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Albers, K. M (1996). Keratin biochemistry. Clin. Dermatol 14, 309-320.[Medline]

Andersson, S., Bostr\232m, H., Danielsson, H. and Wikvall, K (1985). Purification from rabbit and rat liver of cytochrome P-450 involved in bile acid biosynthesis. Meth. Enzymol 111, 364-377.[Medline]

Blikstad, I. and Lazarides, E (1983). Vimentin filaments are assembled from a soluble precursor in avian erythroid cells. J. Cell Biol 96, 1803-1808.[Abstract/Free Full Text]

Bridger, J. M., Herrmann, H., Munkel, C. and Lichter, P (1998). Identification of an interchromosomal compartment by polymerization of nuclear-targeted vimentin. J. Cell Sci 111, 1241-1253.[Abstract]

Capetanaki, Y., Milner, D. J. and Weitzer, G (1997). Desmin in muscle formation and maintenance: knockouts and consequences. Cell Struct. Funct 22, 103-116.[Medline]

Carmo-Fonseca, M. and David-Ferreira, J. F (1990). Interactions of intermediate filaments with cell structures. Electron Microsc. Rev 3, 115-141.[Medline]

Carmo-Fonseca, M., Cunha, C., Custodio, N., Carvalho, C., Jordan, P., Ferreira, J. and Parreira, L (1996). The topography of chromosomes and genes in the nucleus. Exp.Cell Res 229, 247-252.[Medline]

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

Cohen, S., Regev, A. and Lavi, S (1997). Small polydispersed circular DNA (spcDNA) in human cells: association with genomic instability. Oncogene 14, 977-985.[Medline]

Colucci-Guyon, E., Portier, M.-M., Dunia, I., Paulin, D., Pournin, S. and Babinet, C (1994). Mice lacking vimentin develop and reproduce without an obvious phenotype. Cell 79, 679-694.[Medline]

Dabauvalle, M.-C., Schultz, B., Scheer, U. and Peters, R (1988). Inhibition of nuclear accumulation of karyophilic proteins by microinjection of the lectin WGA. Exp. Cell Res 174, 291-296.[Medline]

Eriksson, J. E., Opal, P. and Goldman, R. D (1992). Intermediate filament dynamics. Curr. Opin. Cell Biol 4, 99-104.[Medline]

Evans, R. M (1989). Phosphorylation of vimentin in mitotically selected cells. In vitro cyclic AMP-independent kinase and calcium-stimulated phophatase activities. J. Cell Biol 108, 67-78.[Abstract/Free Full Text]

Fagotto, F., Gluck, U. and Gumbiner, B. M (1998). Nuclear localization signal-independent and importin/keryopherin-independent nuclear import of-catenin. Curr. Biol 8, 181-190.[Medline]

Fey, E. G., Wan, K. M. and Penman, S (1984). Epithelial cytoskeletal framework and nuclear matrix-intermediate filament scaffold: Three-dimensional organization and protein composition. J. Cell Biol 98, 1973-1984.[Abstract/Free Full Text]

Fidlerov\207, H., Sovov\207, V., Krekule, I., Viklicky, V. and Levan, G (1992). Immunofluorescence detection of the vimentin epitope in chromatin structures of cell nuclei and chromosomes. Hereditas 117, 265-273.[Medline]

Finlay, D. R., Newmeyer, D. D., Price, T. M. and Forbes, D. J (1987). Inhibition of in vitro nuclear transport by a lectin that binds to nuclear pores. J. Cell Biol 104, 189-200.[Abstract/Free Full Text]

French, S. W., Kawahara, H., Katsuma, Y., Ohta, M. and Swierenga, S. H. H (1989). Interaction of intermediate filaments with nuclear lamina and cell periphery. Electron Microsc. Rev 2, 17-51.[Medline]

Fricker, M., Hollinshead, M., White, N. and Vaux, D (1997). Interphase nuclei of many mammalian cell types contain deep, dynamic, tubular membrane-bound invaginations of the nuclear envelope. J. Cell Biol 136, 531-544.[Abstract/Free Full Text]

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

Fuchs, E (1997). Of mice and men: genetic disorders of the cytoskeleton. Mol. Biol. Cell 8, 189-203.[Abstract]

Galou, M., Gao, J., Humbert, J., Mericskay, M., Li, Z., Paulin, D. and Vicart, P (1997). The importance of intermediate filaments in the adaptation of tissues to mechanical stress: Evidence from gene knockout studies. Biol. Cell 89, 85-97.[Medline]

Gaubatz, J. W (1990). Extrachromosomal circular DNAs and genomic sequence plasticity in eukaryotic cells. Mutat. Res 237, 271-292.[Medline]

Giese, G., Schmidt, J., Gilbert, M., Albrecht, R. and Traub, P (1997). TPA induces apoptosis in MPC-11 mouse plasmacytoma cells grown in serum-free medium. Biol. Cell 89, 99-111.[Medline]

