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Adamson, E. D. and Woodland, H. R (1974). Histone synthesis in early amphibian development: histones and DNA synthesis are not co-ordinated. J. Mol. Biol 88, 263-285.[Medline]

Alland, L., Muhle, R., Hou Jr, H., Potes, J., Chin, L., Schreiber-Agus, N. and DePinho, R. A (1997). Role for N-CoR and histone deacetylase in Sin3-mediated transcriptional repression. Nature 387, 49-55.[Medline]

Almouzni, G., Khochbin, S. Dimitrov, S. and Wolffe A. P (1994). Histone acetylation influences both gene expression and development of Xenopus laevis. Dev. Biol 165, 15837-15844.

Bartl, S., Taplick, J., Lagger, G. Khier, H. Kirchler, K. and Seiser, C (1997). Identification of mouse histone deacetylase 1 as a growth factor-inducible gene. Mol. Cell. Biol 117, 5033-5043.

Brehm, A., Miska, E. A., McCance, D. J., Reid, J. L. Bannister, A. J. and Kouzarides, T (1998). Retinoblastoma protein recruits histone deacetylase to repress transcription. Nature 391, 597-601.[Medline]

Brosch, G., Georgieva, E. I., Lopez-Rodas, G., Lindner, H. and Loidl, P (1992). Specificity of Zea mays histone deacetylase is regulated by phosphorylation. J. Biol. Chem 267, 20561-20564.[Abstract/Free Full Text]

Carmen, A. A., Rundlett, S. E. and Grunstein, M (1996). HDA1 and HDA2 are components of a yeast histone deacetylase (HDA) complex. J. Biol. Chem 271, 857-866.

Chambers, S. A. M. and Shaw, B. R (1987). Histone modification accompanying the onset of developmental commitment. J. Biol. Chem 259, 13458-13463.[Abstract/Free Full Text]

De Rubertis, F., Kadosh, D., Henchoz, S., Pauli, D., Reuter, G., Struhl, K. and Spierer, (1996). The histone deacetylase RPD3 counteracts genomic silencing in Drosophila and yeast. Nature 384, 589-591.[Medline]

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]

Dumont, J. N (1977). Oogenesis in Xenopus laevis. J. Morphol 136, 153-180.

Evans, J. P. and Kay, B. K (1991). Biochemical fractionation of oocytes. Methods Cell Biol 36, 133-148.[Medline]

Gall, J. G., Murphy, C., Callan, H. G. and Wu, Z (1991). Lampbrush chromosomes. Methods Cell Biol 36, 149-166.[Medline]

Grunstein, M (1997). Histone acetylation in chromatin structure and activity. Nature 389, 349-352.[Medline]

Hair, A., Prioleau, M. N., Vassetzky, Y. and Mechali, M (1998). Control of gene expression in Xenopus early development. Dev. Genet 22, 122-131.[Medline]

Hassig, C. A., Fleischer, T. C., Billin, A. N., Schreiber, S. L. and Ayer, D. E (1997). Histone deacetylase activity is required for full transcriptional repression by mSin3A. Cell 89, 341-347.[Medline]

Heinzel, T., Lavinsky, R. M., Mullen, T.-M., Soderstrom, M., Laherty, C. D., Torchia, J., Yang, W.-M., Brard, G., Ngo, S. D., Davie, J. R., Seto, E., Eisenmann, R. N., Rose, D. W., Glass, C. K. and Rosenfeld, M. G (1997). A complex containing N-CoR, mSin3 and histone deacetylase mediates transcriptional repression. Nature 387, 43-48.[Medline]

Johnson, C. A., Barlow, A. L. and Turner, B. M (1998). Molecular cloning of Drosophila melanogaster cDNAs that encode a novel histone deacetylase dHDAC3. Gene 221, 127-134.[Medline]

Jones, P. L., Veenstra, G. J., Wade, P.A., Vermaak, D., Kass, S. U. Landsberger, N., Strouboulis, J. and Wolffe, A. P (1998). Methylated DNA and MeCP2 recruit histone deacetylase to repress transcription. Nature Genetics 19, 187-191.[Medline]

