-
1
-
-
0030959244
-
Role for N-CoR and histone deacetylase in Sin3-mediated repression
-
Alland L., Muhle R., Hou H., Jr., Potes J., Chin L., Schreiber-Agus N., and DePinho R.A. 1997. Role for N-CoR and histone deacetylase in Sin3-mediated repression. Nature 387: 49.
-
(1997)
Nature
, vol.387
, pp. 49
-
-
Alland, L.1
Muhle, R.2
Hou Jr., H.3
Potes, J.4
Chin, L.5
Schreiber-Agus, N.6
DePinho, R.A.7
-
2
-
-
0001896664
-
Post-synthetic modifications of histone structure: A mechanism for the control of chromosome structure by the modulation of histone-DNA interactions
-
ed. H.J. Li and R. Eckhardt, Academic Press, New York
-
Allfrey V.G. 1977. Post-synthetic modifications of histone structure: A mechanism for the control of chromosome structure by the modulation of histone-DNA interactions. In Chromatin and chromosome structure (ed. H.J. Li and R. Eckhardt), p. 167. Academic Press, New York.
-
(1977)
Chromatin and Chromosome Structure
, pp. 167
-
-
Allfrey, V.G.1
-
3
-
-
0022799341
-
Nuclease hypersensitive regions with adjacent positioned nucleosomes mark the gene boundaries of the PHO5/PHO3 locus in yeast
-
Almer A. and Hörz W. 1986. Nuclease hypersensitive regions with adjacent positioned nucleosomes mark the gene boundaries of the PHO5/PHO3 locus in yeast. EMBO J. 5: 2681.
-
(1986)
EMBO J.
, vol.5
, pp. 2681
-
-
Almer, A.1
Hörz, W.2
-
4
-
-
0028905563
-
Mad-Max transcriptional repression is mediated by ternary complex formation with mammalian homologs of yeast repressor Sin3
-
Ayer D.E., Lawrence Q.A., and Eisenman R.N. 1995. Mad-Max transcriptional repression is mediated by ternary complex formation with mammalian homologs of yeast repressor Sin3. Cell 80: 767.
-
(1995)
Cell
, vol.80
, pp. 767
-
-
Ayer, D.E.1
Lawrence, Q.A.2
Eisenman, R.N.3
-
5
-
-
0030480969
-
The CBP co-activator is a histone acetyltransferase
-
Bannister A.J. and Kouzarides T. 1996. The CBP co-activator is a histone acetyltransferase. Nature 384: 641.
-
(1996)
Nature
, vol.384
, pp. 641
-
-
Bannister, A.J.1
Kouzarides, T.2
-
6
-
-
0022500773
-
Nucleosomes are phased along the mouse beta-major globin gene in erythroid and nonerythroid cells
-
Benezra R., Cantor C.R., and Axel R. 1986, Nucleosomes are phased along the mouse beta-major globin gene in erythroid and nonerythroid cells. Cell 14: 697.
-
(1986)
Cell
, vol.14
, pp. 697
-
-
Benezra, R.1
Cantor, C.R.2
Axel, R.3
-
7
-
-
0026645025
-
Genetic isolation of ADA2: A potential transcriptional adaptor required for function of certain acidic activation domains
-
Berger S.L., Pina B., Silverman N., Marcus G.A., Agapite J., Regier J.L., Triezenberg S.J., and Guarente L. (1992). Genetic isolation of ADA2: A potential transcriptional adaptor required for function of certain acidic activation domains. Cell 70: 251.
-
(1992)
Cell
, vol.70
, pp. 251
-
-
Berger, S.L.1
Pina, B.2
Silverman, N.3
Marcus, G.A.4
Agapite, J.5
Regier, J.L.6
Triezenberg, S.J.7
Guarente, L.8
-
8
-
-
2642662483
-
The histone acetylase PCAF is a nuclear receptor coactivator
-
Blanco J.C.G., Minucci S., Lu J., Yang X.-J., Walker K.K., Chen H., Evans R.M., Nakatani Y., and Ozato K. 1998. The histone acetylase PCAF is a nuclear receptor coactivator. Genes Dev. 12: 1638.
-
(1998)
Genes Dev.
, vol.12
, pp. 1638
-
-
Blanco, J.C.G.1
Minucci, S.2
Lu, J.3
Yang, X.-J.4
Walker, K.K.5
Chen, H.6
Evans, R.M.7
Nakatani, Y.8
Ozato, K.9
-
9
-
-
0027192267
-
Transcriptional silencing in yeast is associated with reduced nucleosome acetylation
-
Braunstein M., Rose A.B., Holmes S.G., Allis C.D., and Broach J.R. 1993. Transcriptional silencing in yeast is associated with reduced nucleosome acetylation. Genes Dev. 7: 592.
-
(1993)
Genes Dev.
