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Bello, B., Resendez-Perez, D. and Gehring, W. J (1998). Spatial and temporal targeting of gene expression in Drosophila by means of a tetracycline-dependent transactivator system. Development 125, 2193-2202.[Abstract]

Bowerman, B. and Shelton, C. A (1999). Cell polarity in the early Caenorhabditis elegans embryo. Curr. Opin. Genet. Dev 9, 390-395.[Medline]

Carminati, J. L. and Stearns, T (1997). Microtubules orient the mitoticspindle in yeast through dynein-dependent interactions with the cell cortex. J. Cell Biol 138, 629-641.[Abstract/Free Full Text]

Carpenter, A. T. C (1975). Electron microscopy of meiosis in Drosophila melanogaster females. I. Structure, arrangement, and temporal change of the synaptonemal complex in wild-type. Chromosoma 51, 157-182.[Medline]

Carpenter, A. T. C (1979). Synaptonemal complex and recombination nodules in wild-type Drosophila melanogaster females. Genetics 92, 511-541.[Abstract/Free Full Text]

Clark, I. E., Jan, L. Y. and Jan, Y. N (1997). Reciprocal localization of Nod and Kinesin fusion proteins indicates microtubule polarity in the Drosophila oocyte, epithelium, neuron and muscle. Development 124, 461-470.[Abstract]

Cooley, L. and Theurkauf, W. E (1994). Cytoskeletal functions during Drosophila oogenesis. Science 266, 590-596.[Abstract/Free Full Text]

de Cuevas, M., Lee, J. K. and Spradling, A. C (1996). -spectrin is required for germline cell division and differentiation in the Drosophila ovary. Development 122, 3959-3968.[Abstract]

de Cuevas, M., Lilly, M. A. and Spradling, A. C (1997). Germline cyst formation in Drosophila. Annu. Rev. Genet 31, 405-428.[Medline]

de Cuevas, M. and Spradling, A. C (1998). Morphogenesis of the Drosophila fusome and its implications for oocyte specification. Development 125, 2781-2789.[Abstract]

Deng, W. and Lin, H (1997). Spectrosomes and fusomes anchor mitotic spindles during asymmetric germ cell divisions and facilitate the formation of polarized microtubule array for oocyte specification in Drosophila. Dev. Biol 189, 79-94.[Medline]

Desai, A. and Mitchison, T. J (1997). Microtubule polymerization dynamics. Annu. Rev. Cell Dev. Biol 13, 83-117.[Medline]

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

Heim, R., Cubitt, A. B. and Tsien, R. Y (1995). Improved green fluorescence. Nature 373, 663-664.[Medline]

Kalfayan, L. and Wensink, P. C (1981). -tubulin genes of Drosophila. Cell 24, 97-106.[Medline]

Kellogg, D. R., Mitchison, T. J. and Alberts, B. M (1988). Behaviour of microtubules and actin filaments in living Drosophila embryos. Development 103, 675-686.[Abstract/Free Full Text]

Khodjakov, A. and Rieder, C. L (1999). The sudden recruitment of-tubulin to the centrosome at the onset of mitosis and its dynamic exchange throughout the cell cycle, do not require microtubules. J. Cell Biol 146, 585-596.[Abstract/Free Full Text]

Knowles, B. A. and Cooley, L (1994). The specialized cytoskeleton of the Drosophila egg chamber. Trends Genet 10, 235-241.[Medline]

Koch, E. A. and King, R. C (1966). The origin and early differentiation of the egg chamber of Drosophila melanogaster. J. Morphol 119, 283-303.[Medline]

Koch, E. A. and Spitzer, R. H (1983). Multiple effects of colchicine on oogenesis in Drosophila : induced sterility and switch of potential oocyte to nurse-cell developmental pathway. Cell Tissue Res 228, 21-32.[Medline]

Lantz, V., Chang, J. S., Horabin, J. I., Bopp, D. and Schedl, P (1994). The Drosophila orb RNA-binding protein is required for the formation of the egg chamber and establishment of polarity. Genes Dev 8, 598-613.[Abstract/Free Full Text]

Li, M., McGrail, M., Serr, M. and Hays, T. S (1994). Drosophila cytoplasmic Dynein, a microtubule motor that is asymmetrically localized in the oocyte. J. Cell Biol 126, 1475-1494.[Abstract/Free Full Text]

Lilly, M. A., de Cuevas, M. and Spradling, A. C (2000). Cyclin A associates with the fusome during germline cyst formation in the Drosophila ovary. Dev. Biol 218, 53-63.[Medline]

Lin, H., Yue, L. and Spradling, A. C (1994). The Drosophila fusome, a germline-specific organelle, contains membrane skeletal proteins and functions in cyst formation. Development 120, 947-956.[Abstract]

Lin, H. and Spradling, A. C (1995). Fusome asymmetry and oocyte determination in Drosophila. Dev. Genet 16, 6-12.[Medline]

Lin, H. and Spradling, A. C (1997). A novel group of pumilio mutations affects the asymmetric division of germline stem cells in the Drosophila ovary. Development 124, 2463-2476.[Abstract]

Liu, Z., Xie, T. and Steward, R (1999). Lis1, the Drosophila homolog of a human lissencephaly disease gene, is required for germline cell division and oocyte differentiation. Development 126, 4477-4488.[Abstract]

Lu, B., Jan, L. Y. and Jan, Y. N (1998). Asymmetric cell division: lessons from flies and worms. Curr. Opin. Genet. Dev 8, 392-399.[Medline]

