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Anderson, K (1995). One signal, two body axes. Science 269, 489-490.[Free Full Text]

Berleth, T., Burri, M., Thoma, G., Bopp, D., Richstein, S., Frierio, G., Noll, M. and Nusslein-Volhard, C (1988). The role of localization of bicoid RNA in organizing the anterior pattern of the Drosophila embryo. EMBO J 113, 55-66.

Bier, E., Vaessin, H., Shepherd, S., Lee, K., McCall, K., Barbel, S., Ackerman, L., Carretto, R., Uemura, T., Grell, E., Jan, L. and Jan, Y. N (1989). Searching for pattern and mutation in the Drosophila genome with a P- lacZ vector. Genes Dev 3, 1273-1287.[Abstract/Free Full Text]

Chou, T-B., Noll, E. and Perrimon, N (1993). Autosomal P[ovo D1 ] dominant female-sterile insertions in Drosophila and their use in generating germ-line chimeras. Development 119, 1359-1369.[Abstract]

Clark, I., Giniger, E., Ruohola-Baker, H., Jan, L. Y. and Jan, Y. N (1994). Transient posterior localization of a Kinesin fusion protein reflects anterioposterior polarity of the Drosophila oocyte. Curr. Biol 4, 289-300.[Medline]

Curtis, D., Lehmann, R. and Zamore, P. D (1995). Translational regulation in development. Cell 81, 171-178.[Medline]

Driever, W., Siegel, V. and Nusslein-Volhard, C (1990). Autonomousdetermination of anterior structures in the early Drosophila embryo by the bicoid morphogen. Development 109, 811-820.[Abstract/Free Full Text]

Emmons, S., Phan, H., Calley, J., Chen, W., James, B. and Manseau, L (1995). cappuccino , a Drosphila maternal effect gene required for polarity of the egg and embryo, is related to the vertebrate limb deformity locus. Genes Dev 9, 2482-2494.[Abstract/Free Full Text]

Ephrussi, A., Dickenson, L. K. and Lehmann, R (1991). oskar organizes the germ plasm and directs localization of the posterior determinant nanos. Cell 66, 37-50.[Medline]

Gavis, E. R. and Lehmann, R (1994). Translational regulation of nanos by RNA localization. Nature 369, 315-318.[Medline]

Gillespie, D. E. and Berg, C. A (1995). homeless is required for RNA localization in Drosophila oogenesis and encodes a new member of the DE-H family of RNA-dependent ATPase. Genes Dev 9, 2495-2508.[Abstract/Free Full Text]

Gonz\207lez-Reyes, A. and St. Johnson, R. D (1994). Role of oocyte position in establishment of anterior-posterior polarity in Drosophila. Science 266, 639-642.[Abstract/Free Full Text]

Gonz\207lez-Reyes, A., Elliott, H. and St. Johnson, R. D (1995). Polarization of both major body axes in Drosophila by Gurken-Torpedo signaling. Nature 375, 654-658.[Medline]

Gutzeit, H. O. and Koppa, R (1982). Time-lapse film analysis of cytoplasmic streaming during late oogenesis in Drosophila. J. Embryol. Exp. Morph 67, 101-111.

Hawkins, N. C., Thorpe, J. and Schupbach, T (1996). encore , a gene required for the regulation of germ line mitosis and oocyte differentiation during Drosophila oogenesis. Development 122, 281-290.[Abstract]

Kim-Ha, J., Smith, J. L. and Macdonald, P. M (1991). oskar mRNA is localized to the posterior pole of the Drosophila oocyte. Cell 66, 23-35.[Medline]

Kim-Ha, J., Kerr, K. and Macdonald, P. M (1995). Translational regulation of oskar mRNA by Bruno, an ovarian RNA-binding protein, is essential. Cell 81, 403-411.[Medline]

Kim-Ha, J., Webster, P. J., Smith, J. L. and MacDonald, P. M (1993). Multiple regulatory elements regulate distinct steps in localization of oskar mRNA. Development 119, 169-178.[Abstract]

Lane, M. E. and Kalderon, D (1994). RNA localization along the anteroposterior axis of the Drosophila oocyte requires PKA-mediated signal transduction to direct normal microtubule organization. Genes Dev 8, 2986-2995.[Abstract/Free Full Text]

Larkin, M. K., Holder, K., Yost, C., Giniger, E. and Ruohola-Baker, H (1996). Expression of constitutively active Notch arrests follicle cells at a precursor stage during Drosophila oogenesis and disrupts tha anterior-posterior axis of the oocyte. Development 122, 3639-3650.[Abstract]

