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Andreoli,J. M. and Trevor, K. T (1994). Fate of a headless vimentin protein in stable cell cultures: soluble and cytoskeletal forms. Exp. Cell Res 214, 177-188.[Medline]

Bader, B. L., Magin, T. M., Freudenmann, M., Stumpp, S. and Franke, W. W (1991). Intermediate filaments formed de novo from tail-less cytokeratins in the cytoplasm and in the nucleus. J. Cell Biol 115, 1293-1307.[Abstract/Free Full Text]

Beuttenmuler, M., Chen, M., Janetzko, A., Kuhn, S. and Traub, P (1994). Structural elements of the amino-terminal head domain of vimentin essential for intermediate filament formation in vivo and in vitro. Exp. Cell Res 213, 128-142.[Medline]

Chen, W. J. and Liem, R. K (1994). The endless story of the glial fibrillary acidic protein. J. Cell Sci 107, 2299-2311.[Abstract]

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

Chin, S. S. and Liem, R. K (1990). Transfected rat high-molecular-weight neurofilament (NF-H) coassembles with vimentin in a predominantly nonphosphorylated form. J. Neurosci 10, 3714-3726.[Abstract]

Ching, G. Y. and Liem, R. K (1991). Structure of the gene for the neuronal intermediate filament protein alpha-internexin and functional analysis of its promoter. J. Biol. Chem 266, 19459-19468.[Abstract/Free Full Text]

Ching, G. Y. and Liem, R. K (1993). Assembly of type IV neuronal intermediate filaments in nonneuronal cells in the absence of preexisting cytoplasmic intermediate filaments. J. Cell Biol 122, 1323-1335.[Abstract/Free Full Text]

Chiu, F. C., Barnes, E. A., Das, K., Haley, J., Socolow, P., Macaluso, F. P. and Fant, J (1989). Characterization of a novel 66 kd subunit of mammalian neurofilaments. Neuron 2, 1435-1445.[Medline]

Cui, C., Stambrook, P. J. and Parysek, L. M (1995). Peripherin assembles into homopolymers in SW13 cells. J. Cell Sci 108, 3279-3284.[Abstract]

Djabali, K., Portier, M. M., Gros, F., Blobel, G. and Georgatos, S. D (1991). Network antibodies identify nuclear lamin B as a physiological attachment site for peripherin intermediate filaments. Cell 64, 109-121.[Medline]

Dong, D. L., Xu, Z. S., Chevrier, M. R., Cotter, R. J., Cleveland, D. W. and Hart, G. W (1993). Glycosylation of mammalian neurofilaments. Localization of multiple O-linked N-acetylglucosamine moieties on neurofilament polypeptides L and M. J. Biol. Chem 268, 16679-16687.[Abstract/Free Full Text]

Eckelt, A., Herrmann, H. and Franke, W. W (1992). Assembly of a tail-less mutant of the intermediate filament protein, vimentin, in vitro and in vivo. Eur. J. Cell Biol 58, 319-330.[Medline]

Fliegner, K. H., Ching, G. Y. and Liem, R. K (1990). The predicted amino acid sequence of alpha-internexin is that of a novel neuronal intermediate filament protein. EMBO 9, 749-755.[Medline]

Fliegner, K. H. and Liem, R. K (1991). Cellular and molecular biology of neuronal intermediate filaments. Int. Rev. Cytol 131, 109-167.[Medline]

Fliegner, K. H., Kaplan, M. P., Wood, T. L., Pintar, J. E. and Liem, R. K (1994). Expression of the gene for the neuronal intermediate filament protein alpha-internexin coincides with the onset of neuronal differentiation in the developing rat nervous system. J. Comp.Neurol 342, 161-173.[Medline]

Forman, B. M., Yang, C. R., Stanley, F., Casanova, J. and Samuels, H. H (1988). c-erbA protooncogenes mediate thyroid hormone-dependent and independent regulation of the rat growth hormone and prolactin genes. Mol. Endocrinol 2, 902-911.[Medline]

Geisler, N. and Weber, K (1981). Self-assembly in vitro of the 68,000 molecular weight component of the mammalian neurofilament triplet proteins into intermediate-sized filaments. J. Mol. Biol 151, 565-571.[Medline]

Geisler, N., Kaufmann, E. and Weber, K (1982). Proteinchemical characterization of three structurally distinct domains along the protofilament unit of desmin 10 nm filaments. Cell 30, 277-286.[Medline]

Geisler, N., Schunemann, J. and Weber, K (1992). Chemical cross-linking indicates a staggered and antiparallel protofilament of desmin intermediate filaments and characterizes one higher-level complex between protofilaments. Eur. J. Biochem 206, 841-852.[Medline]

Georgatos, S. D. and Blobel, G (1987). Two distinct attachment sites for vimentin along the plasma membrane and the nuclear envelope in avian erythrocytes: a basis for a vectorial assembly of intermediate filaments. J. Cell Biol 105, 105-115.[Abstract/Free Full Text]

