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Cassimeris, L., McNeill, H. and Zigmond, S. H (1990). Chemoattractant-stimulated polymorphonuclear leucocytes contain two populations of actin filaments that differ in their spatial distributions and relative stabilities. J. Cell Biol 110, 1067-1075.[Abstract/Free Full Text]

Cotanche, D. A. and Corwin, J. T (1991). Stereociliary bundles reorient during hair cell development and regeneration in the chick cochlea. Hearing Res 52, 379-402.[Medline]

DeLozanne, A. and Spudich, J. A (1987). Disruption of the Dictyostelium myosin heavy chain gene by homologous recombination. Science 236, 1086-1091.[Abstract/Free Full Text]

DeRosier, D. J. and Tilney, L. G (1989). The structure of the cuticular plate, an in vivo actin gel. J. Cell Biol 109, 2853-2867.[Abstract/Free Full Text]

Drenckhahn, D., Engel, K., Hofer, D., Merte, C., Tilney, L. G. and Tilney, M. S (1991). Three different actin filament assemblies occur in every hair cell: each contains a specific actin crosslinking protein. J. Cell Biol 112, 641-651.[Abstract/Free Full Text]

Gillespie, P. G. and Hudspeth, A. J (1991). High-purity isolation of bullfrog hair bundles and subcellular and topological localization of constituent proteins. J. Cell Biol 112, 625-640.[Abstract/Free Full Text]

Hirokawa, N. and Tilney, L. G (1982). Interactions between actin filaments and between actin filaments and membranes in quick frozen and deeply etched hair cells of the chick ear. J. Cell Biol 95, 249-261.[Abstract/Free Full Text]

Hudspeth, A. J. ( (1985). The cellular basis of hearing: The biophysics of hair cells. Science 230, 745-752.[Abstract/Free Full Text]

Noegel, A. A. and Schleicher, M (1991). Phenotypes of cells with cytoskeletal mutations. Curr. Opin. Cell Biol 3, 18-26.[Medline]

Pickles, J. O., Brix, J., Comis, S. D., Gleich, O., K\232ppl, C., Manley, G. A.and Osborne, M. P (1989). The organization of tip links and stereocilia on hair cells of bird and lizard basilar papillae. Hearing Res 41, 31-42.[Medline]

Pickles, J. O., Perger, M. V., Rouse, G. W. and Brix, J (1991). The development of links between stereocilia in hair cells of the chick basilar papilla. Hearing Res 54, 153-163.[Medline]

Shepherd, G. M. G., Barres, B. A. and Corey, D. P (1989). \322Bundle blot\323 purification and initial protein characterization of hair cell stereocilia. Proc. Nat. Acad. Sci. U.S.A 86, 4973-4977.[Abstract/Free Full Text]

Stone, J. S. and Cotanche, D. A (1991). Hair cell differentiation in the developing chick cochlea and in embryonic cochlear organ culture. J. Comp. Neurol 314, 1-12.[Medline]

Symons, M. H. and Mitchison, T. J (1991). Control of actin polymerization in live and permeabilized fibroblasts. J. Cell Biol 114, 503-513.[Abstract/Free Full Text]

Tilney, L. G. and DeRosier, D. J (1986). Actin filaments, stereocilia, and hair cells of the bird cochlea IV. How the actin filaments become organized in developing stereocilia and in the cuticular plate. Devel. Biol 116, 119-129.[Medline]

Tilney, L. G., Bonder, E. M. and DeRosier, D. J (1981). Actin filaments elongate from their membrane-associated ends. J. Cell Biol 90, 485-494.[Abstract/Free Full Text]

Tilney, L. G., Egelman, E. H., DeRosier, D. J. and Saunders, J. C (1983). Actin filaments, stereocilia, and hair cells of the bird cochlea II. Packing of actin filaments in the stereocilia and in the cuticular plate and what happens to the organization when the stereocilia are bent. J. Cell Biol 96, 822-834.[Abstract/Free Full Text]

Tilney, L. G. and Inoue, S (1982). The acrosomal reaction of Thyone sperm. II. The kinetics and possible mechanism of acrosomal process elongation. J. Cell Biol 93, 820-827.[Abstract/Free Full Text]

Tilney, L. G. and Saunders, J. C (1983). Actin filaments, stereocilia, and hair cells of the bird cochlea I. The length, number, width and distribution of stereocilia of each hair cell are related to the position of the hair cell on the cochlea. J. Cell Biol 96, 807-821.[Abstract/Free Full Text]

Tilney, L. G., Tilney, M. S., Saunders, J. C. and DeRosier, D. J (1986). Actin filaments, stereocilia, and hair cells of the bird cochlea III. The development and differentiation of hair cells and stereocilia in embryos. Devel. Biol 116, 100-118.[Medline]

Tilney, L. G. and Tilney, M. S (1988). The actin filament content of hair cells of the bird cochlea is nearly constant even though the length, width, and number of stereocilia vary depending on the hair cell location. J. Cell Biol 107, 2563-2574.[Abstract/Free Full Text]

Tilney, L. G., Tilney, M. S. and Cotanche, D. A (1988). Actin filaments, stereocilia, and hair cells of the bird cochlea V. How the staircase pattern of stereociliary lengths is generated. J. Cell Biol 106, 355-366.[Abstract/Free Full Text]

Tilney, M. S., Tilney, L. G., Stephens, R. S., Merte, C., Drenckhahn, D., Cotanche, D. A. and Bretscher, A (1989). Preliminary biochemical characterization of the stereocilia and cuticular plate of hair cells of the chick cochlea. J. Cell Biol 109, 1711-1723.[Abstract/Free Full Text]




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