Castrillon, D. H. and Wasserman, S. A (1994). Diaphanous is required for cytokinesis in Drosophila and shares domains of similarity with the products of the limb deformity gene. Development 120, 3367-3377.[Abstract]
Chang, F., Drubin, D. and Nurse, P (1997). cdc12p, a protein required for cytokinesis in fission yeast, is a component of the cell division ring and interacts with profilin. J. Cell Biol 137, 169-182.[Abstract/Free Full Text]
Crawford, J. M., Harden, N., Leung, T., Lim, L. and Kiehart, D. P (1998). Cellularization in Drosophila melanogaster is disrupted by the inhibition of rho activity and the activation of Cdc42 function. Dev. Biol 204, 151-64.[Medline]
Edgar, B. A., Odell, G. M. and Schubiger, G (1987). Cytoarchitecture and the patterning of fushi tarazu expression in the Drosophila blastoderm. Genes Dev 1, 1226-37.[Abstract/Free Full Text]
Emmons, S., Phan, H., Calley, J., Chen, W., James, B. and Manseau, L (1995). Cappuccino, a Drosophila 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]
Evangelista, M., Blundell, K., Longtine, M. S., Chow, C. J., Adames, N., Pringle, J. R., Peter, M. and Boone, C (1997). Bni1p, a yeast forminlinking cdc42p and the actin cytoskeleton during polarized morphogenesis. Science 276, 118-122.[Abstract/Free Full Text]
Fares, H., Peifer, M. and Pringle, J. R (1995). Localization and possible functions of Drosophila septins. Mol. Biol. Cell 6, 1843-59.[Abstract]
Field, C., Li, R. and Oegema, K (1999). Cytokinesis in eukaryotes: a mechanistic comparison. Curr. Opin. Cell Biol 11, 68-80.[Medline]
Field, C. M. and Alberts, B. M (1995). Anillin, a contractile ring protein that cycles from the nucleus to the cell cortex. J. Cell Biol 131, 165-178.[Abstract/Free Full Text]
Foe, V. E. and Alberts, B. M (1983). Studies of nuclear and cytoplasmic behaviour during the five mitotic cycles that precede gastrulation in Drosophila embryogenesis. J. Cell Sci 61, 31-70.[Abstract]
Frazier, J. A. and Field, C. M (1997). Actin cytoskeleton: Are FH proteins local organizers?. Curr. Biol 7, 414-417.
Giansanti, M. G., Bonaccorsi, S., Williams, B., Williams, E. V., Santolamazza, C., Goldberg, M. L. and Gatti, M (1998). Cooperative interactions between the central spindle and the contractile ring during Drosophila cytokinesis. Genes Dev 12, 396-410.[Abstract/Free Full Text]
Hime, G. and Saint, R (1992). Zygotic expression of the pebble locus is required for cytokinesis during the postblastoderm mitoses of Drosophila. Development 114, 165-71.[Abstract]
Imamura, H., Tanaka, K., Hihara, T., Umikawa, M., Kamei, T., Takahashi, K., Sasaki, T. and Takai, Y (1997). Bni1p and Bnr1p: downstream targets of the Rho family small G-proteins which interact with profilin and regulate actin cytoskeleton in Saccharomyces cerevisiae. EMBO J 16, 2745-55.[Medline]
Imamura, H., Tanaka, K., Hihara, T., Umikawa, M., Kamei, T., Takahashi, K., Sasaki, T. and Takai, Y (1997). Bni1p and Bnr1p: downstream targets of the Rho family small G-proteins which interact with profilin and regulate actin cytoskeleton in Saccharomyces cerevisiae. EMBO J 16, 2745-2755.
