Experimental induction of prenucleolar bodies (PNBs) in interphase cells: interphase PNBs show similar characteristics as those typically observed at telophase of mitosis in untreated cells
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[1] Wolfgang C. Schlegel,et al. Multiparameter microscopic analysis of nucleolar structure and ribosomal gene transcription , 1996, Histochemistry and Cell Biology.
[2] G. Morcillo,et al. The effect of RNA synthesis inhibitors on prenucleolar bodies , 1980, Experientia.
[3] J. Suja,et al. Nucleolar cycle and localization of NORs in early embryos of Parascaris univalens , 1995, Chromosoma.
[4] M. V. Semenov,et al. The RNA polymerase I-specific transcription initiation factor UBF is associated with transcriptionally active and inactive ribosomal genes , 1993, Chromosoma.
[5] W. Filipowicz,et al. Structure and function of nucleolar snRNPs , 1993, Molecular Biology Reports.
[6] Y. Chentsov,et al. Differential decondensation of mitotic chromosomes during hypotonic treatment of living cells as a possible cause of G-banding: an ultrastructural study , 1989, Chromosoma.
[7] R. Ochs,et al. Nucleologenesis: Composition and fate of prenucleolar bodies , 2004, Chromosoma.
[8] H. Spring,et al. Reassembly of functional nucleoli following in situ unraveling by low-ionic-strength treatment of cultured mammalian cells. , 1997, Experimental cell research.
[9] I. Todorov,et al. Cell cycle-dependent translocations of a major nucleolar phosphoprotein, B23, and some characteristics of its variants. , 1997, European journal of cell biology.
[10] D. Hernandez-Verdun,et al. The rDNA transcription machinery is assembled during mitosis in active NORs and absent in inactive NORs , 1996, The Journal of cell biology.
[11] F. Medina,et al. Components of the nucleolar processing complex (Pre-rRNA, fibrillarin, and nucleolin) colocalize during mitosis and are incorporated to daughter cell nucleoli. , 1995, Experimental cell research.
[12] A. Matera,et al. Coiled bodies contain U7 small nuclear RNA and associate with specific DNA sequences in interphase human cells. , 1995, Proceedings of the National Academy of Sciences of the United States of America.
[13] M. Berridge,et al. Calcium signalling and cell proliferation , 1995, BioEssays : news and reviews in molecular, cellular and developmental biology.
[14] C. Pai,et al. Cell-cycle-dependent alterations of a highly phosphorylated nucleolar protein p130 are associated with nucleologenesis. , 1995, Journal of cell science.
[15] U. Scheer,et al. A possible mechanism for the inhibition of ribosomal RNA gene transcription during mitosis , 1995, The Journal of cell biology.
[16] J. Fléchon,et al. Localization of fibrillarin and nucleolin in nucleoli of mouse preimplantation embryos , 1995, Molecular reproduction and development.
[17] M. Carmo-Fonseca,et al. The biogenesis of the coiled body during early mouse development. , 1995, Development.
[18] C. Murphy,et al. Is the sphere organelle/coiled body a universal nuclear component? , 1995, Developmental genetics.
[19] L Lucas,et al. Three-dimensional co-location of RNA polymerase I and DNA during interphase and mitosis by confocal microscopy. , 1995, Journal of cell science.
[20] C. Pai,et al. Cell cycle-dependent alterations of a highly phosphorylated nucleolar protein p 130 are associated with nucleologenesis , 1995 .
[21] D. Spector,et al. Nucleologenesis: U3 snRNA-containing prenucleolar bodies move to sites of active pre-rRNA transcription after mitosis. , 1994, Molecular biology of the cell.
[22] A. Means,et al. Calcium, calmodulin and cell cycle regulation , 1994, FEBS letters.
[23] C. Murphy,et al. In vitro assembly of coiled bodies in Xenopus egg extract. , 1994, Molecular biology of the cell.
[24] D. Hernandez-Verdun,et al. The chromosome periphery during mitosis , 1994, BioEssays : news and reviews in molecular, cellular and developmental biology.
[25] M. Caizergues-Ferrer,et al. Cell cycle redistribution of U3 snRNA and fibrillarin. Presence in the cytoplasmic nucleolus remnant and in the prenucleolar bodies at telophase. , 1994, Journal of cell science.
