Drosophila mesoderm. Genes Dev. 10: 3183-94

Bahri, S. M., Chia, W. and Yang, X. (2001). The Drosophila homolog of human AF10/AF17 leukemia fusion genes (Dalf ) encodes a zinc finger/leucine zipper nuclear protein required in the nervous system for maintaining EVE expression and normal growth. Mech. Dev. 100: 291-301. 11165485

Baumgartner, S.,Martin, D.,Hagios, C. and Chiquet-Ehrismann, R. (1994). Tenm, a Drosophila gene related to tenascin, is a new pair-rule gene. EMBO J 13: 3728-3740.

Beck, C. W. and Slack, J. M. W. (1998). Analysis of the developing Xenopus tail bud reveals separate phases of gene expression during determination and growth. Mech. Dev. 72(1-2): 41-52.

Biggin, M. D. and McGinnis, W. (1997). Regulation of segmentation and segmental identity by Drosophila homeoproteins: the role of DNA binding in functional activity and specificity. Development 124(22): 4425-4433.

Binari, R. and Perrimon, N. (1994). Stripe-specific regulation of pair-rule genes by hopscotch, a putative Jak family tyrosine kinase in Drosophila. Genes Dev 8: 300-12

Binner, P. and Sauder, K. (1997). Pair-rule patterning in the honeybee Apis mellifera: expression of even-skipped combines traits known from beetles and fruitfly. Dev. Genes Evol. 206: 447-454

Boffelli, D., et al. (2003). Phylogenetic shadowing of primate sequences to find functional regions of the human genome. Science 299: 1391-1394. 12610304

Bouchard, M., St-Amand, J. and Cote, S. (2000). Combinatorial activity of pair-rule proteins on the Drosophila gooseberry early enhancer. Dev. Biol. 222: 135-146

Briata, P., et al. (1995). Transcriptional repression by the human homeobox protein EVX1 in transfected mammalian cells. J. Biol. Chem. 270(46): 27695-701.

Briata, P., et al. (1997). Mapping of a potent transcriptional repression region of the human homeodomain protein EVX1. FEBS Lett. 402(2-3): 131-5.

Broihier, H. T. and Skeath, J. B. (2002). Drosophila homeodomain protein dHb9 directs neuronal fate via crossrepressive and cell-nonautonomous mechanisms Neuron 35: 39-50. 12123607

Brown S. J., Hilgenfeld, R. B. and Denell, R.E. (1995). The beetle Tribolium castaneum has a fushi tarazu homolog expressed in stripes during segmentation. Proc. Natl. Acad. Sci. 91 (26): 12922-12926.

Brown, S. J., et al. (1996). Molecular characterization and embryonic expression of the even-skipped ortholog of Tribolium castaneum. Mech. Dev. 61 (1-2): 165-173.

Brulfert, A., Monnot, M. J. and Geraudie, J. (1998). Expression of two even-skipped genes eve1 and evx2 during zebrafish fin morphogenesis and their regulation by retinoic acid. Int. J. Dev. Biol. 42(8): 1117-24.

Bullock, S. L. and Ish-Horowicz, D. (2001). Conserved signals and machinery for RNA transport in Drosophila oogenesis and embryogenesis. Nature 414(6864): 611-6. 11740552

Bullock, S. L., et al. (2004). Differential cytoplasmic mRNA localisation adjusts pair-rule transcription factor activity to cytoarchitecture in dipteran evolution. Development 131: 4251-4261. 15280214

Carroll, S.B. and Scott, M.P. (1988). Zygotically active genes that affect the spatial expression of fushi tarazu segmentation gene during early Drosophila embryogenesis. Cell 5: 1611-21

Chiang, C. and Beachy, C. A. (1995). Expression of a novel Toll-like gene spans the parasegment boundary and contributes to hedgehog function in the adult eye of Drosophila. Mech. Dev. 47(3): 225--239.

Choksi, S. P., et al. (2006). Prospero acts as a binary switch between self-renewal and differentiation in Drosophila neural stem cells. Dev. Cell 11(6): 775-89. Medline abstract: 17141154

Chu-LaGraff, Q., et al. (1995). huckebein specifies aspects of CNS precursor identity required for motoneuron axon pathfinding. Neuron 15: 1041-1051

Clyde, D. E., Corado, M. S., Wu, X., Pare, A., Papatsenko, D. and Small, S. (2003). Self-organizing system of repressor gradients establishes segmental complexity in Drosophila. Nature 426(6968): 849-53. 14685241

Collins, R. T., et al. (1999). Osa associates with the Brahma chromatin remodeling complex and promotes the activation of some target genes. EMBO J. 18: 7029-7040.

