spacer gif spacer gif spacer gif spacer gif spacer gif
 QUICK SEARCH:   [advanced]


spacer gif
     Home     Help     Feedback     Subscriptions     Archive     Search     Table of Contents    


This Article
Right arrow Summary Freely available
Right arrow Full Text (PDF)
Right arrow Alert me when this article is cited
Right arrow Alert me if a correction is posted
Services
Right arrow Email this article to a friend
Right arrow Similar articles in this journal
Right arrow Similar articles in PubMed
Right arrow Alert me to new issues of the journal
Right arrow Download to citation manager
Right arrow reprints & permissions
Citing Articles
Right arrow Citing Articles via HighWire
Right arrow Citing Articles via Google Scholar
Google Scholar
Right arrow Articles by Adenot, P. G.
Right arrow Articles by Thompson, E. M.
Right arrow Search for Related Content
PubMed
Right arrow PubMed Citation
Right arrow Articles by Adenot, P. G.
Right arrow Articles by Thompson, E. M.
Adenot, P. G., Mercier, Y., Renard, J. P. and Thompson, E. M (1997). Differential H4 acetylation of paternal and maternal chromatin preceedes DNA replication and differential transcriptional activity in pronuclei of 1-cell mouse embryos. Development 124, 4615-4625.[Abstract]

Ajiro, K., Yoda, K., Utsumi, K. and Nishikawa, Y (1996). Alteration of cell cycle-dependent histone phosphorylations by okadaic acid-induction of mitosis-specific H3 phosphorylation and chromatin condensation in mammalian interphase cells. J. Biol. Chem 271, 13197-13201.[Abstract/Free Full Text]

Allan, J., Smith, B. J., Dunn, B. and Bustin, M (1982). Antibodies against the folding domain of histone H5 cross-react with H1(0) but not with H1. J. Biol. Chem 257, 10533-10535.[Abstract/Free Full Text]

Almouzni, G. and Wolffe, A. P (1995). Constraints on transcriptional activator function contribute to transcriptional quiescence during early Xenopus embryogenesis. EMBO J 14, 1752-1765.[Medline]

Aoki, F., Worrad, D. M. and Schultz, R. M (1997). Regulation of transcriptional activity during the first and second cell cycles in the preimplantation mouse embryo. Dev. Biol 181, 296-307.[Medline]

Bleher, R. and Martin, R (1999). Nucleo-cytoplasmic translocation of histone H1 during the Hela cell cycle. Chromosoma 108, 308-316.[Medline]

Bonnerot, C., Vernet, M., Grimber, G., Briand, P. and Nicolas, J. F (1991). Transcriptional selectivity in early mouse embryos: a qualitative study. Nucleic Acids Res 19, 7251-7257.[Abstract/Free Full Text]

Bouvet, P., Dimitrov, S. I. and Wolffe, A. P (1994). Specific regulation of Xenopus chromosomal 5S rRNA gene transcription in vivo by histone H1. Genes Dev 8, 1147-1159.[Abstract/Free Full Text]

Brown, D. T., Gunjan, A., Alexander, B. T. and Sittman, D. B (1997). Differential effect of H1 variant overproduction on gene expression is due to differences in the central globular domain. Nucleic Acids Res 25, 5003-5009.[Abstract/Free Full Text]

Burglin, T. R., Mattaj, I. W., Newmeyer, D. D., Zeller, R. and De Robertis, E. M (1987). Cloning of nucleoplasmin from Xenopus laevis oocytes and analysis of its developmental expression. Genes Dev 1, 97-107.[Abstract/Free Full Text]

Chadee, D. N., Taylor, W. R., Hurta, R. A. R., Allis, C. D., Wright, J. A. and Davie, J. R (1995). Increased phosphorylation of histone H1 in mouse fibroblasts transformed with oncogenes or constitutively active mitogen-activated protein kinase kinase. J. Biol. Chem 270, 20098-20105.[Abstract/Free Full Text]