[26] U. Scheer,et al. The nucleolus. , 1994, Current opinion in cell biology.
[27] G. Pierron,et al. Mitotic segregation of the nucleolar ribosomal RNA in Physarum polycephalum. , 1993, Experimental cell research.
[28] C. Walsh,et al. Nucleolus-like morphology produced during the in vitro reassociation of nucleolar components , 1993, The Journal of cell biology.
[29] M. Thiry,et al. Structure, function and assembly of the nucleolus. , 1993, Trends in cell biology.
[30] N. Chaly,et al. Reversible disassembly of transcription domains in lymphocyte nuclei during inhibition of RNA synthesis by DRB , 1993, Biology of the cell.
[31] P. Callaerts,et al. Electrical-ionic control of gene expression. , 1992, The International journal of biochemistry.
[32] D. Hernandez-Verdun,et al. Revealing nucleolar architecture by low ionic strength treatment. , 1992, Experimental cell research.
[33] M. Dabauvalle,et al. In vitro assembly of prenucleolar bodies in Xenopus egg extract , 1992, The Journal of cell biology.
[34] M. Thiry. Ultrastructural detection of DNA within the nucleolus by sensitive molecular immunocytochemistry. , 1992, Experimental cell research.
[35] R. Pepperkok,et al. Transcription-dependent colocalization of the U1, U2, U4/U6, and U5 snRNPs in coiled bodies , 1992, The Journal of cell biology.
[36] D. Lane,et al. p68 RNA helicase: identification of a nucleolar form and cloning of related genes containing a conserved intron in yeasts , 1991, Molecular and cellular biology.
[37] B. Yung,et al. Short exposure to actinomycin D induces "reversible" translocation of protein B23 as well as "reversible" inhibition of cell growth and RNA synthesis in HeLa cells. , 1990, Cancer research.
[38] Y. Chentsov,et al. The silver-stained NOR and argentophilic nuclear proteins in early mouse embryogenesis: a cytological study. , 1990, Cell differentiation and development : the official journal of the International Society of Developmental Biologists.
[39] D. Hernandez-Verdun,et al. A 116,000 Mr nucleolar antigen specific for the dense fibrillar component of the nucleoli. , 1990, Journal of cell science.
[40] R. Benavente,et al. Functional and dynamic aspects of the mammalian nucleolus , 1990, BioEssays : news and reviews in molecular, cellular and developmental biology.
[41] R. Ochs,et al. Nucleologenesis: use of non‐isotopic in situ hybridization and immunocytochemistry to compare the localization of rDNA and nucleolar proteins during mitosis , 1989, Biology of the cell.
[42] J. Steitz,et al. Identification of the human U7 snRNP as one of several factors involved in the 3' end maturation of histone premessenger RNA's. , 1987, Science.
[43] G. Reimer,et al. Inhibition of nucleolar reformation after microinjection of antibodies to RNA polymerase I into mitotic cells , 1987, The Journal of cell biology.
[44] W. Franke,et al. A constitutive nucleolar protein identified as a member of the nucleoplasmin family. , 1987, The EMBO journal.
[45] Prof. Dr. Asen A. Hadjiolov. The Nucleolus and Ribosome Biogenesis , 1985, Cell Biology Monographs.
[46] M. Escande,et al. Immunolocalization of the 100 kDa nucleolar protein during the mitotic cycle in CHO cells , 1985, Biology of the cell.
[47] R. Ochs,et al. Localization of nucleolar phosphoproteins B23 and C23 during mitosis. , 1983, Experimental cell research.
[48] G. Goessens,et al. Nucleologenesis in Ehrlich tumour cells. , 1978, Experimental cell research.
[49] J. Farber,et al. The induction of fibrillar nucleoli in rat liver cells by D-galactosamine and their subsequent re-formation into normal nucleoli. , 1973, Journal of ultrastructure research.
[50] W. Bernhard. A new staining procedure for electron microscopical cytology. , 1969, Journal of ultrastructure research.
[51] B. Stevens. THE FINE STRUCTURE OF THE NUCLEOLUS DURING MITOSIS IN THE GRASSHOPPER NEUROBLAST CELL , 1965, The Journal of cell biology.