Crozatier, M., et al. (1996). Collier, a novel regulator of Drosophila head development, is expressed in a single mitotic domain. Curr. Biol. 6(6): 707-718.

Crozatier, M., et al. (1999). Head versus trunk patterning in the Drosophila embryo; collier requirement for formation of the intercalary segment. Development 126: 4385-4394.

Cui, X. and Doe, C. Q. (1995). The role of the cell cycle and cytokinesis in regulating neuroblast sublineage gene expression in the Drosophila CNS. Development 121: 3233-3243

Damen, W. G. M., Weller, M. and Tautz, D. (2000). Expression patterns of hairy, even-skipped, and runt in the spider Cupiennius salei imply that these genes were segmentation genes in a basal arthropod. Proc. Natl. Acad. Sci. 97: 4515-4519.

Deshpande, G., et al. (1999). Novel functions of nanos in downregulating mitosis and transcription during the development of the Drosophila germline. Cell 99: 271-281.

Doe, C.Q., Chu-LaGraff, Q., Wright, D.M. and Scott, M.P. (1991). The prospero gene specifies cell fates in the Drosophila central nervous system. Cell 65: 451-464

Dolle, P., Fraulob, V. and Duboule, D. (1994). Developmental expression of the mouse Evx-2 gene: relationship with the evolution of the HOM/Hox complex. Dev. Suppl. 143-53.

Dormand, E.-L. and Brand, A. H. (1998). Runt determines cell fates in the Drosophila embryonic CNS. Development 125: 1659-1667.

Dréan, B. S.-Le, et al. (1998). Dynamic changes in the functions of Odd-skipped during early Drosophila embryogenesis. Development 125: 4851-4861

Duman-Scheel, M. and Patel, N. H. (1999). Analysis of molecular marker expression reveals neuronal homology in distantly related arthropods. Development 126: 2327-2334.

Dush M. K. and Martin, G. R. (1992). Analysis of mouse Evx genes: Evx-1 displays graded expression in the primitive streak. Dev Biol 151: 273-87

Esmaeili, B., et al. (2002). The C. elegans even-skipped homologue, vab-7, specifies DB motoneuron identity and axon trajectory. Development 129: 853-862. 11861469

Ferrier, D. E. K., et al. (2001). Amphioxus Evx genes: Implications for the evolution of the midbrain-hindbrain boundary and the chordate tailbud. Dev. Bio. 237: 270-281

Fire, A., Xu, S., Montgomery, M., Kostas, S.A., Driver, S.E., and Mello, C.C. (1998). Potent and specific genetic interference by double-stranded RNA in Caenorhabditis elegans. Nature 391: 806-811.

Frasch, M., et al. (1987). Characterization and localization of the even-skipped protein. EMBO J 6: 749-59

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

Fujioka, M., et al. (1999). Analysis of an even-skipped rescue transgene reveals both composite and discrete neuronal and early blastoderm enhancers, and multi-stripe positioning by gap gene repressor gradients. Development 126: 2527-2538.

Fujioka, M., et al. (2002). The repressor activity of Even-skipped is highly conserved, and is sufficient to activate engrailed and to regulate both the spacing and stability of parasegment boundaries. Development 129: 4411-4421. 12223400

Fujioka, M., et al. (2003). Even-skipped, acting as a repressor, regulates axonal projections in Drosophila. Development 130: 5385-5400. 13129849

Fujioka, M., et al. (2005). Embryonic even skipped-dependent muscle and heart cell fates are required for normal adult activity, heart function, and lifespan. Circ. Res. 97(11): 1108-14. 16239588

Garces, A. and Thor, S. (2006). Specification of Drosophila aCC motoneuron identity by a genetic cascade involving even-skipped, grain and zfh1. Development 133: 1445-1455. 16540509

Gofflot, F., Hall, M. and Morriss-Kay, G. M. (1997). Genetic patterning of the developing mouse tail at the time of posterior neuropore closure. Dev. Dyn. 210(4): 431-45.