Livneh, E., Glazer, L., Segal, D., Schlessinger, J. and Shilo, B.-Z (1985). The Drosophila EGF receptor gene homolog: Conservation of both hormone binding and kinase domains. Cell 40, 599-607.[Medline]

Manseau, L. J. and Schupbach, T (1989). cappuccino and spire: two unique maternal-effect loci required for both the anteroposterior and dorsoventral patterns of the Drosophila embryo. Genes Dev 3, 1437-1452.[Abstract/Free Full Text]

Micklem, D. M (1995). mRNA localisation during development. Dev. Biol 172, 377-395.[Medline]

Morimoto, A. M., Jordan, K. C., Tietze, K., Britton, J. S., O'Neill, E. M. and Ruohola-Baker, H (1996). Pointed, an ETS domain transcription factor, negatively regulates the EGF receptor pathway in Drosophila oogenesis. Development 122, 3745-54.[Abstract]

Neuman-Silberberg, F. S. and Schupbach, T (1993). The Drosophila dorsoventral patterning gene gurken produces a dorsally localized RNA and encodes a TGF-a like protein. Cell 75, 165-174.[Medline]

Newmark, P. A., Mohr, S. E., Gong, L. and Boswell, R. E (1997). mago nashi mediates the posterior follicle cell-to-oocyte signal to organize axis formation in Drosophila. Development 124, 3197-3207.[Abstract]

Pokrywka, N. J. and Stephenson, E. C (1991). Microtubules mediate the localization of bicoid RNA during Drosophila oogenesis. Development 113, 55-66.[Abstract]

Pokrywka, N. J. and Stephenson, E. C (1995). Microtubules are a general component of mRNA localization systems in Drosophila oocytes. Dev. Biol 167, 363-370.[Medline]

Price, J. V., Clifford, R. J. and Schupbach, T (1989). The maternal ventralizing locus torpedo is allelic to faint little ball , an embryonic lethal, and encodes the Drosophila EGF receptor homolog. Cell 56, 1085-1092.[Medline]

Ran, B., Bopp, R. and Suter, B (1994). Null alleles reveal novel requirements for Bic-D during Drosophila oogenesis and zygotic development. Development 120, 1233-1242.[Abstract]

Ray, P. and Schupbach, T (1996). Intercellular signaling and the polarization of body axes during Drosophila oogenesis. Genes Dev 10, 1711-1723.[Free Full Text]

Robertson, H. M., Preston, C. R., Phillis, R. W., Johnson-Schlitz, D. M., Benz, W. K. and Engels, W. R (1988). A stable genomic source of P element transposase in Drosophila melanogaster. Genetics 118, 461-70.[Abstract/Free Full Text]

Rongo, C. and Lehmann, R (1996). Regulated synthesis, transport and assembly of the Drosophila germ plasm. Trends Genet 12, 102-109.[Medline]

Roth, S., Neuman-Silberberg, F. S., Barcelo, G. and Schupbach, T (1995). cornichon and the EGF receptor signaling process are necessary for both anterior/posterior and dorsal/ventral pattern formation in Drosophila. Cell 81, 967-978.[Medline]

Ruohola-Baker, H., Jan, L. Y. and Jan, Y. N (1994). The role of gene cassettes in axis formation during Drosophila oogenesis. Trends Genet 10, 89-94.[Medline]

St. Johnston, D., Driever, W., Berleth, T., Richstein, S. and Nusslein-Volhard, C (1989). Multiple steps in the localization of bicoid RNA to the anterior of the Drosophila oocyte. Development 1, 13-19.[Medline]

Suter, B. and Steward, R (1991). Requirement for phosphorylation and localization of the Bicaudal-D protein in Drosophila oocyte differentiation. Cell 67, 917-926.[Medline]

Theurkauf, W. E (1994). Microtubules and cytoplasm organization during Drosophila oogenesis. Dev. Biol 165, 352-360.[Medline]

Theurkauf, W. E (1994). Premature microtubule-dependent cytoplasmic streaming in cappuccino and spire mutant ovaries. Science 265, 2093-2095.[Abstract/Free Full Text]

Theurkauf, W. E., Smiley, S., Wong, M. L. and Alberts, B. M (1992). Reorganization of the cytoskeleton during Drosophila oogenesis: implications for axis specification and intercellular transport. Development 115, 923-936.[Abstract]

Wadsworth, S. C., Vincent, W. S. and Bilodeau-Wentworth, S (1985). A Drosophila genomic sequence with homology to human epithelial growth factor receptor. Nature 314, 178-180.[Medline]




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