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Allan, V. J. and Vale, R. D (1991). Cell cycle control of microtubule-based membrane transport and tubule formation in vitro. J. Cell Biol 113, 347-359.[Abstract/Free Full Text]

Belmont, L. D., Hyman, A. A., Sawin, K. E. and Mitchison, T. J (1990). Real time visualization of cell cycle-dependent changes in microtubule dynamics in cytoplasmic extracts. Cell 62, 579-589.[Medline]

Bement, W. M. and Capco, D. G (1989). Activators of protein kinase C trigger cortical granule exocytosis, cortical contraction and cleavage furrow formation in Xenopus laevis oocytes and eggs. J. Cell Biol 108, 885-892.[Abstract/Free Full Text]

Canman, J. C. and Bement, W. M (1997). Microtubules suppress actomyosin-based cortical flow in Xenopus oocytes. J. Cell Sci 110, 1907-1917.[Abstract]

Cooper, J. A (1986). Effects of cytochalasin and phalloidin on actin. J. Cell Biol 105, 1473-1478.[Free Full Text]

Danowski, B. A (1989). Fibroblast contractility and actin organization are stimulated by microtubule inhibitors. J. Cell Sci 93, 255-266.[Abstract/Free Full Text]

Dennerll, T. J., Joshi, H. C., Steel, V. L., Buxbaum, R. E. and Heidemann, S. R (1988). Tension and compression in the cytoskeleton of PC-12 neurites II: Quantitative measurements. J. Cell Biol 107, 665-674.[Abstract/Free Full Text]

Field, C., Li, R. and Oegema, K (1999). Cytokinesis in eukaryotes: a mechanistic comparison. Curr. Opin. Cell Biol 11, 68-80.[Medline]

Fishkind, D. J. and Wang, Y.-L (1995). New horizons for cytokinesis. Curr. Opin. Cell Biol 7, 23-23.[Medline]

Forscher, P. and Smith, S. J (1988). Actions of cytochalasins on the organization of actin filaments and microtubules in a neuronal growth cone. J. Cell Biol 107, 1505-1516.[Abstract/Free Full Text]

Fujiwara, K. and Pollard, T. D (1976). Fluorescent antibody localization of myosin in the cytoplasm, cleavage furrow and mitotic spindle of human cells. J. Cell Biol 71, 848-875.[Abstract/Free Full Text]

Gail, M. H. and Boone, C. W (1971). Effect of colcemid on fibroblast motility. Exp. Cell Res 65, 221-227.[Medline]

Gail, M. H. and Boone, C. W (1971). Cytochalasin effects on BALB/3T3 fibroblasts: dose-dependent, reversible alteration of motility and cytoplasmic cleavage. Exp. Cell Res 68, 226-228.[Medline]

Gavin, R. H (1997). Microtubule-microfilament synergy in the cytoskeleton. Int. Rev. Cytol 173, 207-242.[Medline]

Goldman, R. D (1971). The role of three cytoplasmic fibers in BHK-21 cell motility . I. Microtubules and the effects of colchicine. J. Cell Biol 51, 752-762.[Abstract/Free Full Text]

Gonzalez, M., Cambiazo, V. and Maccioni, R. B (1998). The interaction of Mip-90 with microtubules and actin filaments in human fibroblasts. Exp. Cell Res 239, 243-253.[Medline]

Goode, B. L., Wong, J. J., Butty, A.-C., Peter, M., McCormack, A. L,. Yates, J. R., Drubin, D. G. and Barnes, G (1999). Coronin promotes the rapid assembly and cross-linking of actin filaments and may link the actin and microtubule cytoskeletons in yeast. J. Cell Biol 144, 83-98.[Abstract/Free Full Text]

Griffith, L. M. and Pollard, T. D (1978). Evidence for actin filament-microtubule interaction mediated by microtubule associated proteins. J. Cell Biol 78, 958-965.[Abstract/Free Full Text]

Griffith, L. M. and Pollard, T. D (1982). The association of actin filaments with microtubules and microtubule-associated proteins. J. Biol. Chem 257, 9143-9151.[Abstract/Free Full Text]

Hamaguchi, Y (1975). Microinjection of colchicine into sea urchin eggs. Dev. Growth Differ 17, 111-117.

Hiramoto, Y (1956). Cell division without mitotic apparatus in sea urchin eggs. Exp. Cell Res 11, 630-636.[Medline]

Hiramoto, Y (1971). Analysis of cleavage stimulus by means of micromanipulation of sea urchin eggs. Exp. Cell Res 68, 291-298.[Medline]

Howard, T. H. and Oresajo, C. O (1985). A method for quantifying f-actin in chemotactic peptide activated neutrophils: study of the effect of tBOC peptide. Cell Motil 5, 545-57.[Medline]

Huang, J.-D., Brady, S. T., Richards, B. W., Stenoien, D., Resau, J. H., Copeland, N. G. and Jenkins, N. A (1999). Direct interaction of microtubule-and actin-based transport motors. Nature 397, 267-270.[Medline]

Ingber, D. E (1993). Cellular tensegrity: defining new rules of biological design that govern the cytoskeleton. J. Cell Sci 104, 613-627.[Medline]

Ishikawa, R., Kagemi, O., Hayashi, C. and Kohama, K (1992). Characterization of smooth muscle caldesmon as a microtubule-associated protein. Cell Motil. Cytoskel 23, 244-251.[Medline]

Joshi, H. C., Chu, D., Buxbaum, R. E. and Heidemann, S. R (1985). Tension and compression in the cytoskeleton of PC12 neurites. J. Cell Biol 101, 697-705.[Abstract/Free Full Text]

