spacer gif spacer gif spacer gif spacer gif spacer gif
 QUICK SEARCH:   [advanced]


spacer gif
     Home     Help     Feedback     Subscriptions     Archive     Search     Table of Contents    


This Article
Right arrow Summary Freely available
Right arrow Full Text (PDF)
Right arrow Alert me when this article is cited
Right arrow Alert me if a correction is posted
Services
Right arrow Email this article to a friend
Right arrow Similar articles in this journal
Right arrow Similar articles in PubMed
Right arrow Alert me to new issues of the journal
Right arrow Download to citation manager
Right arrow reprints & permissions
Citing Articles
Right arrow Citing Articles via HighWire
Right arrow Citing Articles via Google Scholar
Google Scholar
Right arrow Articles by Kojima, T.
Right arrow Articles by Saigo, K.
Right arrow Search for Related Content
PubMed
Right arrow PubMed Citation
Right arrow Articles by Kojima, T.
Right arrow Articles by Saigo, K.
Abu-Shaar, M. and Mann, R. S (1998). Generation of multiple antagonistic domains along the proximodistal axis during Drosophila leg development. Development 125, 3821-3830.[Abstract]

Azpiazu, N., Lawrence, P. A., Vincent, J. P. and Frasch, M. B (1996). Segmentation and specification of the Drosophila mesoderm. GenesDev 10, 183-194.

Bellen, H. J., O'Kane, C. J., Wilson, C., Grossniklaus, U., Pearson, R. K. and Gehring, W. J (1989). P-element-mediated enhancer detection: a versatile method to study development in Drosophila. Genes Dev 3, 1288-1300.[Abstract/Free Full Text]

Brand, A. H. and Perrimon, N (1993). Targeted gene expression as a means of altering cell fates and generating dominant phenotypes. Development 118, 401-415.[Abstract]

Brosseau, G. E., Jr., Nicoletti, B., Grell, E. H. and Lindsley, D. L (1958). Production of altered Y chromosomes bearing specific sections of the X chromosome in Drosophila. Genetics 46, 339-346.

Calleja, M., Moreno, E., Pelaz, S. and Morata, G (1996). Visualization of gene expression in living adult Drosophila. Science 274, 252-255.[Abstract/Free Full Text]

Campbell, G., Weaver, T. and Tomlinson, A (1993). Axis specification in the developing Drosophila appendage: the role of wingless , decapentaplegic , and the homeobox gene aristaless. Cell 74, 1113-1123.[Medline]

Campbell, G. and Tomlinson, A (1998). The roles of the homeobox genes aristaless and Distal-less in patterning the legs and wings of Drosophila. Development 125, 4483-4493.[Abstract]

Cohen, B., McGuffin, M. E., Pfeifle, C., Segal, D. and Cohen, S. M (1992). apterous , a gene required for imaginal disc development in Drosophila encodes a member of the LIM family of developmental regulatory proteins. Genes Dev 6, 715-729.[Abstract/Free Full Text]

Cohen, S. M., Bronner, G., Kuttner, F., Jurgens, G. and Jackle, H (1989). Distal-less encodes a homoeodomain protein required for limb development in Drosophila. Nature 338, 432-434.[Medline]

Condic, M. L., Fristrom, D. and Fristrom, J. W (1991). Apical cell shape changes during Drosophila imaginal leg disc elongation: a novel morphogenetic mechanism. Development 111, 23-33.[Abstract]

Diaz-Benjumea, F. J., Cohen, B. and Cohen, S. M (1994). Cell interaction between compartments establishes the proximal-distal axis of Drosophila legs. Nature 372, 175-179.[Medline]

Duncan, D. M., Burgess, E. A. and Duncan, I (1998). Control of distal antennal identity and tarsal development in Drosophila by spineless-aristapedia , a homolog of the mammalian dioxin receptor. Genes Dev 12, 1290-1303.[Abstract/Free Full Text]

Godt, D., Couderc, J. L., Cramton, S. E. and Laski, F. A (1993). Pattern formation in the limbs of Drosophila : bric \207 brac is expressed in both a gradient and a wave-like pattern and is required for specification and proper segmentation of the tarsus. Development 119, 799-812.[Abstract]

Gonzalez-Crespo, S. and Morata, G (1996). Genetic evidence for the subdivision of the arthropod limb into coxopodite and telopodite. Development 122, 3921-3928.[Abstract]

Gorfinkiel, N., Morata, G. and Guerrero, I (1997). The homeobox gene Distal-less induces ventral appendage development in Drosophila. Genes Dev 11, 2259-2271.[Abstract/Free Full Text]

Grenningloh, G., Bieber, A. J., Rehm, E. J., Snow, P. M., Traquina, Z. R., Hortsch, M., Patel, N. H. and Goodman, C. S (1990). Molecular genetics of neuronal recognition in Drosophila : Evolution and function of immunoglobulin superfamily cell adhesion molecules. Cold Spring Harbor Symp. Quant. Biol 55, 327-340.[Medline]