, vol.7
, pp. 592
-
-
Braunstein, M.1
Rose, A.B.2
Holmes, S.G.3
Allis, C.D.4
Broach, J.R.5
-
10
-
-
0029984469
-
Tetrahymena histone acetyltransferase A: A homolog to yeast Gcn5p linking histone acetylation to gene activation
-
Brownell J.E., Zhou J., Ranalli T., Kobayashi R., Edmondson D.G., Roth S.Y., and Allis C.D. 1996. Tetrahymena histone acetyltransferase A: A homolog to yeast Gcn5p linking histone acetylation to gene activation. Cell 84: 843.
-
(1996)
Cell
, vol.84
, pp. 843
-
-
Brownell, J.E.1
Zhou, J.2
Ranalli, T.3
Kobayashi, R.4
Edmondson, D.G.5
Roth, S.Y.6
Allis, C.D.7
-
11
-
-
0031031755
-
Histone acetyltransferase activity and interaction with ADA2 are critical for GCN5 function in vivo
-
Candau R., Zhou J-X., Allis C.D., and Berger S.L. 1997. Histone acetyltransferase activity and interaction with ADA2 are critical for GCN5 function in vivo. EMBO J. 16: 555.
-
(1997)
EMBO J.
, vol.16
, pp. 555
-
-
Candau, R.1
Zhou, J.-X.2
Allis, C.D.3
Berger, S.L.4
-
12
-
-
0029991514
-
HDA1 and HDA3 are components of a yeast histone deacetylase (HDA) complex
-
Carmen A.A., Rundlett S.E., and Grunstein M. 1996. HDA1 and HDA3 are components of a yeast histone deacetylase (HDA) complex. J. Biol. Chem. 271: 15837.
-
(1996)
J. Biol. Chem.
, vol.271
, pp. 15837
-
-
Carmen, A.A.1
Rundlett, S.E.2
Grunstein, M.3
-
13
-
-
0025239866
-
A yeast protein that influences the chromatin structure of UASg and functions as a powerful auxiliary gene activator
-
Chasman D.I., Lue N.F., Buchman A.R., LaPointe J.W., Lorch Y., and Kornberg R.D. 1990. A yeast protein that influences the chromatin structure of UASg and functions as a powerful auxiliary gene activator. Genes Dev. 4: 503.
-
(1990)
Genes Dev.
, vol.4
, pp. 503
-
-
Chasman, D.I.1
Lue, N.F.2
Buchman, A.R.3
LaPointe, J.W.4
Lorch, Y.5
Kornberg, R.D.6
-
14
-
-
0028966589
-
Connecting a promoter-bound protein to TBP bypasses the need for a transcriptional activation domain
-
Chatterjee S. and Struhl K. 1995. Connecting a promoter-bound protein to TBP bypasses the need for a transcriptional activation domain. Nature 374: 820.
-
(1995)
Nature
, vol.374
, pp. 820
-
-
Chatterjee, S.1
Struhl, K.2
-
15
-
-
0030740253
-
Nuclear receptor coactivator ACTR is a novel histone acetyltransferase and forms a multimeric activation complex with P/CAF and CBP/p300
-
Chen H., Lin R.J., Schiltz R.L., Chakravarti D., Nash A., Nagy L., Privalsky M.L., Nakatani Y., and Evans R.M. 1997. Nuclear receptor coactivator ACTR is a novel histone acetyltransferase and forms a multimeric activation complex with P/CAF and CBP/p300. Cell 90: 569.
-
(1997)
Cell
, vol.90
, pp. 569
-
-
Chen, H.1
Lin, R.J.2
Schiltz, R.L.3
Chakravarti, D.4
Nash, A.5
Nagy, L.6
Privalsky, M.L.7
Nakatani, Y.8
Evans, R.M.9
-
16
-
-
0030669030
-
Exploring the metabolic and genetic control of gene expression on a genomic scale
-
DeRisi J.L., Iyer V.R., and Brown P.O. 1997. Exploring the metabolic and genetic control of gene expression on a genomic scale. Science 278: 680.
-
(1997)
Science
, vol.278
, pp. 680
-
-
DeRisi, J.L.1
Iyer, V.R.2
Brown, P.O.3
-
17
-
-
0026598102
-
Nucleosome loss activates CUP1 and HIS3 promoters to fully induced levels in the yeast Saccharomyces cerevisiae
-
Durrin L., Mann R., and Grunstein M. 1992. Nucleosome loss activates CUP1 and HIS3 promoters to fully induced levels in the yeast Saccharomyces cerevisiae. Mol. Cell. Biol. 12: 1621.
-
(1992)
Mol. Cell. Biol.