Kleff, S., Andrulis, E. D., Anderson C. W. and Sternglanz, R (1995). Identification of a gene encoding a yeast histone H4 acetyltransferase. J. Biol. Chem 270, 24674-24677.[Abstract/Free Full Text]

Kleinschmidt, J. A., Fortkamp, E., Krohne, G., Zentgraf, H. and Franke, W. W (1985). Co-existence of two different types of soluble histone complexes in nuclei of Xenopus laevis oocytes. J. Biol. Chem 260, 1166-1176.[Abstract/Free Full Text]

Klymkowski, M. W. and Hanken, J (1991). Whole-mount staining of Xenopus and other vertebrates. Methods Cell Biol 36, 419-441.[Medline]

Ladomery, M., Lyons, S. and Sommerville, J (1997). Xenopus HDm, a maternally expressed histone deacetylase, belongs to an ancient family of acetyl-metabolising enzymes. Gene 198, 275-280.[Medline]

Laherty, C. D., Yang, W. M., Sun, J. M., Davie, J. R., Setto, E. and Eisenman, R. N (1997). Histone deacetylases associated with the mSin3 corepressor mediate Mad transcriptional repression. Cell 89, 349-356.[Medline]

Leipe, D. D. and Landsman, D (1997). Histone deacetylases, acetoin utilization proteins and acetylpolyamine aminohydrolases are members of an ancient protein superfamily. Nucleic Acids Res 25, 3693-3697.[Abstract/Free Full Text]

Lemaitre, J. M., Geraud, G. and Mechali, M (1998). Dynamics of the genome during early Xenopus development: karyomeres as independent units of replication. J. Cell Biol 142, 1159-1166.[Abstract/Free Full Text]

Li, W., Chen, H. Y. and Davie, J. R (1996). Properties of chicken erythrocyte histone deacetylase associated with the nuclear matrix. Biochem. J 314, 631-637.

Luo, R. X., Postigo, A. A. and Dean, D. C (1998). Rb interacts with histone deacetylase to repress transcription. Cell 92, 468-473.

Magnaghi-Jaulin, L., Groisman, R., Nagvibneva, I., Robin, P., Lorain, S., Le Villain, J. P., Troalen, F., Trouche, D. and Harel-Bellan, A (1998). Retinoblastoma protein represses transcription by recruiting a histone deacetylase. Nature 391, 601-604.[Medline]

Nagy, L., Kao, H.-Y.,Chakravarti, D., Lin, R. J., Hassig, C. A., Ayer, D. E., Schreiber, S. L. and Evans, R. M (1997). Nuclear receptor repression mediated by a complex containing SMRT, mSin3A and histone deacetylase. Cell 89, 373-380.[Medline]

Nan, X., Ng, H. H., Johnson, C. A., Laherty, C. D., Turner, B. M., Eisenman, R. N. and Bird., A (1998). Transcriptional repression by the methyl-CpG-binding protein MeCP2 involves a histone deacetylase complex. Nature 393, 386-389.[Medline]

Paine, P. L., Johnson, M. E., Lau, Y.-T., Tluczek, L. J. M. and Miller, D. S (1992). The oocyte nucleus isolated in oil retains in vivo structure and functions. BioTechniques 13, 238-246.[Medline]

Parthun, M. R., Widom, J. and Gottschling, D. E (1996). The major cytoplasmic histone acetyltransferase in yeast links to chromatin replication and histone metabolism. Cell 87, 85-94.[Medline]

Prioleau, M. N., Buckle, R. S. and Mechali, M (1995). Programming of a repressed but committed chromatin structure during early development. EMBO J 14, 5073-5084.[Medline]

Qian, Y.-W., Wang, Y.-C. J., Hollinsworth, R. E. Jr., Jones, D., Ling, N. and Lee, E. Y.-P (1993). A retinoblastoma-binding protein related to a negative regulator of Ras in yeast. Nature 364, 648-652.[Medline]

Rundlett, S. E., Carmen, A. A. Kobayashi, R., Bavykin, S., Turner, B. M. and Grunstein, M (1996). HDA1 and RPD3 are members of distinct yeast histone deacetylase complexes that regulate silencing and transcription. Proc. Natl. Acad. Sci. USA 93, 14503-14508.[Abstract/Free Full Text]

Sendra, R., Rodrigo, I., Salvador, L. and Franco, L (1988). Characterization of pea histone deacetylases. Plant Mol. Biol 11, 857-866.