Clarke, H. J., Oblin, C. and Bustin, M (1992). Developmental regulation of chromatin composition during mouse embryogenesis: somatic histone H1 is first detectable at the 4-cell stage. Development 115, 791-799.[Abstract]

Clarke, H. J., Bustin, M. and Oblin, C (1997). Chromatin modifications during oogenesis in the mouse: removal of somatic subtypes of histone H1 from oocyte chromatin occurs post-natally through a post-transcriptional mechanism. J. Cell Sci 110, 477-487.[Abstract]

Dasso, M., Dimitrov, S. I. and Wolffe, A. P (1994). Nuclear assembly and replication is independent of linker histone. Proc. Natl. Acad. Sci. USA 91, 12477-12481.[Abstract/Free Full Text]

Dimitrov, S., Almouzni, G., Dasso, M. and Wolffe, A. P (1993). Chromatin transitions during early Xenopus embryogenesis: changes in histone H4 acetylation and in linker histone type. Dev. Biol 160, 214-227.[Medline]

Dimitrov, S., Dasso, M. C. and Wolffe, A. P (1994). Remodeling sperm chromatin in Xenopus laevis egg extracts: the role of core histone phosphorylation and linker histone B4 in chromatin assembly. J. Cell. Biol 126, 591-601.[Abstract/Free Full Text]

Dimitrov, S. and Wolffe, A. P (1996). Remodeling somatic nuclei in Xenopus laevis egg extracts: molecular mechanisms for the selective release of histone H1 and H1degfrom chromatin and the acquisition of transcriptional competence. EMBO J 15, 5897-5906.[Medline]

Djondjurov, L. P., Yancheva, N. Y. and Ivanova, E. C (1983). Histones of terminally differentiated cells undergo continuous turnover. Biochemistry 22, 4095-4102.[Medline]

Dou, Y., Mizzen, C. A., Abrams, M., Allis, C. D. and Gorovsky, M. A (1999). Phosphorylation of linker histone H1 regulates gene expression in vivo by mimicking H1 removal. Mol. Cell 4, 641-647.

Dousson, S., Gorka, C., Gilly, C. and Lawrence, J. J (1989). Histone H1(0) mapping using monoclonal antibodies. Eur. J. Immunol 19, 1123-1129.[Medline]

Franke, K., Drabent, B. and Doenecke, D (1998). Expression of murine H1 histone genes during postnatal development. Biochim. Biophys. Acta 1398, 232-242.[Medline]

Gavin, A. C., Cavadore, J. C. and Schorderet-Slatkine, S (1994). Histone H1 kinase activity, germinal vesicle breakdown and M phase entry in mouse oocytes. J. Cell. Sci 107, 275-283.[Abstract]

Gorka, C., Brocard, M. P., Curtet, S. and Khochbin, S (1998). Differential recognition of histone H1degby monoclonal antibodies during cell differentiation and the arrest of cell proliferation. J. Biol. Chem 273, 1208-1215.[Abstract/Free Full Text]

Guo, X. W., Th'ng, J. P., Swank, R. A., Anderson, H. J., Tudan, C., Bradbury, E. M. and Roberge, M (1995). Chromosome condensation induced by fostriecin does not require p34cdc2 kinase activity and histone H1 hyperphosphorylation, but is associated with enhanced histone H2A and H3 phosphorylation. EMBO J 14, 976-985.[Medline]

Helliger, W., Lindner, H., Grubl-Knosp, O. and Puschendorf, B (1992). Alteration in proportions of histone H1 variants during the differentiation of murine erythroleukaemic cells. Biochem. J 288, 747-751.

