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Achtstatter, T., Hatzfeld, M., Quinlan, R. A., Parmelee, D. C. and Franke, W. W (1986). Separation of cytokeratin polypeptides by gel elctrophoretic and chromatographic techniques and their identification by immunoblotting. Meth. Enzymol 134, 355-371.[Medline]

Albers, K. and Fuchs, E (1987). The expression of mutant epidermal keratin cDNAs transfected in simple epithelial and squamous cell carcinoma lines. J. Cell Biol 105, 791-806.[Abstract/Free Full Text]

Albers, K. and Fuchs, E (1989). Expression of mutant keratin cDNAs in epithelial cells reveals possible mechanisms for initiation and assembly of intermediate filaments. J. Cell Biol 108, 1477-1493.[Abstract/Free Full Text]

Blessing, M., Jorcano, J. L. and Franke, W. W (1989). Enhancer elements directing the cell type-specific expression of cytokeratin genes and changes of the epithelial cytoskeleton by transfections of hybrid cytokeratin genes. EMBO J 8, 117-126.[Medline]

Bloemendal, H. and Pieper, F. R (1989). Intermediate filaments: known structure, unknown function. Biochim. Biophys. Acta 1007, 245-253.[Medline]

Chin, S. S. M. and Liem, R. K. H (1989). Expression of rat neurofilament proteins NF-L and NF-M in transfected non-neuronal cells. Eur. J. Cell Biol 50, 475-490.[Medline]

Chou, C. F. and Omary, M. B (1991). Phorbol acetate enhances the phosphorylation of cytokeratin 8 and 18 in human colonic epithelial cells. FEBS Lett 282, 200-204.[Medline]

Chou, C. F., Riopel, C. L., Rott, L. S. and Omary, M. B (1993). A significant soluble keratin fraction in \324simple' epithelial cells. Lack of an apparent phosphorylation and glycosylation role in keratin solubility. J. Cell Sci 105, 433-444.[Abstract]

Chou, Y. H., Rosevear, E. and Goldman, R. D (1989). Phosphorylation and disassembly of intermediate filaments in mitotic cells. Proc. Nat. Acad. Sci. USA 86, 1885-1889.[Abstract/Free Full Text]

Chou, Y. H., Bischoff, J. R., Beach, D. and Goldman, R. D (1990). Intermediate filament reorganization during mitosis is mediated by p34cdc2phosphorylation of vimentin. Cell 62, 1063-1071.[Medline]

Cooper, D., Schermer, A. and Sun, T. T (1985). Classification of human epithelia and their neoplasms using monoclonal antibodies to keratins: strategies, applications and limitations. Lab. Invest 52, 243-256.[Medline]

Coulombe, P. A. and Fuchs, E (1990). Elucidating the early stages of keratin filament assembly. J. Cell Biol 111, 153-169.[Abstract/Free Full Text]

Eichner, R., Sun, T. T. and Aebi, U (1986). The role of keratin subfamilies and keratin pairs in the formation of human epidermal intermediate filaments. J. Cell Biol 102, 1767-1777.[Abstract/Free Full Text]

Franke, W. W., Schiller, D. L. and Grund, C (1982). Intermediate filament proteins in nonfilamentous structures: Transient disintegration and inclusion of subunit proteins in granular aggregates. Cell 30, 103-113.[Medline]

Franke, W. W., Schiller, D. L., Hatzfeld, M. and Winter, S (1983). Protein complexes of intermediate-sized filaments: melting of cytokeratins complexes in urea reveals different polypeptide separation characteristics. Proc. Nat. Acad. Sci. USA 80, 7113-7117.[Abstract/Free Full Text]

Franke, W. W., Schmid, E., Mittnacht, S., Grund, C. and Jorcano, J. L (1984). Integration of different keratins into the same filament system after microinjection of mRNA for epidermal keratins into kidney epithelial cells. Cell 36, 813-825.[Medline]

Fuchs, E., Coppock, S. M., Green, H. and Cleveland, D. W (1981). Two distinct classes of keratin genes and their evolutionary significance. Cell 27, 75-84.[Medline]

Fuchs, E. and Weber, K (1994). Intermediate filaments: structure, dynamics, function and disease. Annu. Rev. Biochem 63, 345-382.[Medline]

Gawlitta, W., Stocke, W., Wehland, J. and Weber, K (1980). Organization and spatial arrangement of fluorescein-labeled native actin microinjected into normal locomoting and experimentally influenced Amoeba proteus. Cell Tissue Res 206, 181-191.[Medline]

Glacy, S. L (1983). Pattern and time course of rhodamine-actin incorporation into cardiac myocytes. J. Cell Biol 96, 1162-1167.