Sobel, R. E., Cook R. G. and Allis, C. D (1994). Non-random acetylation of histone H4 by a cytoplasmic histone acetyltransferase as determined by novel methodology. J. Biol. Chem 269, 18576-18582.[Abstract/Free Full Text]

Sobel, R. E., Cook, R. G., Perry, C. A,. Annunziato A. T. and Allis, C. D (1995). Conservation of deposition-related acetylation sites in newly synthesized histones H3 and H4. Proc. Natl. Acad. Sci. USA 92, 1237-1241.[Abstract/Free Full Text]

Sommerville, J., Baird, J. and Turner, B. M (1993). Histone H4 acetylation and transcription in amphibian chromatin. J. Cell Biol 120, 277-290.[Abstract/Free Full Text]

Taunton, J., Hassig, C. A. and Schreiber, S. L (1996). A mammalian histone deacetylase related to the yeast transcriptional regulator RPD3p. Science 272, 408-411.[Abstract]

Tong, J. K., Hassig, C. A., Schnitzler, G. R., Kingston, R. E. and Schreiber, S. L (1998). Chromatin deacetylation by an ATP-dependent nucleosome remodelling complex. Nature 395, 917-921.[Medline]

Turner, B. M., Birley, A. J. and Lavender, J (1992). Histone H4 isoforms acetylated at specific lysine residues define individual chromosomes and chromatin domains in Drosophila polytene nuclei. Cell 69, 375-384.[Medline]

Turner, B. M., O'Neill, L. P. and Allan, I. M (1989). Histone H4 acetylation in human cells: Frequency of acetylation at different sites defined by immunolabelling with site-specific antibodies. FEBS Lett 253, 141-145.[Medline]

Vancurova, I., Paine, T. M., Lou, W. and Paine, P. L (1995). Nucleoplasmin associates with, and is phosphorylated by, casein kinase II. J. Cell Sci 108, 779-787.[Abstract]

Vidal, M. and Gaber, R. F (1991). RPD3 encodes a second factor required to activate maximum positive and negative transcriptional states in Saccharomyces cerevisiae. Mol. Cell. Biol 11, 6317-6327.[Abstract/Free Full Text]

Verreault, A., Kaufman, P. D., Kobayashi, R. and Stillman, B (1996). Nucleosome assembly by a complex of CAF-1 and acetylated histones H3/H4. Cell 87, 95-104.[Medline]

Wade, P. A., Jones, P. L., Vermaak, D. and Wolffe, A. P (1998). A multiple subunit Mi-2 histone deacetylase from Xenopus laevis cofractionates with an associated Snf2 superfamily ATPase. Curr. Biol 8, 843-846.[Medline]

Waterston, R., Martin, C., Craxton, M., Huynh, C., Coulson, A., Hillier, L., Durbin, R., Green, P., Shownkeen, R., Halloran, N., Metzstein, M., Hawkins, T., Wilson, R., Berks, M., Du, Z., Thomas, K., Thierrymieg, J. and Sulston, J (1992). A survey of expressed genes in Caenorhabditis elegans. Nature Genetics 1, 114-123.[Medline]

Wolffe, A. P (1996). Histone deacetylase: a regulator of transcription. Science 272, 371-372.[Medline]

Wolffe, A. P (1997). Sinful repression. Nature 387, 16-17.[Medline]

Wong, J., Patterton, D., Imhof, A., Guschin, D. Shi, Y.-B. and Wolffe, A. P (1998). Distinct requirements for chromatin assembly in transcriptional repression by thyroid hormone receptor and histone deacetylase. EMBO J 17, 520-534.[Medline]

Zhang, Y., LeRoy, G., Seelig, H. P., Lane, W. S. and Reinberg, D (1998). The dermatomyosis-specific autoantigen Mi2 is a component of a complex containing histone deacetylase and nucleosome remodelling activities. Cell 95, 279-289.[Medline]




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