Hill, C. S., Packman, L. C. and Thomas, J. O (1990). Phosphorylation at clustered-Ser-Pro-X-Lys/Arg-motifs in sperm-specific histone H1 and H2B. EMBO J 9, 805-813.[Medline]

Howe, L., Itoh, T., Katagiri, C. and Ausio, J (1998). Histone H1 bindingdoes not inhibit transcription of nucleosomal Xenopus laevis somatic 5S rRNA templates. Biochemistry 37, 7077-7082.[Medline]

J\212kel, S., Albig, W., Kutay, U., Bischoff, F. R., Schwamborn, K., Doenecke, D. and Gorlich, D (1999). The importin B/importin 7 heterodimer is a functional nuclear import receptor for histone H1. EMBO J 18, 2411-2423.[Medline]

Kurz, M., Doenecke, D. and Albig, W (1997). Nuclear transport of H1 histones meets the criteria of a nuclear localization signal-mediated process. J. Cell. Biochem 64, 573-578.[Medline]

Laskey, R. A., Mills, A. D., Philpott, A., Leno, G. H., Dilworth, S. M. and Dingwall, C (1993). The role of nucleoplasmin in chromatin assembly and disassembly. Philos. Trans. R. Soc. Lond. B. Biol. Sci 339, 263-269.[Medline]

Latham, K. E (1999). Mechanisms and control of embryonic genome activation in mammalian embryos. Int. Rev. Cytol 193, 71-124.[Medline]

Lin, P. and Clarke, H. J (1996). Somatic histone H1 microinjected into fertilized mouse eggs is transported into the pronuclei but does not disrupt subsequent preimplantation development. Mol. Reprod. Dev 44, 185-192.[Medline]

Litvin, J. and King, M. L (1988). Expression and segregation of nucleoplasmin during development in Xenopus. Development 102, 9-21.[Abstract/Free Full Text]

Lu, M. J., Dadd, C. A., Mizzen, C. A., Perry, C. A., McLachlan, D. R., Annunziato, A. T. and Allis, C. D (1994). Generation and characterization of novel antibodies highly selective for phosphorylated linker histone H1 in Tetrahymena and HeLa cells. Chromosoma 103, 111-121.[Medline]

Maeda, Y., Yanagimachi, H., Tateno, H., Usui, N. and Yanagimachi, R (1998). Decondensation of the mouse sperm nucleus within the interphase nucleus. Zygote 6, 39-45.[Medline]

Mandl, B., Brandt, W. F., Superti-Furga, G., Graninger, P. G., Birnstiel, M. L. and Busslinger, M (1997). The five cleavage-stage (CS) histones of the sea urchin are encoded by a maternally expressed family of replacement histone genes: functional equivalence of the CS H1 and frog H1M (B4) proteins. Mol. Cell. Biol 17, 1189-1200.[Abstract]

McLay, D. W. and Clarke, H. J (1997). The ability to organize sperm DNA into functional chromatin is acquired during me\225otic maturation in murine oocytes. Dev. Biol 186, 73-84.[Medline]

Monk, M., Boubelik, M. and Lehnert, S (1987). Temporal and regional changes in DNA methylation in the embryonic, extraembryonic and germ cell lineages during mouse embryo development. Development 99, 371-382.[Abstract]

Montag, M., Tok, V., Liow, S. L., Bongso, A. and Ng, S. C (1992). In vitro decondensation of mammalian sperm and subsequent formation of pronuclei-like structures for micromanipulation. Mol. Reprod. Dev 33, 338-346.[Medline]

Nakayama, T., Takechi, S. and Takami, Y (1993). The chicken histone gene family. Comp. Biochem. Physiol. B 104, 635-639.[Medline]

Ner, S. S. and Travers, A. A (1994). HMG-D, the Drosophila melanogaster homologue of HMG 1 protein, is associated with early embryonic chromatin in the absence of histone H1. EMBO J 13, 1817-1822.[Medline]

Newport, J. and Kirschner, M (1982). A major developmental transition in early Xenopus embryos: II. Control of the onset of transcription. Cell 30, 687-696.[Medline]