Goltsev, Y., et al. (2004). Different combinations of gap repressors for common stripes in Anopheles and Drosophila embryos. Dev. Biol. 275: 435-446. 15501229

Gomez, M. R. and Bate, M. (1997). Segregation of myogenic lineages in Drosophila requires numb. Development 124(23): 4857-4866.

Gorfinkiel, N., Sanchez, L. and Guerrero, I. (1999). Drosophila terminalia as an appendage-like structure. Mech. Dev. 86(1-2): 113-23. 10446270

Grbic, M. and Strand, M. R. (1998). Shifts in the life history of parasitic wasps correlate with pronounced alterations in early development. Proc. Natl. Acad. Sci. 95(3): 1097-1101.

Gutjahr, T. Frei, E. and Noll, M. (1993). Complex regulation of early paired expression: initial activation by gap genes and pattern modulation by pair-rule genes. Development 117: 609-23

Han, K. and Manley, J. L. (1993). Transcriptional repression by the Drosophila even-skipped protein: definition of a minimal repression domain. Genes Dev 7: 491-503

Halfon, M. S., et al. (2000). Ras pathway specificity is determined by the integration of multiple signal-activated and tissue-restricted transcription factors. Cell 103: 63-74.

Hérault, Y., et al. (1996). Function of the Evx-2 in the morphogenesis of vertebrate limbs. EMBO J. 15: 6727-38.

Hertz, G. Z. and Stormo, G. D. (1999). Identifying DNA and protein patterns with statistically significant alignments of multiple sequences. Bioinformatics 15: 563-577. 10487864

Hughes, C. L. and Kaufman, T. C. (2002). Exploring myriapod segmentation: The expression patterns of even-skipped, engrailed, and wingless in a Centipede. Dev. Bio. 247: 47-61. 12074551

Hughes, S. C. and Krause, H. M. (2001). Establishment and maintenance of parasegmental compartments. Development 128: 1109-1118. 11245576

Hirsch, J. A. and Aggarwal, A. K. (1995). Structure of the even-skipped homeodomain complexed to AT-rich DNA: new perspectives on homeodomain specificity. EMBO J. 14(24): 6280-91. 8557047

Ikeshima-Kataoka, H., et al. (1997). Miranda directs Prospero to a daughter cell during Drosophila asymmetric divisions. Nature 390(6660): 625-629.

Ingham, P.W., Baker, N.E. and Martinez-Arias, A. (1988). Regulation of segment polarity genes in the Drosophila blastoderm by fushi tarazu and even-skipped. Nature 331: 73-78

Jack, T. and McGinnis, W. (1990). Establishment of the Deformed expression stripe requires the combinatorial action of coordinate gap and pair-rule proteins. EMBO J 9: 1187-98

Jagla, K., et al. (1997). ladybird, a new component of the cardiogenic pathway in Drosophila required for diversification of heart precursors. Development 124: 3471-3479.

Jagla, T., et al. (2002). Cross-repressive interactions of identity genes are essential for proper specification of cardiac and muscular fates in Drosophila. Development 129: 1037-1047. 11861486

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: 265-77

Jones, F. S., et al. (1992). Activation of the cytotactin promoter by the homeobox-containing gene Evx-1. Proc. Natl. Acad. Sci. 89 (6): 2091-2095.

Jungblut, B. and Sommer, R. J. (2001). The nematode even-skipped homolog vab-7 regulates gonad and vulva position in Pristionchus pacificus. Development 128: 253-261

Junion, G., Bataille, L., Jagla, T., Da Ponte, J. P., Tapin, R. and Jagla, K. (2007). Genome-wide view of cell fate specification: ladybird acts at multiple levels during diversification of muscle and heart precursors. Genes Dev. 21(23): 3163-80. PubMed citation: 18056427

Kankel, M. W., Duncan, D. M. and Duncan, I. (2004). A screen for genes that interact with the Drosophila pair-rule segmentation gene fushi tarazu. Genetics 168(1): 161-80. 15454535

Katsani, K. R., Hajibagheri, M. A. and Verrijzer, C. P. (1999). Co-operative DNA binding by GAGA transcription factor requires the conserved BTB/POZ domain and reorganizes promoter topology. EMBO J. 18(3): 698-708.