, vol.12
, pp. 1621
-
-
Durrin, L.1
Mann, R.2
Grunstein, M.3
-
18
-
-
0025736044
-
Yeast histone H4 N-terminal sequence is required for promoter activation in vivo
-
Durrin L., Mann R., Kayne P., and Grunstein M. 1991. Yeast histone H4 N-terminal sequence is required for promoter activation in vivo. Cell 65: 1023.
-
(1991)
Cell
, vol.65
, pp. 1023
-
-
Durrin, L.1
Mann, R.2
Kayne, P.3
Grunstein, M.4
-
19
-
-
0029780704
-
Gene activation by recruitment of the RNA polymerase II holoenzyme
-
Farrell S., Simkovich N., Wu Y., Barberis A., and Ptashne M. 1996. Gene activation by recruitment of the RNA polymerase II holoenzyme. Genes Dev. 10: 2359.
-
(1996)
Genes Dev.
, vol.10
, pp. 2359
-
-
Farrell, S.1
Simkovich, N.2
Wu, Y.3
Barberis, A.4
Ptashne, M.5
-
20
-
-
0024261880
-
Statistical positioning of nucleosomes by specific protein-binding to an up-stream activating sequence in yeast
-
Fedor M.J., Lue N.F., and Kornberg R.D. 1988. Statistical positioning of nucleosomes by specific protein-binding to an up-stream activating sequence in yeast. J. Mol. Biol. 20-4: 109.
-
(1988)
J. Mol. Biol.
, vol.20
, Issue.4
, pp. 109
-
-
Fedor, M.J.1
Lue, N.F.2
Kornberg, R.D.3
-
21
-
-
0028933783
-
Yeast histone H4 and H3 N-termini have different effects on the chromatin structure of the GAL1 promoter
-
Fisher-Adams G. and Grunstein M. 1995. Yeast histone H4 and H3 N-termini have different effects on the chromatin structure of the GAL1 promoter. EMBO J. 14: 1468.
-
(1995)
EMBO J.
, vol.14
, pp. 1468
-
-
Fisher-Adams, G.1
Grunstein, M.2
-
22
-
-
0024261583
-
Nucleosome loss activates yeast downstream promoters in vivo
-
Han M. and Grunstein M. 1988. Nucleosome loss activates yeast downstream promoters in vivo. Cell 55: 1137.
-
(1988)
Cell
, vol.55
, pp. 1137
-
-
Han, M.1
Grunstein, M.2
-
23
-
-
0023666061
-
Histone H2B repression causes cell-cycle-specific arrest in yeast: Effects on chromosomal segregation, replication and transcription
-
Han M., Chang M., Kim U.-J., and Grunstein M. 1987. Histone H2B repression causes cell-cycle-specific arrest in yeast: Effects on chromosomal segregation, replication and transcription. Cell 48: 589.
-
(1987)
Cell
, vol.48
, pp. 589
-
-
Han, M.1
Chang, M.2
Kim, U.-J.3
Grunstein, M.4
-
24
-
-
0024041468
-
Depletion of histone H4 and nucleosomes activate the PHO5 gene in Saccharomyces cerevisiae
-
Han M., Kim U.-J., Kayne P., and Grunstein M. 1988. Depletion of histone H4 and nucleosomes activate the PHO5 gene in Saccharomyces cerevisiae. EMBO J. 7: 2221.
-
(1988)
EMBO J.
, vol.7
, pp. 2221
-
-
Han, M.1
Kim, U.-J.2
Kayne, P.3
Grunstein, M.4
-
25
-
-
0029817763
-
Spreading of transcriptional repression by SIR3 from telomeric heterochromatin
-
Hecht A., Strahl-Bolsinger S., and Grunstein M. 1996. Spreading of transcriptional repression by SIR3 from telomeric heterochromatin. Nature 383: 92.
-
(1996)
Nature
, vol.383
, pp. 92
-
-
Hecht, A.1
Strahl-Bolsinger, S.2
Grunstein, M.3
-
26
-
-
0031007189
-
Histone deacetylase activity is required for full transcriptional repression by mSin3A
-
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.
-
(1997)
Cell
, vol.89
, pp. 341
-
-
Hassig, C.A.1
Fleischer, T.C.2
Billin, A.N.3
Schreiber, S.L.4
Ayer, D.E.5
-
27
-
-
17744413444
-
N-CoR, mSin3 and histone deacetylase-containing complexes in nuclear receptor and mad repression
-
Heinzel T., Lavinsky R.M., Mullen T.M., Soderstrom M., Laherty C.D., Torchia J., Yang W.M., Brard G., Ngo S.G., Davie J.R., Seto E., Eisenman R.N., Rose D.W., Glass C.K., and Rosenfeld M.G. 1997. N-CoR, mSin3 and histone deacetylase-containing complexes in nuclear receptor and mad repression. Nature 387: 43.