Nightingale, K., Dimitrov, S., Reeves, R. and Wolffe, A. P (1996). Evidence for a shared structural role for HMG1 and linker histones B4 and H1 in organizing chromatin. EMBO J 15, 548-561.[Medline]

Nonchev, S. and Tsanev, R (1990). Protamine-histone replacement and DNA replication in the male mouse pronucleus. Mol. Reprod. Dev 25, 72-76.[Medline]

Ohsumi, K., Katagiri, C. and Kishimoto, T (1993). Chromosome condensation in Xenopus mitotic extracts without histone H1. Science 262, 2033-2035.[Abstract/Free Full Text]

Perreault, S. D (1992). Chromatin remodeling in mammalian zygotes. Mutat. Res 296, 43-55.[Medline]

Pittoggi, C., Renzi, L., Zaccagnini, D., Cimini, D., Degrassi, F., Giordano, R., Magnano, A. R., Lorenzini, R., Lavia, P. and Spadafora, C (1999). A fraction of mouse sperm chromatin is organized in nucleosomal hypersensitive domains enriched in retroposon DNA. J. Cell Sci 112, 3537-3548.[Abstract]

Ramakrishnan, V (1997). Histone structure and the organization of the nucleosome. Annu. Rev. Biophys. Biomol. Struct 26, 83-112.[Medline]

Roth, S. Y. and Allis, C. D (1992). Chromatin condensation: does histone H1 dephosphorylation play a role?. Trends Biochem. Sci 17, 93-98.[Medline]

Rousseau, D., Khochbin, S., Gorka, C. and Lawrence, J. J (1992). Induction of H1(0)-gene expression in B16 murine melanoma cells. Eur. J. Biochem 208, 775-779.[Medline]

Sera, T. and Wolffe, A. P (1998). Role of histone H1 as an architectural determinant of chromatin structure and as a specific repressor of transcription on Xenopus oocyte 5S rRNA genes. Mol. Cell. Biol 18, 3668-3680.[Abstract/Free Full Text]

Smith, R. C., Dworkin-Rastl, E. and Dworkin, M. D (1988). Expression of a histone H1-like protein is restricted to early Xenopus development. Genes Dev 2, 1284-1295.[Abstract/Free Full Text]

Shen, X., Yu, L., Weir, J. W. and Gorovsky, M. A (1995). Linker histones are not essential and affect chromatin condensation in vivo. Cell 82, 47-56.[Medline]

Shen, X. and Gorovsky, M. A (1996). Linker histone H1 regulates specific gene expression but not global transcription in vivo. Cell 86, 475-483.[Medline]

Spada, F., Brunet, A., Mercier, Y., Renard, J. P., Bianchi, M. E. and Thompson, E. M (1998). High mobility group 1 (HMG1) protein in mouse preimplantation embryos. Mech. Dev 76, 57-66.[Medline]

Stein, P. and Schultz, R. M (2000). Initiation of a chromatin-based transcriptionally repressive state in the preimplantation mouse embryo: lack of a primary role for expression of somatic histone H1. Mol. Reprod. Dev 55, 241-248.[Medline]

Steinbach, O. C., Wolffe, A. P. and Rupp, R. A (1997). Somatic linker histones cause loss of mesodermal competence in Xenopus. Nature 389, 395-399.[Medline]

Takami, Y., Nishi, R. and Nakayama, T (2000). Histone H1 variants play individual roles in transcription regulation in the DT40 chicken B cell line. Biochem. Biophys. Res. Commun 268, 501-508.[Medline]

Talasz, H., Sapojnikova, N., Helliger, W., Lindner, H. and Puschendorf, B (1998). In vitro binding of H1 histone subtypes to nucleosomal organized mouse mammary tumor virus long terminal repeat promotor. J. Biol. Chem 273, 32236-32243.[Abstract/Free Full Text]