Kennerdell, J. R. and Carthew, R. W. (1998). Use of dsRNA-mediated genetic interference to demonstrate that frizzled and frizzled 2 act in the Wingless pathway. Cell 95: 1017-1026.

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

Kmita, M., et al. (2002). Evolutionary conserved sequences are required for the insulation of the vertebrate Hoxd complex in neural cells Development 129: 5521-5528. 12403721

Knirr, S. and Frasch, M. (2001). Molecular integration of inductive and mesoderm-intrinsic inputs governs even-skipped enhancer activity in a subset of pericardial and dorsal muscle progenitors. Dev. Bio. 238: 13-26

Kobayashi, M., et al. (2001). Groucho augments the repression of multiple Even skipped target genes in establishing parasegment boundaries. Development 128(10): 1805-1815. 11311161

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

Kusch, T. and Reuter, R. (1999). Functions for Drosophila brachyenteron and forkhead in mesoderm specification and cell signalling. Development 126: 3991-4003.

Lan, Y., et al. (1998). Plasticity of Drosophila Paired function. Dev. Genet. 23(1): 45-55.

Landgraf, M., et al. (1999). even-skipped determines the dorsal growth of motor axons in Drosophila. Neuron 22(1): 43-52.

Lawrence, P.A., Bodmer, R. and Vincent, J.P. (1995). Segmental patterning of heart precursors in Drosophila. Development 121: 4303-4308

Lecuit, T., Samanta, R. and Wieschaus, E. (2002). Slam encodes a developmental regulator of polarized membrane growth during cleavage of the Drosophila embryo. Dev. Cell 2: 425-436. 11970893

Li, C. and Manley. J. L. (1998). Even-skipped represses transcription by binding TATA binding protein and blocking the TFIID-TATA box interaction. Mol. Cell. Biol. 18(7): 3771-3781.

Liang, Z. and Biggin, M. D. (1998). Eve and Ftz regulate a wide array of genes in blastoderm embryos: the selector homeoproteins directly or indirectly regulate most genes in Drosophila. Development 125(22): 4471-4482

Liu, P. Z. and Kaufman, T. C. (2005). even-skipped is not a pair-rule gene but has segmental and gap-like functions in Oncopeltus fasciatus, an intermediate germband insect. Development 132(9): 2081-92 . 1578845

Ludwig, M. Z. and Kreitman, M. (1995). Evolutionary dynamics of the enhancer region of even-skipped in Drosophila. Mol Biol Evol 12: 1002-1011

Ludwig, M., Patel, N. and Kreitman, M. (1998). Functional analysis of eve stripe 2 enhancer evolution in Drosophila: rules governing conservation and change. Development 125(5): 949-958.

Ludwig, M. Z., Bergman, C. Patel, N. H. and Kreitman, M. (2000). Evidence for stabilizing selection in a eukaryotic enhancer element. Nature 403(6769): 564-7. 10676967

Ludwig, M. Z., Palsson, A., Alekseeva, E., Bergman, C. M., Nathan, J. and Kreitman, M. (2005). Functional evolution of a cis-regulatory module. PLoS Biol. 3(4): e93. 15757364

Ma, Y., et al. (1998). Gene regulatory functions of Drosophila Fish-hook, a high mobility group domain Sox protein. Mech. Dev. 73(2): 169-182.

Mannervik, M. and Levine, M. (1999). The Rpd3 histone deacetylase is required for segmentation of the Drosophila embryo. Proc. Natl. Acad. Sci. 96(12): 6797-801.

Manoukian, A. S. and Krause, H. M. (1992) Concentration-dependent activities of the even-skipped protein in Drosophila embryos. Genes Dev 6: 1740-51

Martinez-Arias, A. and White, R.A.H. (1988). Ultrabithorax and engrailed expression in Drosophila embryos mutant for segmentation genes of the pair-rule class. Development 102: 325-38

McDonald, J. A., et al. (2003). Specification of motoneuron fate in Drosophila: Integration of positive and negative transcription factor inputs by a minimal eve enhancer. J. Neurobiol. 57(2): 193-203. 14556285

McKeon, J., et al. (1994). Mutations in some Polycomb group genes of Drosophila interfere with regulation of segmentation genes. Mol Gen Genet 244: 474-483