Karr, T. L. and Alberts, B. M (1986). Organization of the cytoskeleton in early Drosophila embryos. J. Cell Biol 102, 1494-509.[Abstract/Free Full Text]
Knowles, B. A. and Cooley, L (1994). The specialized cytoskeleton of the Drosophila egg chamber. Trends Genet 10, 235-41.[Medline]
Kohno, H., Tanaka, K., Mino, A., Umikawa, M., Imamura, H., Fujiwara, T., Fujita, Y., Hotta, K., Qadota, H., Watanabe, T., Ohya, Y. and Takai, Y (1996). Bni1p implicated in cytoskeletal control is a putative target of Rho1p small GTP binding protein in Saccharomyces cerevisiae. EMBO J 15, 6060-6068.[Medline]
Lee, L., Klee, S. K., Evangelista, M., Boone, C. and Pellman, D (1999). Control of mitotic spindle position by the Saccharomyces cerevisiae formin Bni1p. J. Cell Biol 144, 947-61.[Abstract/Free Full Text]
Letsou, A., Alexander, S. and Wasserman, S. A (1993). Domain mapping of tube, a protein essential for dorsoventral patterning of the Drosophila embryo. EMBO J 12, 3449-3458.[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, 1437-52.[Abstract/Free Full Text]
Miller, K. G. and Kiehart, D. P (1995). Fly division. J. Cell Biol 131, 1-5.[Free Full Text]
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, 963-75.[Abstract/Free Full Text]
Petersen, J., Nielsen, O., Egel, R. and Hagan, I. M (1998). FH3, a domain found in formins, targets the fission yeast formin Fus1 to the projection tip during conjugation. J. Cell Biol 141, 1217-28.[Abstract/Free Full Text]
Postner, M. A., Miller, K. G. and Wieschaus, E. F (1992). Maternal effect mutations of the sponge locus affect actin cytoskeletal rearrangements in Drosophila melanogaster embryos. J. Cell Biol 119, 1205-18.[Abstract/Free Full Text]
Prokopenko, S. N., Brumby, A., O'Keefe, L., Prior, L., He, Y., Saint, R. and Bellen, H. J (1999). A putative exchange factor for Rho1 GTPase is required for initiation of cytokinesis in Drosophila. Genes Dev 13, 2301-2314.[Abstract/Free Full Text]
Schejter, E. D. and Wieschaus, E (1993). Functional elements of the cytoskeleton in the early Drosophila embryo. Annu. Rev. Cell Biol 9, 67-99.
Sullivan, W., Fogarty, P. and Theurkauf, W (1993). Mutations affecting thecytoskeletal organization of syncytial Drosophila embryos. Development 118, 1245-54.[Abstract]
Sullivan, W., Minden, J. S. and Alberts, B. M (1990). daughterless-abo-like, a Drosophila maternal-effect mutation that exhibits abnormal centrosome separation during the late blastoderm divisions. Development 110, 311-23.[Abstract/Free Full Text]
Sullivan, W. and Theurkauf, W. E (1995). The cytoskeleton and morphogenesis of the early Drosophila embryo. Curr. Opin. Cell Biol 7, 18-22.[Medline]
Swanson, M. M. and Poodry, C. A (1980). Pole cell formation in Drosophila melanogaster. Dev. Biol 75, 419-30.[Medline]
Verheyen, E. M. and Cooley, L (1994). Profilin mutations disrupt multiple actin-dependent processes during Drosophila development. Development 120, 717-728.[Abstract]
Warn, R. M. and Warn, A (1986). Microtubule arrays present during the syncytial and cellular blastoderm stages of the early Drosophila embryo. Experimental Cell Research 163, 201-10.[Medline]
Watanabe, N., Madaule, P., Reid, T., Ishizaki, T., Watanabe, G., Kakizuka, A., Saito, Y., Jockusch, B. M. and Narumiya, S (1997). p140mDia, a mammalian homolog of Drosophila diaphanous, is a target protein for Rho small GTPase and is a ligand for profilin. EMBO J 16, 3044-3056.[Medline]
Waterman-Storer, C. M. and Salmon, E (1999). Positive feedback interactions between microtubule and actin dynamics during cell motility. Curr. Opin. Cell Biol 11, 61-7.[Medline]
Xu, T. and Rubin, G. M (1993). Analysis of genetic mosaics in developing and adult Drosophila tissues. Development 117, 1223-37.[Abstract]
Young, P. E., Richman, A. M., Ketchum, A. S. and Kiehart, D. P (1993). Morphogenesis in Drosophila requires nonmuscle myosin heavy chain function. Genes Dev 7, 29-41.[Abstract/Free Full Text]
Zhang, C. X., Lee, M. P., Chen, A. D., Brown, S. D. and Hsieh, T (1996). Isolation and characterization of a Drosophila gene essential for early embryonic development and formation of cortical cleavage furrows. J. Cell Biol 134, 923-34.[Abstract/Free Full Text]