Haaf, T. and Schmid, M (1991). Chromosome topology in mammalian interphase nuclei. Exp. Cell Res 192, 325-332.[Medline]

Hagstrom, J. E., Ludtke, J. J., Bassik, M. C., Sebestyen, M. G., Adam, S. A. and Wolff, J.A (1997). Nuclear import of DNA in digitonin-permeabilized cells. J. Cell Sci 110, 2323-2331.[Abstract]

Hartig, R., Huang, Y., Janetzko, A., Shoeman, R., Grub, S. and Traub, P (1997). Binding of fluorescence-and gold-labeled oligodeoxyribonucleotides to cytoplasmic intermediate filaments in epithelial and fibroblast cells. Exp. Cell Res 233, 169-186.[Medline]

He, D., Nickerson, J. A. and Penman, S (1990). Core filaments of the nuclear matrix. J. Cell Biol 110, 569-580.[Abstract/Free Full Text]

Houseweart, M. K. and Cleveland, D. W (1998). Intermediate filaments and their associated proteins: multiple dynamic personalities. Curr. Opin. Cell Biol 10, 93-101.[Medline]

Hoz\207k, P., Sasseville, A. M.-J., Raymond, Y. and Cook, P.R (1995). Lamin proteins form an internal nucleoskeleton as well as a peripheral lamina in human cells. J. Cell Sci 108, 635-644.[Abstract]

Inagaki, M., Inagaki, N., Takahashi, T. and Takai, Y (1997). Phosphorylation-dependent control of structures of intermediate filaments: A novel approach using site-and phosphorylation state-specific antibodies. J. Biochem 121, 407-414.

Jackson, D. A. and Cook, P. R (1988). Visualization of a filamentous nucleoskeleton with a 23 nm axial repeat. EMBO J 7, 3667-3677.[Medline]

Kiyama, R., Oishi, M. and Kanda, N (1989). Cytoplasmic localization of human repetitive DNA revealed by in situ hybridization. Exp. Cell Res 183, 239-244.[Medline]

Klymkowsky, M. W., Bachant, J. B. and Domingo, A (1989). Functions of intermediate filaments. Cell Motil. Cytoskel 14, 309-331.[Medline]

Kubitscheck, U., Wedekind, P., Zeidler, O., Grote, M. and Peters, R (1996). Single nuclear pores visualized by confocal microscopy and image processing. Biophys. J 70, 2067-2077.[Abstract/Free Full Text]

Kuhn, S., Vorgias, C. E. and Traub, P (1987). Interaction in vitro of nonepithelial intermediate filament proteins with supercoiled plasmid DNA. J. Cell Sci 87, 543-554.[Abstract/Free Full Text]

Lamb, N. J. C., Fernandez, A., Feramisco, J. R. and Welch, W. J (1989). Modulation of vimentin containing intermediate filament distribution and phosphorylation in living fibroblasts by the cAMP-dependent protein kinase. J. Cell Biol 108, 2409-2422.[Abstract/Free Full Text]

Lazarides, E (1980). Intermediate filaments as mechanical integrators of cellular space. Nature 283, 249-256.[Medline]

Luderus, M. E. E., de Graaf, A., Mattia, E., den Blaauwen, J. L., Grande, M. A., de Jong, L. and van Driel, R (1992). Binding of matrix attachment regions to lamin B. Cell 70, 949-959.[Medline]

Luderus, M. E. E., den Blaauwen, J. L., de Smit, O. J. B., Compton, D. A. and van Driel, R (1994). Binding of matrix attachment regions to lamin polymers involves single-stranded regions and the minor groove. Mol. Cell. Biol 14, 6297-6305.[Abstract/Free Full Text]

Lui, P. P. Y., Lee, C. Y., Tsang, D. and Kong, S. K (1998). Ca2+is released from the nuclear tubular structure into nucleoplasm in C6 glioma cells after stimulation with phorbol ester. FEBS Lett 432, 82-87.[Medline]

Marugg, R. A (1992). Transient storage of a nuclear matrix protein along intermediate-type filaments during mitosis: A novel function of cytoplasmic intermediate filaments. J. Struct. Biol 108, 129-139.[Medline]

Maxon, M. E., Redfield, B., Cai, X.-Y., Shoeman, R., Fujita, K., Fisher, W., Stauffer, G., Weissbach, H. and Brot, N (1989). Regulation of methionine biosynthesis in E. coli . Effect of the MetR protein on the expression of the metE and metR genes. Proc. Nat. Acad. Sci. USA 86, 85-89.[Abstract/Free Full Text]

Nelson, W. J., Vorgias, C. E. and Traub, P (1982). A rapid method for the large scale purification of the intermediate filament protein vimentin by single-stranded DNA-cellulose affinity chromatography. Biochem. Biophys. Res. Commun 106, 1141-1147.[Medline]