Mach, J. M. and Lehmann, R (1997). An Egalitarian-Bicaudal-D complex is essential for oocyte specification and axis determination in Drosophila. Genes Dev 11, 423-435.[Abstract/Free Full Text]

Mahowald, A. P. and Strassheim, J. M (1970). Intercellular migration of centrioles in the germarium of Drosophila melanogaster. J. Cell Biol 45, 306-320.[Abstract/Free Full Text]

McGrail, M. and Hays, T. S (1997). The microtubule motor cytoplasmic dynein is required for spindle orientation during germline cell divisions and oocyte differentiation in Drosophila. Development 124, 2409-2419.[Abstract]

Miller, R. K., Matheos, D. and Rose, M. D (1999). The cortical localization of the microtubule orientation protein, Kar9p, is dependent upon actin and proteins required for polarization. J. Cell Biol 144, 963-975.[Abstract/Free Full Text]

Palmer, R. E., Sullivan, D. S., Huffaker, T. and Koshland, D (1992). Roleof astral microtubules and actin in spindle orientation and migration in the budding yeast, Saccharomyces cerevisiae. J. Cell Biol 119, 583-593.[Abstract/Free Full Text]

Piperno, G. and Fuller, M. T (1985). Monoclonal antibodies specific for an acetylated form of-tubulin recognize the antigen in cilia and flagella from a variety of organisms. J. Cell Biol 101, 2085-2094.[Abstract/Free Full Text]

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]

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]

R\277rth, P (1998). Gal4 in the Drosophila female germline. Mech. Dev 78, 113-118.[Medline]

Robinson, D. N., Cant, K. and Cooley, L (1994). Morphogenesis of Drosophila ovarian ring canals. Development 120, 2015-2025.[Abstract]

Schupbach, T. and Wieschaus, E (1991). Female sterile mutations on the second chromosome of Drosophila melanogaster . II. Mutations blocking oogenesis or altering egg morphology. Genetics 129, 1119-1136.[Abstract]

Spradling, A. C. and Rubin, G. M (1982). Transposition of cloned P elements into Drosophila germ line chromosomes. Science 218, 341-347.[Abstract/Free Full Text]

Storto, P. D. and King, R. C (1989). The role of polyfusomes in generating branched chains of cystocytes during Drosophila oogenesis. Dev. Genet 10, 70-86.[Medline]

Suter, B., Romberg, L. M. and Steward, R (1989). Bicaudal-D , a Drosophila gene involved in developmental asymmetry: localized transcript acculmulation in ovaries and sequence similarity to myosin heavy chain tail domains. Genes Dev 3, 1957-1968.[Abstract/Free Full Text]

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]

Takizawa, P. A., Sil, A., Swedlow, J. R., Herskowitz, I. and Vale, R. D (1997). Actin-dependent localization of an RNA encoding a cell-fate determinant in yeast. Nature 389, 90-93.[Medline]

Theesfeld, C. L., Irazoqui, J. E., Bloom, K. and Lew, D. J (1999). The role of actin in spindle orientation changes during the Saccharomyces cerevisiae cell cycle. J. Cell Biol 146, 1019-1032.[Abstract/Free Full Text]

Theurkauf, W. E., Baum, H., Bo, J. and Wensink, P. C (1986). Tissue-specific and constitutive-tubulin genes of Drosophila melanogaster code for structurally distinct proteins. Proc. Natl. Acad. Sci. U S A 83, 8477-8481.[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]

Theurkauf, W. E., Alberts, B. M., Jan, Y. N. and Jongens, T. A (1993). A central role for microtubules in the differentiation of Drosophila oocytes. Development 118, 1169-1180.[Abstract]

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

Tracey, W. D., Jr. Ning, X., Klingler, M., Kramer, S. G. and Gergen, J. P (2000). Quantitative analysis of gene function in the Drosophila embryo. Genetics 154, 273-284.[Abstract/Free Full Text]

Tulin, A. V., Naumova, N. M., Aravin, A. A. and Gvozdev, V. A (1998). Repeated, protein-encoding heterochromatic genes cause inactivation of a juxtaposed euchromatic gene. FEBS Lett 425, 513-516.[Medline]

Van Doren, M., Williamson, A. L. and Lehmann, R (1998). Regulation of zygotic gene expression in Drosophila primordial germ cells. Curr. Biol 8, 243-246.[Medline]

van Eeden, F. and St Johnston, D (1999). The polarisation of the anterior-posterior and dorsal-ventral axes during Drosophila oogenesis. Curr. Opin. Genet. Dev 9, 396-404.[Medline]

Wiese, C. and Zheng, Y (1999). -tubulin complexes and their interaction with microtubule-organizing centers. Curr. Opin. Struct. Biol 9, 250-259.[Medline]

Wilson, P. G., Zheng, Y., Oakley, C. E., Oakley, B. R., Borisy, G. G. and Fuller, M. T (1997). Differential expression of two-tubulin isoforms during gametogenesis and development in Drosophila. Dev. Biol 184, 207-221.[Medline]

Wilson, P. G (1999). BimC motor protein KLP61F cycles between mitotic spindles and fusomes in Drosophila germ cells. Curr. Biol 9, 923-926.[Medline]

Yue, L. and Spradling, A. C (1992). hu-li tai shao , a gene required for ring canal formation during Drosophila oogenesis, encodes a homolg of adducin. Genes Dev 6, 2443-2454.[Abstract/Free Full Text]

Zaccai, M. and Lipshitz, H. D (1996). Differential distributions of two adducin-like protein isoforms in the Drosophila ovary and early embryo. Zygote 4, 159-166.[Medline]


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