Gill, S. R., Wong, P. C., Monterio, M. J. and Cleveland, D.W (1990). Assembly properties of domainant and recessive mutations in the small mouse neurofilament (NF-L) subunit. J. Cell Biol 111, 2005-2019.[Abstract/Free Full Text]

Hatzfeld, M. and Burba, M (1994). Function of type I and type II keratin head domains: their role in dimer, tetramer and filament formation. J. Cell Sci 107, 1959-1972.[Abstract]

Hatzfeld, M. and Weber, K (1991). Modulation of keratin intermediate filament assembly by single amino acid exchanges in the consensus sequence at the C-terminal end of the rod domain. J. Cell Sci 99, 351-362.[Abstract/Free Full Text]

Heins, S. and Aebi, U (1994). Making heads and tails of intermediate filament assembly, dynamics and networks. Curr. Opin. Cell Biol 6, 25-33.[Medline]

Herrmann, H., Haner, M., Brettel, M., Muller, S. A., Goldie, K. N., Fedtke,B., Lustig, A., Franke, W. W. and Aebi, U (1996). Structure and assembly properties of the intermediate filament protein vimentin: the role of its head, rod and tail domains. J. Mol. Biol 264, 933-953.[Medline]

Herrmann, H., Hofmann, I. and Franke, W. W (1992). Identification of a nonapeptide motif in the vimentin head domain involved in intermediate filament assembly. J. Mol. Biol 223, 637-650.[Medline]

Hirokawa, N (1982). Cross-linker system between neurofilaments, microtubules, and membranous organelles in frog axons revealed by the quick-freeze, deep-etching method. J. Cell Biol 94, 129-142.[Abstract/Free Full Text]

Ho, C. L., Chin, S. S., Carnevale, K. and Liem, R. K (1995). Translation initiation and assembly of peripherin in cultured cells. Eur. J. Cell Biol 68, 103-112.[Medline]

Kaplan, M. P., Chin, S. S., Fliegner, K. H. and Liem, R. K (1990). Alpha-internexin, a novel neuronal intermediate filament protein, precedes the low molecular weight neurofilament protein (NF-L) in the developing rat brain. J. Neurosci 10, 2735-2748.[Abstract]

Kaplan, M. P., Chin, S. S., Macioce, P., Srinawasan, J., Hashim, G. and Liem, R. K (1991). Characterization of a panel of neurofilament antibodies recognizing N-terminal epitopes. J. Neurosci. Res 30, 545-554.[Medline]

Kouklis, P. D., Traub, P. and Georgatos, S. D (1992). Involvement of the consensus sequence motif at coil 2b in the assembly and stability of vimentin filaments. J. Cell Sci 102, 31-41.[Abstract/Free Full Text]

Laemmli, U. K (1970). Cleavage of structural proteins during the assembly of the head of bacteriophage T4. Nature 227, 680-685.[Medline]

Lee, M. K. and Cleveland, D. W (1996). Neuronal intermediate filaments. Annu. Rev. Neurosci 19, 187-217.[Medline]

Lee, M. K., Xu, Z., Wong, P. C. and Cleveland, D. W (1993). Neurofilaments are obligate heteropolymers in vivo. J. Cell Biol 122, 1337-1350.[Abstract/Free Full Text]

Letai, A., Coulombe, P. A. and Fuchs, E (1992). Do the ends justify the mean? Proline mutations at the ends of the keratin coiled-coil rod segment are more disruptive than internal mutations. J. Cell Biol 116, 1181-1195.[Abstract/Free Full Text]

Liem, R. K (1993). Molecular biology of neuronal intermediate filaments. Curr. Opin. Cell Biol 5, 12-16.[Medline]

Liem, R. K. and Hutchison, S. B (1982). Purification of individual components of the neurofilament triplet: filament assembly from the 70 000-dalton subunit. Biochemistry 21, 3221-3226.[Medline]

Lu, X. and Lane, E. B (1990). Retrovirus-mediated transgenic keratin expression in cultured fibroblasts: specific domain functions in keratin stabilization and filament formation. Cell 62, 681-696.[Medline]

Makarova, I., Carpenter, D., Khan, S. and Ip, W (1994). A conserved region in the tail domain of vimentin is involved in its assembly into intermediate filaments. Cell Motil. Cytoskel 28, 265-277.[Medline]

McCormick, M. B., Kouklis, P., Syder, A. and Fuchs, E (1993). The roles of the rod end and the tail in vimentin IF assembly and IF network formation. J. Cell Biol 122, 395-407.[Abstract/Free Full Text]

Miyasaka, H., Okabe, S., Ishiguro, K., Uchida, T. and Hirokawa, N (1993). Interaction of the tail domain of high molecular weight subunits of neurofilaments with the COOH-terminal region of tubulin and its regulation by tau protein kinase II. J. Biol. Chem 268, 22695-22702.[Abstract/Free Full Text]