Nigg, E. A (1992). Assembly and cell cycle dynamics of the nuclear lamina. Semin. CellBiol 3, 245-253.[Medline]

Ortiz-Lombardia, M., Eritja, R., Azorin, F., Kypr, J., Tejralova, I. and Vorlickova, M (1995). Divalent zinc cations induce the formation of two distinct homoduplexes of a d(GA)20DNA sequence. Biochemistry 34, 14408-14415.[Medline]

Raats, J. M. H. and Bloemendal, H (1992). The role of protein domains in the assembly process of intermediate filaments. Progr. Nucl. Acid Res. Mol. Biol 43, 67-86.[Medline]

Shiber, M. C., Braswell, E. H., Klump, H. and Fresco, J. R (1996). Duplex-tetraplex equilibrium between a hairpin and two interacting hairpins of d(A-G)10at neutral pH. Nucl. Acids Res 24, 5004-5012.[Abstract/Free Full Text]

Shoeman, R. L., Hartig, R., Huang, Y., Grub, S. and Traub, P (1997). Fluorescence microscopic comparison of the binding of phosphodiester and phosphorothioate (antisense) oligodeoxyribonucleotides to subcellular structures, including intermediate filaments, the endoplasmic reticulum and the nuclear interior. Antisense Nucl. Acid Drug Dev 7, 291-308.[Medline]

Shoeman, R. L., Wadle, S., Scherbarth, A. and Traub, P (1988). The binding in vitro of the intermediate filament protein vimentin to synthetic oligonucleotides containing telomere sequences. J. Biol. Chem 263, 18744-18749.[Abstract/Free Full Text]

Skalli, O. and Goldman, R. D (1991). Recent insights into the assembly, dynamics, and function of intermediate filament networks. Cell Motil. Cytoskel 19, 67-79.[Medline]

Soellner, P., Quinlan, R. A. and Franke, W. W (1985). Identification of a distinct soluble subunit of an intermediate filament protein: Tetrameric vimentin from living cells. Proc. Nat. Acad. Sci. USA 82, 7929-7933.[Abstract/Free Full Text]

Stanfield, S. W. and Helinski, D. R (1984). Cloning and characterization of small circular DNA from Chinese hamster ovary cells. Mol. Cell. Biol 4, 173-180.[Abstract/Free Full Text]

Steinert, P. M., Steven, A. S. and Roop, D. R (1985). The molecular biology of intermediate filaments. Cell 42, 411-419.[Medline]

Steinert, P. M. and Roop, D. R (1988). Molecular and cellular biology of intermediate filaments. Annu. Rev. Biochem 57, 593-625.[Medline]

Tapper, D. P., van Etten, R. A. and Clayton, D. A (1983). Isolation of mitochondrial DNA and RNA and cloning of the mitochondrial genome. Meth. Enzymol 97, 426-434.[Medline]

Traub, P. and Nelson, W. J (1982). Interaction of the intermediate filament protein vimentin with ribosomal subunits and ribosomal RNA in vitro. Mol. Biol. Rep 8, 239-247.[Medline]

Traub, P. and Nelson, W. J (1983). The interaction in vitro of the intermediate filament protein vimentin with synthetic polyribo-and polydeoxyribonucleotides. Hoppe Seyler's Z. Physiol. Chem 364, 575-592.[Medline]

Traub, P. and Vorgias, C. E (1983). Involvement of the N-terminal polypeptide of vimentin in the formation of intermediate filaments. J. Cell Sci 63, 43-67.[Abstract]

Traub, P., Nelson, W. J., Kuhn, S. and Vorgias, C. E (1983). The interaction in vitro of the intermediate filament protein vimentin with naturally occurring RNAs and DNAs. J.Biol. Chem 258, 1456-1466.[Abstract/Free Full Text]

Traub, P., Mothes, E., Shoeman, R., Kuhn, S. and Scherbarth, A (1992). Characterization of the nucleic acid-binding activities of the isolated amino-terminal head domain of the intermediate filament protein vimentin reveals its close relationship to the DNA-binding regions of some prokaryotic single-stranded DNA-binding proteins. J. Mol.Biol 228, 41-57.[Medline]

Traub, P. and Shoeman, R. L (1994). Intermediate filament proteins: Cytoskeletal elements with gene-regulatory function?. Int. Rev. Cytol 154, 1-103.[Medline]

Traub, P. and Shoeman, R. L (1994). Intermediate filament and related proteins: Potential activators of nucleosomes during transcription initiation and elongation?. BioEssays 16, 349-355.[Medline]

Wang, X. and Traub, P (1991). Resinless section immunogold electron microscopy of karyo-cytoskeletal frameworks of eukaryotic cells cultured in vitro. Absence of a salt-stable nuclear matrix from mouse plasmacytoma MPC-11 cells. J. Cell Sci 98, 107-122.[Abstract/Free Full Text]




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