Kaverina, I., Rottner, K. and Small, J. V (1998). Targeting capture and stabilization of microtubules at early focal adhesions. J. Cell Biol 142, 181-190.[Abstract/Free Full Text]

Kolodney, M. S. and Elson, E. L (1995). Contraction due to microtubule disruption is associated with increased phosphorylation of myosin regulatory light chain. Proc. Nat. Acad. Sci. USA 92, 10252-10256.[Abstract/Free Full Text]

Lantz, V. A. and Miller, K. G (1998). A class VI unconventional myosin is associated with a homologue of a microtubule-binding protein, cytoplasmic linker protein-170, in neurons and at the posterior pole of Drosophila embryos. J. Cell Biol 140, 897-910.[Abstract/Free Full Text]

Leno, G. H. and Laskey, R. A (1991). DNA replication in cell-free extracts from Xenopus laevis. Meth. Cell Biol 36, 561-579.[Medline]

Liao, G. and Gundersen, G. G (1988). Kinesin is a candidate for cross-bridging microtubules and intermediate filaments. J. Biol. Chem 273, 9797-9803.[Abstract/Free Full Text]

Lin, C.-H. and Forscher, P (1993). Cytoskeletal remodeling during growth cone-target interactions. J. Cell Biol 121, 1369-1383.[Abstract/Free Full Text]

Ma, L., Cantley, L. C., Janmey, P. A. and Kirschner, M. W (1998). Corequirement of specific phosphoinositides and small GTP-binding protein cdc42 in inducing actin assembly in egg extracts. J. Cell Biol 140, 1125-1136.[Abstract/Free Full Text]

Mabuchi, I. and Okuno, M (1977). The effect of myosin antibody on the division of starfish blastomeres. J. Cell Biol 74, 251-263.[Abstract/Free Full Text]

Mikhailov, A. and Gundersen, G. G (1998). Relationship between microtubule dynamics and lamellipodium formation revealed by direct imaging of microtubules in cells treated with nocodazole or taxol. Cell Motil. Cytoskel 41, 325-340.[Medline]

Murray, A. W (1991). Cell cycle extracts. Meth. Cell Biol 36, 581-605.[Medline]

Newmeyer, D. D. and K. L. Wison (1991). Nuclear import and assembly reactions. Meth. Cell Biol 36, 607-634.[Medline]

Rappaport, R (1961). Experiments concerning the cleavage stimulus in sand dollar eggs. J. Exp. Zool 148, 81-91.[Medline]

Rappaport, R (1986). Establishment of the mechanisms of cytokinesis in animal cells. Int. Rev. Cytol 105, 245-281.[Medline]

Rosanio, G. R. and Swanson, J. A (1996). Microtubules can modulate pseudopod activity from a distance inside macrophages. Cell Motil. Cytoskel 34, 230-245.[Medline]

Schroeder, T. E (1973). Actin in dividing cells: Contractile ring filaments bind heavy meromyosin. Proc. Nat. Acad. Sci. USA 70, 1688-.[Abstract/Free Full Text]

Stearns, T. and Kirschner, M (1994). In vitro reconstitution of centrosomeassembly and function: The central role of-tubulin. Cell 76, 623-637.[Medline]

Svitkina, T. M., Verkhovsky, A. B. and Borisy, G. G (1996). Plectin sidearms mediate interaction of intermediate filaments with microtubules and other components of the cytoskeleton. J. Cell Biol 135, 991-1007.[Abstract/Free Full Text]

Theriot, J. A., Rosenblatt, J., Portnoy, D. A., Goldschmidt-Clermont, P. J. and Mitchison, T. J (1994). Involvement of profilin in the actin based motility of L. monocytogenes in cells and cell-free extracts. Cell 76, 505-517.[Medline]

Vale, R. D., Reese, T. S. and Sheetz, M. P (1985). Identification of a novel force-generating protein, kinesin, involved in microtubule-based motility. Cell 42, 39-50.[Medline]

Vasiliev, J. M., Gelfand, I. M., Domnina, L. V., Ivanova, O. Y., Komm, S. G. and Olshevskaya, L. V (1970). Effect of colcemid on the locomotory behavior of fibroblasts. J. Embryol. Exp. Morph 24, 625-640.[Medline]

Vasiliev, J. M (1991). Polarization of pseudopodial activities: cytoskeletal mechanisms. J. Cell Sci 98, 1-4.[Abstract/Free Full Text]

Verde, F., Labbe, J., Doree, M. and Karsenti, E (1990). Regulation of microtubule dynamics by cdc2 protein kinase in cell free extracts of Xenopus eggs. Nature 343, 233-243.[Medline]

Vielkind, U. and Swierenga, S. H (1989). A simple fixation procedure for immunofluorescence detection of different cytoskeletal components within the same cell. Histochemistry 91, 81-88.[Medline]

Waterman-Storer, C. M. and Salmon, E. D (1997). Actomyosin-based retrograde flow of microtubules in the lamella of migrating epithelial cellsinfluences microtubule dynamic instability and turnover and is associated with microtubule breakage and treadmilling. J. Cell Biol 139, 417-434.[Abstract/Free Full Text]

Waterman-Storer, C. M. and Salmon, E. D (1999). Positive feedback interactions between microtubule and actin dynamics during cell motility. Curr. Opin. Cell Biol 11, 61-67.[Medline]

Zigmond, S. H. and Hirsch, J. G (1972). Effects of cytochalasin B on polymorphonuclear leucocyte locomotion, phagocytosis and glycolysis. Exp. Cell Res 73, 383-393.[Medline]




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