Gruen, L. C. and Woods, E. F (1983). Structural studies on the microfibrillar proteins of wool. Biochem. J 209, 587-595.[Medline]

Hatzfeld, M. and Franke, W. W (1985). Pair formation and promiscuity of cytokeratins: formation in vitro of heterotypic complexes and intermediate-sized filaments by homologous and heterologous recombinations of purified polypeptides. J. Cell Biol 101, 1826-1841.[Abstract/Free Full Text]

Hatzfeld, M. and Weber, K (1990). The coiled-coil of in vitro assembled keratin filaments is a heterodimer of type I and type II keratins: use of site specific mutagenesis and recombinant protein expression. J. Cell Biol 110, 1199-1210.[Abstract/Free Full Text]

Huszar, M., Gigi-Leitner, O., Moll, R., Franke, W. W. and Geiger, B (1986). Monoclonal antibodies to various acidic (type I) cytokeratins of stratified epithelia. Selective markers for stratification and squamous cell carcinomas. Differentiation 31, 141-153.[Medline]

Kemler, R., Br\236let, P., Schnebelen, M. T., Gaillard, J. and Jacob, F (1981). Reactivity of monoclonal antibodies against intermediate filament proteins during embryonic development. J. Embryol. Exp. Morph 64, 45-60.[Medline]

Kouklis, P. D., Hutton, E. and Fuchs, E (1994). Making a connection: direct binding between keratin intermediate filaments and desmosomal proteins. J. Cell Biol 127, 1049-1060.[Abstract/Free Full Text]

Kreis, T., Geiger, B., Schmid, E., Jorcano, J. L. and Franke, W. W (1983). De novo synthesis and specific assembly of keratin filaments in nonepithelialcells after microinjection of mRNA for epidermal keratin. Cell 32, 1125-1137.[Medline]

Kulesh, D. A., Cece\226a, G., Darmon, Y. M., Vasseur, M. and Oshima, R. G (1989). Posttranslational regulation of keratins: Degradation of mouse and human keratins 18 and 8. Mol. Cell Biol 9, 1553-1565.[Abstract/Free Full Text]

Klymkowsky, M. W., Maynell, L. A. and Nislow, C (1991). Cytokeratin phosphorylation, cytokeratin filament severing and the solubilization of the maternal mRNA Vg1. J. Cell Biol 114, 787-797.[Abstract/Free Full Text]

Lane, E. B (1982). Monoclonal antibodies provide specific intramolecular markers for the study of epithelial tonofilament organization. J. Cell Biol 92, 665-673.[Abstract/Free Full Text]

Lane, E. B., Goodman, S. L. and Trejdosiewicz, L. K (1982). Disruption of the keratin filament network during epithelial cell division. EMBO J 1, 1365-1372.[Medline]

Miller, R. K., Vikstrom, K. and Goldman,R. D (1991). Keratin incorporation into intermediate filament network is a rapid process. J. Cell Biol 113, 843-855.[Abstract/Free Full Text]

Miller, R. K., Khuon, S. and Goldman, R. D (1993). Dynamics of keratin assembly: exogenous type I keratin rapidly associates with type II keratin in vivo. J. Cell Biol 122, 123-135.[Abstract/Free Full Text]

Moll, R., Franke, W. W., Schiller, D. L., Geiger, B. and Krepler, R (1982). The catalog of human cytokeratin polypeptides: patterns of expression of specific cytokeratins in normal epithelia, tumors and cultured cells. Cell 31, 11-24.[Medline]

Ngai, J., Coleman, T. R. and Lazarides, E (1990). Localisation of newly synthesized vimentin subunits reveals a novel mechanism of intermediate filament assembly. Cell 60, 415-427.[Medline]

Paladini, R. D., Takahashi, K., Bravo, N. S. and Coulombe, P. A (1996). Onset of re-epithelialization after skin injury correlates with a reorganization of keratin filaments in wound edge keratinocytes: defining a potential role for keratin 16. J. Cell Biol 132, 381-397.[Abstract/Free Full Text]

Paramio, J. M. and Jorcano, J. L (1994). Assembly dynamics of epidermal keratins K1 and K10 in transfected cells. Exp. Cell Res 215, 319-331.[Medline]

Parry, D. A. D., Steven, A. C. and Steinert, P. M (1985). The coiled coil molecules of intermediate filaments consist of two parallel chains in exact axial register. Biochem. Biophys. Res. Commun 127, 1012-1018.[Medline]

Quinlan, R. A., Cohlberg, J. A., Schiller, D. L., Hatzfeld, M. and Franke, W. W (1984). Heterotypic tetramer (A2D2) complexes of non-epidermal keratins isolated from cytoskeletons of rat hepatocytes and hepatoma cells. J. Mol. Biol 178, 365-388.[Medline]

Quinlan, R. A., Hatzfeld, M., Franke, W. W., Lustig, A., Schulthess, T. and Engel, J (1986). Characterization of dimer subunits of intermediate filament proteins. J. Mol. Biol 192, 337-349.[Medline]

