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Proteinchemical characterization of three structurally distinct domains along the protofilament unit of desmin 10 nm filaments.
Cell. 1982 Aug;30(1):277-86
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Rat monoclonal antitubulin antibodies derived by using a new nonsecreting rat cell line.
J Cell Biol. 1982 Jun;93(3):576-82
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The catalog of human cytokeratins: patterns of expression in normal epithelia, tumors and cultured cells.
Cell. 1982 Nov;31(1):11-24
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Complete amino acid sequence of a mouse epidermal keratin subunit and implications for the structure of intermediate filaments.
Nature. 1983 Apr 28;302(5911):794-800
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Tissue specificity of epithelial keratins: differential expression of mRNAs from two multigene families.
Mol Cell Biol. 1983 Apr;3(4):495-502
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The cDNA sequence of a Type II cytoskeletal keratin reveals constant and variable structural domains among keratins.
Cell. 1983 Jul;33(3):915-24
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Type I and type II keratins have evolved from lower eukaryotes to form the epidermal intermediate filaments in mammalian skin.
Proc Natl Acad Sci U S A. 1983 Oct;80(19):5857-61
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Cessation of cytokeratin expression in a rat hepatoma cell line lacking differentiated functions.
Nature. 1983 Oct 20-26;305(5936):730-3
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Bodian's silver method reveals molecular variation in the evolution of neurofilament proteins.
Brain Res. 1983 Nov 14;278(1-2):219-23
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Distinctions between gap junctions and sites of intermediate filament attachment in the leech C.N.S.
J Neurocytol. 1983 Oct;12(5):805-15
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Intermediate filaments, microtubules and microfilaments in epidermis of sea urchin tube foot.
Cell Tissue Res. 1984;236(1):27-33
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Neurofilaments, a subclass of intermediate filaments: structure and expression.
Cold Spring Harb Symp Quant Biol. 1983;48 Pt 2:717-29
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Molecular biology of neuronal geometry: expression of neurofilament genes influences axonal diameter.
Cold Spring Harb Symp Quant Biol. 1983;48 Pt 2:731-44
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Detection of a cytokeratin determinant common to diverse epithelial cells by a broadly cross-reacting monoclonal antibody.
EMBO J. 1982;1(11):1429-37
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Neurofilament architecture combines structural principles of intermediate filaments with carboxy-terminal extensions increasing in size between triplet proteins.
EMBO J. 1983;2(8):1295-302
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A light and electron microscope study of the abdominal ganglion of Aplysia californica.
J Neurophysiol. 1967 Nov;30(6):1263-87
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Cleavage of structural proteins during the assembly of the head of bacteriophage T4.
Nature. 1970 Aug 15;227(5259):680-5
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Microtubule densities and total numbers in selected axons of the crayfish abdominal nerve cord.
J Neurocytol. 1974 Mar;3(1):73-86
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High resolution two-dimensional electrophoresis of proteins.
J Biol Chem. 1975 May 25;250(10):4007-21
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Axoplasm architecture and physical properties as seen in the Myxicola giant axon.
J Physiol. 1975 Dec;253(1):257-301
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Neurofibrillary tangles of paired helical filaments.
J Neurol Sci. 1976 Feb;27(2):173-81
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The expression of keratin genes in epidermis and cultured epidermal cells.
Cell. 1978 Nov;15(3):887-97
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Localization of actin and microfilament-associated proteins in the microvilli and terminal web of the intestinal brush border by immunofluorescence microscopy.
J Cell Biol. 1978 Dec;79(3):839-45
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Identification of the subunit proteins of 10-nm neurofilaments isolated from axoplasm of squid and Myxicola giant axons.
J Cell Biol. 1979 Aug;82(2):336-46
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The organization of cytokeratin filaments in the intestinal epithelium.
Eur J Cell Biol. 1979 Aug;19(3):255-68
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Helically twisted filaments in giant neurons of a whip spider.
Eur J Cell Biol. 1979 Aug;19(3):303-6
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Widespread occurrence of intermediate-sized filaments of the vimentin-type in cultured cells from diverse vertebrates.
Exp Cell Res. 1979 Oct 1;123(1):25-46
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Electrophoretic transfer of proteins from polyacrylamide gels to nitrocellulose sheets: procedure and some applications.
Proc Natl Acad Sci U S A. 1979 Sep;76(9):4350-4
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In vitro reassembly of squid brain intermediate filaments (neurofilaments): purification by assembly-disassembly.
Science. 1980 Jun 6;208(4448):1152-5
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The septum of the lateral axon of the earthworm: a thin section and freeze-fracture study.
J Neurocytol. 1979 Oct;8(5):565-90
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Antibodies as probes of cellular differentiation and cytoskeletal organization in the mouse blastocyst.
Exp Cell Res. 1980 Dec;130(2):297-304
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Formation of cytoskeletal elements during mouse embryogenesis. Intermediate filaments of the cytokeratin type and desmosomes in preimplantation embryos.
Differentiation. 1980;17(3):161-79
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Isolation and characterization of desmosome-associated tonofilaments from rat intestinal brush border.
J Cell Biol. 1981 Jul;90(1):116-27
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Two Drosophila melanogaster proteins related to intermediate filament proteins of vertebrate cells.
J Cell Biol. 1981 Oct;91(1):175-83
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The polypeptide composition of axoplasm and of neurofilaments from the marine worm Myxicola infundibulum.
Biochem J. 1981 Oct 1;199(1):89-100
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Monoclonal antibodies show that neurofibrillary tangles and neurofilaments share antigenic determinants.
Nature. 1982 Jul 1;298(5869):84-6
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Monoclonal cytokeratin antibodies that distinguish simple from stratified squamous epithelia: characterization on human tissues.
EMBO J. 1982;1(12):1641-7
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Intermediate-sized filaments in Drosophila tissue culture cells.
J Cell Biol. 1984 Oct;99(4 Pt 1):1468-77
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Intermediate filament cDNAs from BHK-21 cells: demonstration of distinct genes for desmin and vimentin in all vertebrate classes.
Proc Natl Acad Sci U S A. 1984 Oct;81(19):5970-4
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Identification of two types of keratin polypeptides within the acidic cytokeratin subfamily I.
J Mol Biol. 1984 Oct 25;179(2):257-81
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The use of aIF, AE1, and AE3 monoclonal antibodies for the identification and classification of mammalian epithelial keratins.
Differentiation. 1984;28(1):30-5
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Control of germ cell nuclear behaviour at fertilization by Tetrahymena intermediate filament protein.
Nature. 1985 Mar 14-20;314(6007):192-4
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All classes of intermediate filaments share a common antigenic determinant defined by a monoclonal antibody.
Cell. 1981 Dec;27(3 Pt 2):419-28
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The skin of Amphioxus.
Z Zellforsch Mikrosk Anat. 1961;54:90-104
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In vitro assembly and disassembly of 14-nm filament from Tetrahymena pyriformis. The protein component of 14-nm filament is a 49,000-Dalton protein.
J Biochem. 1982 May;91(5):1563-73
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Cold Spring Harb Symp Quant Biol. 1982;46 Pt 1:413-29
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Differentiation-related patterns of expression of proteins of intermediate-size filaments in tissues and cultured cells.
Cold Spring Harb Symp Quant Biol. 1982;46 Pt 1:431-53
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Two-dimensional protein analysis at high resolution on a microscale.
J Biol Chem. 1982 Dec 25;257(24):15229-34
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