Ura, K., Nightingale, K. and Wolffe, A. P (1996). Differential association of HMG1 and linker histones B4 and H1 with dinucleosomal DNA: structural transitions and transcriptional repression. EMBO J 15, 4959-4969.[Medline]

Veenstra, G. J., Destree, O. H. and Wolffe, A. P (1999). Translation of maternal TATA-binding protein mRNA potentiates basal but not activated transcription in Xenopus embryos at the midblastula transition. Mol. Cell. Biol 19, 7972-7982.[Abstract/Free Full Text]

Wassarman, P. M. and Letourneau, G. E (1976). Me\225otic maturation of mouse oocytes in vitro: association of newly synthesized proteins with condensing chromosomes. J. Cell Sci 20, 549-568.[Abstract]

Wassarman, P. M. and Mrozak, S. C (1981). Program of early development in the mammal: Synthesis and intracellular migration of histone H4 during oogenesis in the mouse. Dev. Biol 84, 364-371.

Wiekowski, M. and DePamphilis, M. L (1993). One-dimensional gel analysis of histone synthesis. Meth. Enzymol 225, 489-501.[Medline]

Wiekowski, M., Miranda, M., Nothias, J. Y. and DePamphilis, M. L (1997). Changes in histone synthesis and modification at the beginning of mouse development correlate with the establishment of chromatin mediated repression of transcription. J. Cell Sci 110, 1147-1158.[Abstract]

Wolffe, A. P (1989). Dominant and specific repression of Xenopus oocyte 5S RNA genes and Satellite 1 DNA by histone H1. EMBO J 8, 527-537.[Medline]

Wolffe, A. P., Khochbin, S. and Dimitrov, S (1997). What do linker histones do in chromatin?. Bioessays 19, 249-255.[Medline]

Zlatanova, J., Srebreva, L., Banchev, T., Tasheva, B. and Tsanev, R (1990). Cytoplasmic pool of histone H1 in mammalian cells. J. Cell Sci 96, 461-468.[Abstract/Free Full Text]




This article has been cited by other articles:


Home page
Biol. Reprod.Home page
G. Fu, P. Ghadam, A. Sirotkin, S. Khochbin, A. I. Skoultchi, and H. J. Clarke
Mouse Oocytes and Early Embryos Express Multiple Histone H1 Subtypes
Biol Reprod, May 1, 2003; 68(5): 1569 - 1576.
[Abstract] [Full Text] [PDF]


Home page
Biol. Reprod.Home page
P. Loi, M. Clinton, B. Barboni, J. Fulka Jr., P. Cappai, R. Feil, R. M. Moor, and G. Ptak
Nuclei of Nonviable Ovine Somatic Cells Develop into Lambs after Nuclear Transplantation
Biol Reprod, July 1, 2002; 67(1): 126 - 132.
[Abstract] [Full Text] [PDF]


Home page
Mol. Cell. Biol.Home page
L. Rastelli, K. Robinson, Y. Xu, and S. Majumder
Reconstitution of Enhancer Function in Paternal Pronuclei of One-Cell Mouse Embryos
Mol. Cell. Biol., August 15, 2001; 21(16): 5531 - 5540.
[Abstract] [Full Text] [PDF]


This Article
Right arrow Summary Freely available
Right arrow Full Text (PDF)
Right arrow Alert me when this article is cited
Right arrow Alert me if a correction is posted
Services
Right arrow Email this article to a friend
Right arrow Similar articles in this journal
Right arrow Similar articles in PubMed
Right arrow Alert me to new issues of the journal
Right arrow Download to citation manager
Right arrow reprints & permissions
Citing Articles
Right arrow Citing Articles via HighWire
Right arrow Citing Articles via Google Scholar
Google Scholar
Right arrow Articles by Adenot, P. G.
Right arrow Articles by Thompson, E. M.
Right arrow Search for Related Content
PubMed
Right arrow PubMed Citation
Right arrow Articles by Adenot, P. G.
Right arrow Articles by Thompson, E. M.