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Brown, D. D. and Dawid, I. B (1968). Specific gene amplification in oocytes. Oocyte nuclei contain extrachromosomal replicas of the genes for ribosomal RNA. Science 160, 272-280.[Free Full Text]

Budde, A. and Grummt, I (1999). p53 represses ribosomal gene transcription. Oncogene 18, 1119-1124.[Medline]

Cavanaugh, A. H., Hempel, W. M., Taylor, L. J., Rogalsky, V., Todorov, G. and Rothblum, L. I (1995). Activity of RNA polymerase I transcription factor UBF blocked by Rb gene product. Nature 374, 177-180.[Medline]

Chan, E. K., Imai, H., Hamel, J. C. and Tan, E. M (1991). Human autoantibody to RNA polymerase I transcription factor hUBF. Molecular identity of nucleolus organizer region autoantigen NOR-90 and ribosomalRNA transcription upstream binding factor. J. Exp. Med 174, 1239-1244.[Abstract/Free Full Text]

Dawid, I. B (1965). Deoxyribonucleic acid in amphibian eggs. J. Mol. Biol 12, 581-599.[Medline]

Grummt, I (1999). Regulation of mammalian ribosomal gene transcription by RNA polymerase I. Prog. Nucleic Acid Res. Mol. Biol 62, 109-154.[Medline]

Hasegawa, T., Takeuchi, A., Miyaishi, O., Xiao, H., Mao, J. and Isobe, K (2000). PTRF (polymerase I and transcript-release factor) is tissue-specific and interacts with the BFCOL1 (binding factor of a type-I collagen promoter) zinc-finger transcription factor which binds to the two mouse type-I collagen gene promoters. Biochem. J 347, 55-59.

Hoff, C. M., Ghosh, A. K., Prabhakar, B. S. and Jacob, S. T (1994). Enhancer 1 binding factor, a Ku-related protein, is a positive regulator of RNA polymerase I transcription initiation. Proc. Natl. Acad. Sci. USA 91, 762-766.[Abstract/Free Full Text]

Iuchi, S. and Green, H (1999). Basonuclin, a zinc finger protein of keratinocytes and reproductive germ cells, binds to the rRNA gene promoter. Proc. Natl. Acad. Sci. USA 96, 9628-9632.[Abstract/Free Full Text]

Jansa, P. and Grummt, I (1999). Mechanism of transcription termination: PTRF interacts with the largest subunit of RNA polymerase I and dissociates paused transcription complexes from yeast and mouse. Mol. Gen. Genet 262, 508-514.[Medline]

Jansa, P., Mason, S. W., Hoffmann-Rohrer, U. and Grummt, I (1998). Cloning and functional characterization of PTRF, a novel protein which induces dissociation of paused ternary transcription complexes. EMBO J 17, 2855-2864.[Medline]

Kaplan, G., Abreu, S. L. and Bachvarova, R (1982). rRNA accumulation and protein synthetic patterns in growing mouse oocytes. J. Exp Zoo 220, 220-226.

Kopecny, V., Landa, V. and Pavlok, A (1995). Localization of nucleic acids in the nucleoli of oocytes and early embryos of mouse and hamster: an autoradiographic study. Mol. Reprod. Dev 41, 449-458.[Medline]

Kuhn, A., Stefanovsky, V. and Grummt, I (1993). The nucleolar transcription activator UBF relieves Ku antigen-mediated repression of mouse ribosomal gene transcription. Nucleic Acids Res 21, 2057-2063.[Abstract/Free Full Text]

Kuhn, A., Voit, R., Stefanovsky, V., Evers, R., Bianchi, M. and Grummt, I (1994). Functional differences between the two splice variants of the nucleolar transcription factor UBF: the second HMG box determines specificity of DNA binding and transcriptional activity. EMBO J 13, 416-424.[Medline]

Kuhn, A., Gottlieb, T. M., Jackson, S. P. and Grummt, I (1995). DNA-dependent protein kinase: a potent inhibitor of transcription by RNA polymerase I. Genes Dev 9, 193-203.[Abstract/Free Full Text]

Mahoney, M. G., Tang, W., Xiang, M. M., Moss, S. B., Gerton, G. L., Stanley, J. R. and Tseng, H (1998). Translocation of the zinc finger protein basonuclin from the mouse germ cell nucleus to the midpiece of the spermatozoon during spermiogenesis. Biol. Reprod 59, 388-394.[Abstract/Free Full Text]

Masson, C., Fomproix, N., Sz\232ll\232si, M. S., Debey, P. and Hernandez-Verdun, D (1996). Conditions favoring RNA polymerase I transcription in permeabilized cells. Exp. Cell Res 226, 114-125.[Medline]

Matsuzaki, K., Iuchi, S. and Green, H (1997). Conservation of human and mouse basonuclins as a guide to important features of the protein. Gene 195, 87-92.[Medline]