Moran-Rivard, L., et al. (2001). Evx1 is a postmitotic determinant of V0 interneuron identity in the spinal cord. Neuron 29: 385-399. 11239430

Nambu, P. A. and Nambu, J. R. (1996). The Drosophila fish-hook gene encodes a HMG domain protein essential for segmentation and CNS development. Development 122: 3467-75

Nibu, Y. and Levine, M. S. (2001). CtBP-dependent activities of the short-range Giant repressor in the Drosophila embryo. Proc. Natl. Acad. Sci. 98: 6204-6208. 11353860

Niswander, L. and Martin, G. R. (1993). FGF-4 regulates expression of Evx-1 in the developing mouse limb. Development 119: 287-94

Ohtsuki, S. and Levine, M. (1998). GAGA mediates the enhancer blocking activity of the eve promoter in the Drosophila embryo. Genes Dev. 12(21): 3325-30.

Park, Y. et al. (1998). Drosophila homeobox gene eve enhances trol, an activator of neuroblast proliferation in the larval CNS. Dev. Genet. 23(3): 247-57.

Park, Y., et al. (2001). even skipped is required to produce a trans-acting signal for larval neuroblast proliferation that can be mimicked by ecdysone. Development 128: 1899-1909. 11311169

Patel, N. H., Ball, E. E. and Goodman, C. S. (1992). Changing role of even-skipped during the evolution of insect pattern formation. Nature 357: 339-42

Perrimon, N., et al. (1996). Zygotic lethal mutations with maternal effect phenotypes in Drosophila melanogaster. II. Loci on the second and third chromosomes identified by P-element-induced mutations. Genetics 144(4): 1681-92.

Pocock, R., et al. (2004). A regulatory network of T-box genes and the even-skipped homologue vab-7 controls patterning and morphogenesis in C. elegans. Development 131: 2373-2385. 15102704

Pym, E. C. G., et al. (2006). The homeobox transcription factor Even-skipped regulates acquisition of electrical properties in Drosophila neurons. Neural Development 1: 3. Medline abstract: 17147779

Raj, L., et al. (2000). Targeted localized degradation of Paired protein in Drosophila development. Curr. Biol. 10: 1265-1272. 11069107

Riechmann, V., et al. (1997). Control of cell fates and segmentation in the Drosophila mesoderm. Development 124(15): 2915-2922.

Rohr, K. B., Tautz, D. and Sander, K. (1999). Segmentation gene expression in the mothmidge Clogmia albipunctata (Diptera, psychodidae) and other primitive dipterans. Dev. Genes Evol. 209(3): 145-54.

Russell, S. R. H., et al. (1996). The Dichaete gene of Drosophila melanogaster encodes a SOX-domain protein required for embryonic segmentation. Development 122: 3669-76

Sackerson, C., Fujioka, M. and Goto, T. (1999). The even-skipped locus is contained in a 16-kb chromatin domain. Dev. Biol. 211(1): 39-52.

Schmidt, H., et al. (1997). The embryonic central nervous system lineages of Drosophila melanogaster. II. Neuroblast lineages derived from the dorsal part of the neuroectoderm. Dev. Biol. 189(2): 186-204.

Schoppmeier, M. and Schr–der, R. (2005). Maternal torso signaling controls body axis elongation in a short germ insect. Current Biol. 15: 2131-2136. 16332539

Schubert, F. R., et al. (1995). Expression of the novel murine homeobox gene Sax-1 in the developing nervous system. Mech. Dev. 51(1): 99-114.

Singer, J. B., et al. (1996). Drosophila brachyenteron regulates gene activity and morphogenesis in the gut. Development 122: 3703-18

Small, S., Blair, A. and Levine, M. (1992). Regulation of even-skipped stripe 2 in the Drosophila embryo. EMBO J 11: 4047-57

Small, S., Arnosti, D. N. and Levine. M. (1993). Spacing ensures autonomous expression of different stripe enhancers in the even-skipped promoter. Development 119: 762-72

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

Song. M. H., Huang, F. Z., Chang. G. Y. and Weisblat. D. A. (2002). Expression and function of an even-skipped homolog in the leech Helobdella robusta. Development 129: 3681-3692. 12117817

Sordino, P., Duboule, D. and Kondo, T. (1996). Zebrafish Hoxa and Evx-2 genes: cloning, developmental expression and implications for the functional evolution of posterior Hox genes. Mech. Dev. 59(2): 165-175.