Nixon, R. A. and Shea, T. B (1992). Dynamics of neuronal intermediate filaments: a developmental perspective. Cell Motil. Cytoskel 22, 81-91.[Medline]

Raats, J. M., Gerards, W. L., Schreuder, M. I., Grund, C., Henderik, J. B., Hendriks, I. L., Ramaekers, F. C. and Bloemendal, H (1992). Biochemical and structural aspects of transiently and stably expressed mutant desmin in vimentin-free and vimentin-containing cells. Eur. J. Cell Biol 58, 108-127.[Medline]

Raats, J. M., Henderik, J. B., Verdijk, M., van Oort, F. L., Gerards, W. L., Ramaekers, F. C. and Bloemendal, H (1991). Assembly of carboxy-terminally deleted desmin in vimentin-free cells. Eur. J. Cell Biol 56, 84-103.[Medline]

Raats, J. M., Pieper, F. R., Vree Egberts, W. T., Verrijp, K. N., Ramaekers, 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]

Rogers, K. R., Eckelt, A., Nimmrich, V., Janssen, K. P., Schliwa, M., Herrmann, H. and Franke, W. W (1995). Truncation mutagenesis of the non-alpha-helical carboxyterminal tail domain of vimentin reveals contributions to cellular localization but not to filament assembly. Eur. J. Cell Biol 66, 136-150.[Medline]

Sarria, A. J., Nordeen, S. K. and Evans, R. M (1990). Regulated expression of vimentin cDNA in cells in the presence and absence of a preexisting vimentin filament network. J. Cell Biol 111, 553-565.[Abstract/Free Full Text]

Sihag, R. K., Jeng, A. Y. and Nixon, R. A (1988). Phosphorylation of neurofilament proteins by protein kinase C. FEBS Lett 233, 181-185.[Medline]

Sihag, R. K. and Nixon, R. A (1989). In vivo phosphorylation of distinct domains of the 70-kilodalton neurofilament subunit involves different protein kinases [published erratum appears in J. Biol. Chem . 1989 Mar 5;264(7):4264]. J. Biol. Chem 264, 457-464.[Abstract/Free Full Text]

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

Steinert, P. M. and Parry, D. A (1993). The conserved H1 domain of the type II keratin 1 chain plays an essential role in the alignment of nearest neighbor molecules in mouse and human keratin 1/keratin 10 intermediate filaments at the two-to four-molecule level of structure. J. Biol. Chem 268, 2878-2887.[Abstract/Free Full Text]

Steinert, P. M., Marekov, L. N., Fraser, R. D. and Parry, D. A (1993). Keratin intermediate filament structure. Crosslinking studies yield quantitative information on molecular dimensions and mechanism of assembly. J. Mol. Biol 230, 436-452.[Medline]

Steinert, P. M., Marekov, L. N. and Parry, D. A (1993). Diversity of intermediate filament structure. Evidence that the alignment of coiled-coil molecules in vimentin is different from that in keratin intermediate filaments. J. Biol. Chem 268, 24916-24925.[Abstract/Free Full Text]

Stewart, M., Quinlan, R. A. and Moir, R. D (1989). Molecular interactions in paracrystals of a fragment corresponding to the alpha-helical coiled-coil rod portion of glial fibrillary acidic protein: evidence for an antiparallel packing of molecules and polymorphism related to intermediate filament structure. J. Cell Biol 109, 225-234.[Abstract/Free Full Text]

Streifel, T. D., Avalos, R. T. and Cohlberg, J. A (1996). cAMP-dependent phosphorylation of neurofilament proteins NF-L and NF-M inhibits their coassembly into filaments in vitro. Biochem. Biophys. Res. Commun 222, 646-651.[Medline]

Sun, D., Macioce, P., Chin, S. S. and Liem, R. K (1997). Assembly properties of amino-and carboxyl-terminally truncated neurofilament NF-H proteins with NF-L and NF-M in the presence and absence of vimentin. J. Neurochem 68, 917-926.[Medline]

Tanaka, J., Ogawara, M., Ando, S., Shibata, M., Yatani, R., Kusagawa, M. and Inagaki, M (1993). Phosphorylation of a 62 kd porcine alpha-internexin, a newly identified intermediate filament protein. Biochem. Biophys. Res. Commun 196, 115-123.[Medline]

Toru-Delbauffe, D., Pierre, M., Osty, J., Chantoux, F. and Francon, J (1986). Properties of neurofilament protein kinase. Biochem. J 235, 283-289.[Medline]

Towbin, H., Staehelin, T. and Gordon, J (1979). Electrophoretic transfer of proteins from polyacrylamide gels to nitrocellulose sheets: procedure and some applications. Proc. Nat. Acad. Sci.USA 76, 4350-4354.[Abstract/Free Full Text]

Wilson, A. K., Coulombe, P. A. and Fuchs, E (1992). The roles of K5 and K14 head, tail, and R/K L L E G E domains in keratin filament assembly in vitro. J. Cell Biol 119, 401-414.[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, 1987-2003.[Abstract/Free Full Text]




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