Grenningloh, G., Rehm, E. J. and Goodman, C. S (1991). Genetic analysis of growth cone guidance in Drosophila: Fasciclin II Functions as a neuronal recognition molecule. Cell 67, 45-57.[Medline]

Hama, C., Ali, Z. and Kornberg, T. B (1990). Region-specific recombination and expression are directed by portions of the Drosophilaengrailed promoter. Genes Dev 4, 1079-1093.[Abstract/Free Full Text]

Hayashi, T., Kojima, T. and Saigo, K (1998). Specification of primary pigment cell and outer photoreceptor fates by BarH1 homeobox gene in the developing Drosophila eye. Dev. Biol 200, 131-145.[Medline]

Higashijima, S., Kojima, T., Michiue, T., Ishimaru, S., Emori, Y. and Saigo, K (1992). Dual Bar homeobox genes of Drosophila required in two photoreceptor cells, R1 and R6, and primary pigment cells for normal eye development. Genes Dev 6, 50-60.[Abstract/Free Full Text]

Higashijima, S., Michiue, T., Emori, Y. and Saigo, K (1992). Subtype determination of Drosophila embryonic external sensory organs by redundant homeobox genes BarH1 and BarH2. Genes Dev 6, 1005-1018.[Abstract/Free Full Text]

Hoover, K. K., Chien, A. J., Corces, V. G (1993). Effects of transposable elements on the expression of the forked gene of Drosophilamelanogaster. Genetics 135, 507-526.[Abstract]

Hotta, Y. and Benzer, S (1976). Courtship in Drosophila mosaics: sex-specific foci for sequential action patterns. Proc. Natl. Acad. Sci. USA 73, 4154-4158.[Abstract/Free Full Text]

Huang, F., Dambly-Chaudiere, C. and Ghysen, A (1991). The emergence of sense organs in the wing disc of Drosophila. Development 111, 1087-1095.[Abstract/Free Full Text]

Ishimaru, S. and Saigo, K (1993). The Drosophilaforked gene encodes two major RNAs, which, in gypsy or springer insertion mutants, are partially or completely truncated within the 5-LTR of the inserted retrotransposon. Mol. Gen.Genet 241, 647-656.[Medline]

Jones, F. S., Kioussi, C., Copertino, D. W., Kallunki, P., Holst, B. D. and Edelman, G. M (1997). BarX2 , a new homeobox gene of the Bar class, is expressed in neural and craniofacial structures during development. Proc. Natl. Acad. Sci. USA 94, 2632-2637.[Abstract/Free Full Text]

Kojima, T., Ishimaru, S., Higashijima, S., Takayama, E., Akimaru, H., Sone, M., Emori, Y. and Saigo, K (1991). Identification of a different-type homeobox gene, BarH1 , possibly causing Bar ( B ) and Om(1D) mutations in Drosophila. Proc. Natl. Acad. Sci. USA 88, 4343-4347.[Abstract/Free Full Text]

Lawrence, P.A. and Struhl, G (1996). Compartments and pattern: Lessons from Drosophila?. Cell 85, 951-961.[Medline]

Lin, D. M., Fetter, R. D., Kopczynski, C., Grenningloh, G. and Goodman, C. S (1994). Genetic analysis of Fasciclin II in Drosophila : defasciculation, refasciculation, and altered fasciculation. Neuron 13, 1055-1069.[Medline]

Lecuit, T. and Cohen, S. M (1997). Proximal-distal axis formation in the Drosophila leg. Nature 388, 139-145.[Medline]

Lundgren, S. E., Callahan, C. A., Thor, S. and Thomas, J. B (1995). Control of neuronal pathway selection by the Drosophila LIM homeodomain gene apterous. Development 121, 1769-1773.[Abstract]

Mardon, G., Solomon, N. and Rubin, G. M (1994). dachshund encodes a nuclear protein required for normal eye and leg development in Drosophila. Development 120, 3473-3486.[Abstract]

Morimura, S., Maves, L., Chen, Y. and Hoffmann, F. M (1996). decapentaplegic overexpression affects Drosophila wing and leg imaginaldisc development and wingless expression. Dev. Biol 177, 136-151.[Medline]

Postlethwait, J. H. and Schneiderman, H. A (1971). Pattern formation and determination in the antenna of the homoeotic mutant Antennapedia of Drosophila melanogaster. Dev. Biol 25, 606-640.[Medline]

Sato, M., Kojima, T., Michiue, T. and Saigo, K (1999). Bar homeobox genes are latitudinal prepattern genes in the developing Drosophila notum whose expression is regulated by the concerted functions of decapentaplegic and wingless. Development 126, 1457-1466.[Abstract]

Schneitz, K., Spielmann, P. and Noll, M (1993). Molecular genetics of aristaless , a prd-type homeo box gene involved in the morphogenesis of proximal and distal pattern elements in a subset of appendages in Drosophila. Genes Dev 7, 114-129.[Abstract/Free Full Text]

Tsubota S. I., Rosenberg, D., Szostak, H., Rubin D. and Schedl, P (1989). The cloning of the Bar region and the B breakpoint in Drosophila melanogaster : evidence for a transposon-induced rearrangement. Genetics 122, 881-890.[Abstract/Free Full Text]