Mattson, B. A. and Albertini, D. F (1990). Oogenesis: Chromatin and microtubule dynamics during meiotic prophase. Mol. Reprod. Dev 25, 374-383.[Medline]

McStay, B., Frazier, M. W. and Reeder, R. H (1991). xUBF contains a novel dimerization domain essential for RNA polymerase I transcription. Genes Dev 5, 1957-1968.[Abstract/Free Full Text]

Moore, G. P. M. and Lintern-Moore, S (1978). Transcription of the mouse oocyte genome. Biol. Reprod 18, 865-870.[Abstract]

Niu, H. and Jacob, S. T (1994). Enhancer 1 binding factor (E1BF), a Ku-related protein, is a growth-regulated RNA polymerase I transcription factor: association of a repressor activity with purified E1BF from serum-deprived cells. Proc. Natl. Acad. Sci. USA 91, 9101-9105.[Abstract/Free Full Text]

O'Mahony, D. J., Smith, S. D., Xie, W. and Rothblum, L. I (1992). Analysis of the phosphorylation, DNA-binding and dimerization properties of the RNA polymerase I transcription factors UBF1 and UBF2. Nucleic Acids Res 20, 1301-1308.[Abstract/Free Full Text]

Pankratz, M. J., Hoch, M., Seifert, E. and Jackle, H (1989). Kruppel requirement for knirps enhancement reflects overlapping gap gene activities in the Drosophila embryo. Nature 341, 337-340.[Medline]

Penman, S., Smith, I., Holtzman, E. and Greenberg, H (1966). RNA metabolism in the HeLa cell nucleus and nucleolus. Natl. Cancer Inst. Monogr 23, 489-512.

Perkowska, E., Macgregor, H. C. and Birnstiel, M. L (1968). Gene amplification in the oocyte nucleus of mutant and wild-type Xenopus laevis. Nature 217, 649-650.[Medline]

Schultz, R. M (1993). Regulation of zygotic gene activation in the mouse. BioEssays 15, 531-538.[Medline]

Schultz, R. M., LaMarca, M. J. and Wassarman, P. M (1978). Absolute rates of protein synthesis during meiotic maturation of mammalian oocytes in vitro. Proc. Natl. Acad. Sci. USA 75, 4160-4164.[Abstract/Free Full Text]

Stanojevic, D., Hoey, T. and Levine, M (1989). Sequence-specific DNA-binding activities of the gap proteins encoded by hunchback and Kruppel in Drosophila. Nature 341, 331-335.[Medline]

Sternlight, A. L. and Schultz, R. M (1981). Biochemical studies of mammalian oogenesis: kinetics of accumulation of total and poly(A)-containing RNA during growth of the mouse oocyte. J. Exp. Zool 215, 191-200.[Medline]

Treisman, J. and Desplan, C (1989). The products of the Drosophila gap genes hunchback and Kruppel bind to the hunchback promoters. Nature 341, 335-337.[Medline]

Tseng, H., Beigel, J. A. and Brown, R. S (1999). Basonuclin is associated with the ribosomal RNA genes on human keratinocyte mitotic chromosomes. J. Cell Sci 112, 3039-3047.[Abstract]

Tseng, H. and Green, H (1988). Remodeling of the involucrin gene during primate evolution. Cell 54, 491-496.[Medline]

Tseng, H. and Green, H (1992). Basonuclin: a keratinocyte proteinwithmultiple paired zinc fingers. Proc. Natl. Acad. Sci. USA 89, 10311-10315.[Abstract/Free Full Text]

Tseng, H. and Green, H (1994). Association of basonuclin with ability of keratinocytes to multiply and with absence of terminal differentiation. J. Cell Biol 126, 495-506.[Abstract/Free Full Text]

Voit, R., Kuhn, A., Sander, E. E. and Grummt, I (1995). Activation of mammalian ribosomal gene transcription requires phosphorylation of the nucleolar transcription factor UBF. Nucleic Acids Res 23, 2593-2599.[Abstract/Free Full Text]

Voit, R., Schafer, K. and Grummt, I (1997). Mechanism of repression of RNA polymerase I transcription by the retinoblastoma protein. Mol. Cell. Biol 17, 4230-4237.[Abstract]

Yang, Z. H., Gallicano, G. I., Yu, Q.-C. and Fuchs, E (1997). An unexpected localization of basonuclin in the centrosome, mitochondria and acrosome of developing spermatids. J. Cell Biol 137, 657-670.[Abstract/Free Full Text]

Zhai, W., Tuan, J. and Comai, L (1997). SV40 large T antigen binds to the TBP-TAFIcomplex SL-1 and coactivates ribosomal RNA transcription. Genes Dev 11, 1605-1617.[Abstract/Free Full Text]

Zhai, W. and Comai, L (1999). A kinase activity associated with simian virus 40 T antigen phosphorylates upstream binding factor (UBF) and promotes formation of a stable initiation complex between UBF and SL1. Mol. Cell. Biol 19, 2791-2802.[Abstract/Free Full Text]




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