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THE ULTRASTRUCTURE OF A MAMMALIAN CELL DURING THE MITOTIC CYCLE.
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Localization of a nuclear envelope-associated protein by indirect immunofluorescence microscopy using antibodies against a major polypeptide from rat liver fractions enriched in nuclear envelope-associated material.
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Permanently proliferating rat vascular smooth muscle cell with maintained expression of smooth muscle characteristics, including actin of the vascular smooth muscle type.
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The fates of chicken nuclear lamin proteins during mitosis: evidence for a reversible redistribution of lamin B2 between inner nuclear membrane and elements of the endoplasmic reticulum.
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Functional and dynamic aspects of the mammalian nucleolus.
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Internuclear exchange of an inner nuclear membrane protein (p55) in heterokaryons: in vivo evidence for the interaction of p55 with the nuclear lamina.
J Cell Biol. 1990 Dec;111(6 Pt 1):2225-34
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Immunocytochemical localization of the major polypeptides of the nuclear pore complex-lamina fraction. Interphase and mitotic distribution.
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The nucleus: structure, function, and dynamics.
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Proteins in nucleocytoplasmic interactions. 3. Redistributions of nuclear proteins during and following mitosis in Amoeba proteus.
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A lamin-independent pathway for nuclear envelope assembly.
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Improved system for capillary microinjection into living cells.
Exp Cell Res. 1982 Jul;140(1):31-7
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Monoclonal antibodies identify a group of nuclear pore complex glycoproteins.
J Cell Biol. 1987 May;104(5):1143-56
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A cell free system to study reassembly of the nuclear envelope at the end of mitosis.
Cell. 1986 Feb 28;44(4):639-52
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A somatic cell-derived system for studying both early and late mitotic events in vitro.
J Cell Sci. 1989 Nov;94 ( Pt 3):449-62
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Lamins A and C bind and assemble at the surface of mitotic chromosomes.
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Structure and function of the nuclear pore complex: new perspectives.
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The reconstitution of nuclear envelopes in cell-free extracts.
Cell Biol Int Rep. 1988 Sep;12(9):833-48
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Assembly in vitro of nuclei active in nuclear protein transport: ATP is required for nucleoplasmin accumulation.
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The nuclear envelope.
Curr Opin Cell Biol. 1989 Jun;1(3):435-40
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Nuclear envelope assembly around sperm chromatin in cell-free preparations from Drosophila embryos.
FEBS Lett. 1989 Dec 18;259(1):113-6
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Nucleocytoplasmic sorting of macromolecules following mitosis: fate of nuclear constituents after inhibition of pore complex function.
Eur J Cell Biol. 1989 Oct;50(1):209-19
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Inhibition of nucleolar reformation after microinjection of antibodies to RNA polymerase I into mitotic cells.
J Cell Biol. 1987 Oct;105(4):1483-91
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Light and electron microscopy of rat kangaroo cells in mitosis. I. Formation and breakdown of the mitotic apparatus.
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Identification of a soluble precursor complex essential for nuclear pore assembly in vitro.
Chromosoma. 1990 Dec;100(1):56-66
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Involvement of nuclear lamins in postmitotic reorganization of chromatin as demonstrated by microinjection of lamin antibodies.
J Cell Biol. 1986 Nov;103(5):1847-54
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Functional organization of the nuclear envelope.
Annu Rev Cell Biol. 1988;4:335-74
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Nuclear formation in a Drosophila cell-free system.
Exp Cell Res. 1990 Nov;191(1):64-70
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Monoclonal antibodies to a Mr 68,000 pore complex glycoprotein interfere with nuclear protein uptake in Xenopus oocytes.
Chromosoma. 1988 Nov;97(3):193-7
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On the cell-free association of lamins A and C with metaphase chromosomes.
Exp Cell Res. 1990 Jan;186(1):169-76
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Nuclear lamins and cytoplasmic intermediate filament proteins: a growing multigene family.
Cell. 1987 Jan 16;48(1):3-4
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Nuclear reconstitution in vitro: stages of assembly around protein-free DNA.
Cell. 1987 Jan 30;48(2):205-17
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Formation in vitro of sperm pronuclei and mitotic chromosomes induced by amphibian ooplasmic components.
Science. 1983 May 13;220(4598):719-21
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Functional role of newly formed pore complexes in postmitotic nuclear reorganization.
Chromosoma. 1989 Oct;98(4):233-41
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