Spitz, F., Gonzalez, F. and Duboule, D. (2003). A global control region defines a chromosomal regulatory landscape containing the HoxD cluster. Cell 113: 405-417. 12732147

Stathopoulos, A., Tam, B., Ronshaugen, M., Frasch, M. and Levine, M. (2004). pyramus and thisbe: FGF genes that pattern the mesoderm of Drosophila embryos. Genes Dev. 18: 687-699. 15075295

Struffi, P., Corado, M., Kulkarni, M. and Arnosti, D. N. (2004). Quantitative contributions of CtBP-dependent and -independent repression activities of Knirps. Development 131: 2419-2429. 15128671

Strunk, B., et al. (2001). Role of CtBP in transcriptional repression by the Drosophila Giant protein. Dev. Bio. 239: 229-240. 11784031

Su, M.-T., et al. (1999). The Drosophila homeobox genes zfh-1 and even-skipped are required for cardiac-specific differentiation of a numb-dependent lineage decision. Development 126: 3241-3251.

TenHarmsel, A., et al. (1993). Cooperative binding at a distance by even-skipped protein correlates with repression and suggests a mechanism of silencing. Mol. Cell. Biol. 13: 2742-52

Thaeron, C., et al. (2000). Zebrafish evx1 is dynamically expressed during embryogenesis in subsets of interneurons, posterior gut and urogenital system. Mech Dev. 99(1-2): 167-172.

Thor, S. and Thomas, J.B. (1997). The Drosophila islet gene governs axon pathfinding and neurotransmitter identity. Neuron 18: 397-409.

Treisman, J. E., Luk, A., Rubin, G. M. and Heberlein, U. (1997). eyelid antagonizes wingless signaling during Drosophila development and has homology to the Bright family of DNA-binding proteins. Genes Dev. 11: 1949-1962

Tremml, G. and Bienz, M. (1989). An essential role of even-skipped for homeotic gene expression in the Drosophila visceral mesoderm. EMBO J 8: 2687-93

Torigoi, E., et al. (2000). Chip interacts with diverse homeodomain proteins and potentiates Bicoid activity in vivo. Proc. Natl. Acad. Sci. 97: 2686-2691.

Tsai, C, and Gergen, J. P. (1994). Gap gene properties of the pair-rule gene runt during Drosophila segmentation. Development 120: 1671-1683

Um, M., Li, C. and Manley, J. L. (1995). The transcriptional repressor even-skipped interacts directly with TATA-binding protein. Mol Cell Biol 15: 5007-5016

Ursuliak, Z., et al (1997). Differential accumulation of DPTP61F alternative transcripts: regulation of a protein tyrosine phosphatase by segmentation genes. Mech. Dev. 65(1-2): 19-30.

Vincent, A., Blankenship, J. T. and Wieschaus, E. (1997). Integration of the head and trunk segmentation systems controls cephalic furrow formation in Drosophila. Development 124(19): 3747-3754.

Weigmann, K. and Lehner, C. F. (1995). Cell fate specification by even-skipped expression in the Drosophila nervous system is coupled to cell cycle progression. Development 121: 3713-3721

Wu, X., Vakani, R. and Small, S. (1998). Two distinct mechanisms for differential positioning of gene expression borders involving the Drosophila gap protein giant. Development 125: 3765-3774

Yin, Z., Xu, X. L. and Frasch, M. (1997). Regulation of the Twist target gene tinman by modular cis-regulatory elements during early mesoderm development. Development 124(24): 4971-4982.

Zallen, J. A. and Wieschaus, E. (2004). Patterned gene expression directs bipolar planar polarity in Drosophila. Dev. Cell 6: 343-355. 15030758

Zhang, S., Xu, L., Lee, J. and Xu, T. (2002). Drosophila atrophin homolog functions as a transcriptional corepressor in multiple developmental processes. Cell 108(1): 45-56. 11792320


Interactive Fly, Drosophila even-skipped: Biological Overview | Evolutionary Homologs | Transcriptional regulation | Post-transcriptional regulation | Targets of activity | Protein interactions | Developmental Biology | Effects of Mutation

date revised: 15 April 2008

  

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