Wu, J. and Cohen, S. M (1999). Proximodistal axis formation in the Drosophila leg: subdivision into proximal and distal domains by Homothorax and Distal-less. Development 126, 109-117.[Abstract]

Xu, T. and Rubin, G. M (1993). Analysis of genetic mosaics in developing and adult Drosophila tissues. Development 117, 1223-1237.[Abstract]

Yokouchi, Y., Sasaki, H. and Kuroiwa, A (1991). Homeobox gene expression correlated with the bifurcation process of limb cartilage development. Nature 353, 443-445.[Medline]

Yokouchi, Y., Nakazato, S., Yamamoto, M., Goto, Y., Kameda, T., Iba, H. and Kuroiwa, A (1995). Misexpression of Hoxa-13 induces cartilage homeotic transformation and changes cell adhesiveness in chick limb buds. Genes Dev 9, 2509-2522.[Abstract/Free Full Text]




This article has been cited by other articles:


Home page
GeneticsHome page
A. Wehn and G. Campbell
Genetic Interactions Among scribbler, Atrophin and groucho in Drosophila Uncover Links in Transcriptional Repression
Genetics, June 1, 2006; 173(2): 849 - 861.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
T. Melkman and P. Sengupta
Regulation of chemosensory and GABAergic motor neuron development by the C. elegans Aristaless/Arx homolog alr-1
Development, April 15, 2005; 132(8): 1935 - 1949.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
N. Offner, N. Duval, M. Jamrich, and B. Durand
The pro-apoptotic activity of a vertebrate Bar-like homeobox gene plays a key role in patterning the Xenopus neural plate by limiting the number of chordin- and shh-expressing cells
Development, April 15, 2005; 132(8): 1807 - 1818.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
J. I. Pueyo and J. P. Couso
Chip-mediated partnerships of the homeodomain proteins Bar and Aristaless with the LIM-HOM proteins Apterous and Lim1 regulate distal leg development
Development, July 1, 2004; 131(13): 3107 - 3120.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
J. Lim and K.-W. Choi
Bar homeodomain proteins are anti-proneural in the Drosophila eye: transcriptional repression of atonal by Bar prevents ectopic retinal neurogenesis
Development, December 15, 2003; 130(24): 5965 - 5974.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
J. M. de Celis Ibeas and S. J. Bray
Bowl is required downstream of Notch for elaboration of distal limb patterning
Development, December 15, 2003; 130(24): 5943 - 5952.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
P. D. S. Dong, J. S. Dicks, and G. Panganiban
Distal-less and homothorax regulate multiple targets to pattern the Drosophila antenna
Development, March 6, 2003; 129(8): 1967 - 1974.
[Abstract] [Full Text] [PDF]


Home page
ScienceHome page
M. J. Depew, T. Lufkin, and J. L. R. Rubenstein
Specification of Jaw Subdivisions by Dlx Genes
Science, October 11, 2002; 298(5592): 381 - 385.
[Abstract] [Full Text] [PDF]


Home page
ScienceHome page
M. I. Galindo, S. A. Bishop, S. Greig, and J. P. Couso
Leg Patterning Driven by Proximal-Distal Interactions and EGFR Signaling
Science, July 12, 2002; 297(5579): 256 - 259.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
G. Panganiban and J. L. R. Rubenstein
Developmental functions of the Distal-less/Dlx homeobox genes
Development, January 10, 2002; 129(19): 4371 - 4386.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
B Estrada and E Sanchez-Herrero
The Hox gene Abdominal-B antagonizes appendage development in the genital disc of Drosophila
Development, January 2, 2001; 128(3): 331 - 339.
[Abstract] [PDF]


Home page
DevelopmentHome page
J. Pueyo, M. Galindo, S. Bishop, and J. Couso
Proximal-distal leg development in Drosophila requires the apterous gene and the Lim1 homologue dlim1
Development, January 12, 2000; 127(24): 5391 - 5402.
[Abstract] [PDF]


Home page
DevelopmentHome page
T Tsuji, A Sato, I Hiratani, M Taira, K Saigo, and T Kojima
Requirements of Lim1, a Drosophila LIM-homeobox gene, for normal leg and antennal development
Development, January 10, 2000; 127(20): 4315 - 4323.
[Abstract] [PDF]


This Article
Right arrow Summary Freely available
Right arrow Full Text (PDF)
Right arrow Alert me when this article is cited
Right arrow Alert me if a correction is posted
Services
Right arrow Email this article to a friend
Right arrow Similar articles in this journal
Right arrow Similar articles in PubMed
Right arrow Alert me to new issues of the journal
Right arrow Download to citation manager
Right arrow reprints & permissions
Citing Articles
Right arrow Citing Articles via HighWire
Right arrow Citing Articles via Google Scholar
Google Scholar
Right arrow Articles by Kojima, T.
Right arrow Articles by Saigo, K.
Right arrow Search for Related Content
PubMed
Right arrow PubMed Citation
Right arrow Articles by Kojima, T.
Right arrow Articles by Saigo, K.