Quinlan, R. A., Hutchinson, C. and Lane, E. B (1994). Intermediate filament proteins. Protein Profile 1, 779-911.[Medline]

Raats, J. M. H., Pieper, F. R., Egberts, W. T. M. V., Verrijp, K. N., Raemakers, F. C. and Bloemendal, H (1990). Assembly of amino-terminally deleted desmin in vimentin free cells. J. Cell Biol 111, 1971-1985.[Abstract/Free Full Text]

Raemakers, F. C. S., Puts, J. J. G., Moesker, O., Kant, A., Huymans, A., Haag, D., Jap, P. H. K., Herman, C. and Vooijs, G. P (1983). Antibodies to intermediate filament proteins in the immunohistochemical identification of human tumors: an overview. Histochem. J 15, 691-713.[Medline]

Roop, D. R., Cheng, C. K., Titterington, L., Meyers, C. A., Stanley, J. R., Steinert, P. M. and Yuspa, S. H (1984). Synthetic peptides corresponding to keratin subunits elicit highly specific antibodies. J. Biol. Chem 259, 8037-8040.[Abstract/Free Full Text]

Sammak, P. J., Gorbsky, G. J. and Borisy, G. G (1987). Microtubule dynamics in vivo: a test of mechanism of turnover. J. Cell Biol 104, 395-405.[Abstract/Free Full Text]

Sarria, A. J., Nordeen, S. K. and Evans,R. M (1990). Regulated expression of vimentin cDNA in cells in the presence and absence of preexisting vimentin filament network. J. Cell Biol 111, 533-565.[Abstract/Free Full Text]

Schiller, D. L., Franke, W. W. and Geiger,B (1982). A subfamily of relatively large and basic cytokeratin polypeptides as defined by one or several polypeptides in epithelial cells. EMBO J 1, 761-769.[Medline]

Schmid, E., Schiller, D. L., Grund, C., Stadler, J. and Franke,W. W (1983). Tissue type-specific expression of intermediate filament proteins in a cultured epithelial cell line from bovine mammary gland. J. Cell Biol 96, 37-50.[Abstract/Free Full Text]

Schulze, E. and Kirschner,M (1986). Microtubule dynamics in interphase cells. J. Cell Biol 102, 1020-1031.[Abstract/Free Full Text]

Schwarz, M. A., Owaribe, K., Kartenbeck, J. and Franke,W. W (1990). Desmosomes and hemidesmosomes: constitutive molecular components. Annu. Rev. Cell Biol 6, 461-491.

Stappenbeck, T. S. and Green,K. J (1992). The desmoplakin carboxyl terminus coaligns with and specifically disrupts intermediate filament networks when expressed in cultured cells. J. Cell Biol 116, 1197-1209.[Abstract/Free Full Text]

Steinert, P. M (1990). The two chain coiled-coil molecule of native epidermal keratin intermediate filament is a type I-type II heterodimer. J. Biol. Chem 265, 8766-8774.[Abstract/Free Full Text]

Steinert, P. M (1991). Analysis of the mechanism of assembly of mouse keratin1/keratin 10 intermediate filaments in vitro suggests that intermediate filaments are built from multiple oligomeric units rather than unique tetrameric building blocks. J. Struct. Biol 107, 175-188.[Medline]

Steinert, P. M (1993). Structure, function, and dynamics of keratin intermediate filaments. J. Invest. Dermatol 100, 729-734.[Medline]

Vikstrom, K. L., Borisy, G. G. and Goldman,R. D (1989). Dynamic aspects of intermediate filament networks in BHK-21 cells. Proc. Nat. Acad. Sci. USA 86, 549-553.[Abstract/Free Full Text]

Vikstrom, K. L., Miller, R. K. and Goldman,R. D (1991). Analyzing dynamic properties of intermediate filaments. Meth. Enzymol 176, 506-525.

Vikstrom, K. L., Lim, S. S., Goldman, R. D. and Borisy,G. G (1992). Steady state dynamics of intermediate filament networks. J. Cell Biol 118, 121-129.[Abstract/Free Full Text]

Wadsworth, P. and Sloboda,R. D (1983). Microinjection of fluorescent tubulin into dividing sea urchin cells. J. Cell Biol 97, 1249-1254.[Abstract/Free Full Text]

Wong, P. C. and Cleveland,D. W (1990). Characterization of dominant and recessive assembly defective mutations in mouse neurofilament NF-M. J. Cell Biol 111, 1535-1542.[Abstract/Free Full Text]

Woods,E. F (1983). The number of polypeptide chains in the rod domain of bovine epidermal keratin. Biochem. Int 7, 769-774.[Medline]

Zheng, Q. and Chang,D. C (1991). Reorganization of cytoplasmic structures during cell fusion. J. Cell Sci 100, 431-442.[Abstract/Free Full Text]




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