-
(1997)
Nature
, vol.387
, pp. 43
-
-
Heinzel, T.1
Lavinsky, R.M.2
Mullen, T.M.3
Soderstrom, M.4
Laherty, C.D.5
Torchia, J.6
Yang, W.M.7
Brard, G.8
Ngo, S.G.9
Davie, J.R.10
Seto, E.11
Eisenman, R.N.12
Rose, D.W.13
Glass, C.K.14
Rosenfeld, M.G.15
-
28
-
-
0343924289
-
Repression by Ume6 involves recruitment of a complex containing Sin3 corepressor and Rpd3 histone deacetylase to target promoters
-
Kadosh D. and Strahl K. 1997. Repression by Ume6 involves recruitment of a complex containing Sin3 corepressor and Rpd3 histone deacetylase to target promoters. Cell 89: 365.
-
(1997)
Cell
, vol.89
, pp. 365
-
-
Kadosh, D.1
Strahl, K.2
-
29
-
-
0032520953
-
Histone deacetylase activity of Rpd3 is important for transcriptional repression in vivo
-
_. 1998. Histone deacetylase activity of Rpd3 is important for transcriptional repression in vivo. Genes Dev. 12: 797.
-
(1998)
Genes Dev.
, vol.12
, pp. 797
-
-
-
30
-
-
0028885077
-
Identification of a gene encoding a yeast histone H4 acetyltransferase
-
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.
-
(1995)
J. Biol. Chem.
, vol.270
, pp. 24674
-
-
Kleff, S.1
Andrulis, E.D.2
Anderson, C.W.3
Sternglanz, R.4
-
31
-
-
0032030906
-
Histone acetyltransferase activity of yeast GCN5 is required for the activation of target genes in vivo
-
Kuo M., Zhou J., Churchill M.E.A., and Allis C.D. 1998. Histone acetyltransferase activity of yeast GCN5 is required for the activation of target genes in vivo. Genes Dev. 12: 627.
-
(1998)
Genes Dev.
, vol.12
, pp. 627
-
-
Kuo, M.1
Zhou, J.2
Churchill, M.E.A.3
Allis, C.D.4
-
32
-
-
0029835806
-
Transcription-linked acetylation by Gcn5p of histones H3 and H4 at specific lysines
-
Kuo M., Brownell J.E., Sobel R.E., Ranalli T.A., Cook R.G., Edmondson D.G., Roth S.Y., and Allis C.D. 1996. Transcription-linked acetylation by Gcn5p of histones H3 and H4 at specific lysines. Nature 383: 269.
-
(1996)
Nature
, vol.383
, pp. 269
-
-
Kuo, M.1
Brownell, J.E.2
Sobel, R.E.3
Ranalli, T.A.4
Cook, R.G.5
Edmondson, D.G.6
Roth, S.Y.7
Allis, C.D.8
-
33
-
-
0030969516
-
Histone deacetylases associated with the mSin3 corepressor mediate mad transcriptional repression
-
Laherty C.D., Yang W.M., Sun J.M., Davie J.R., Seto E., and Eisenman R.N. 1997. Histone deacetylases associated with the mSin3 corepressor mediate mad transcriptional repression. Cell 89: 349.
-
(1997)
Cell
, vol.89
, pp. 349
-
-
Laherty, C.D.1
Yang, W.M.2
Sun, J.M.3
Davie, J.R.4
Seto, E.5
Eisenman, R.N.6
-
34
-
-
0029739422
-
N-terminal sequences of all four core histones are involved in the repression of basal transcription in yeast
-
Lenfant F., Thomsen B., Mann R., Ling X., and Grunstein M. 1996. N-terminal sequences of all four core histones are involved in the repression of basal transcription in yeast. EMBO J. 15: 3974.
-
(1996)
EMBO J.
, vol.15
, pp. 3974
-
-
Lenfant, F.1
Thomsen, B.2
Mann, R.3
Ling, X.4
Grunstein, M.5
-
35
-
-
0029878216
-
Yeast histone H3 and H4 amino termini are important for nucleosome assembly in vivo and in vitro: Redundant and position-independent functions in assembly but not in gene regulation
-
Ling X., Harkness T.A.A., Schultz M.C., Fisher-Adams G., and Grunstein M. 1996. Yeast histone H3 and H4 amino termini are important for nucleosome assembly in vivo and in vitro: Redundant and position-independent functions in assembly but not in gene regulation. Genes Dev. 10: 686.
-
(1996)
Genes Dev.
, vol.10
, pp. 686
-
-
Ling, X.1
Harkness, T.A.A.2
Schultz, M.C.3
Fisher-Adams, G.4
Grunstein, M.5
-
36
-
-
0021771501
-
Organization of the GAL1-GAL10 intergenic control region chromatin
-
Lohr D. 1984. Organization of the GAL1-GAL10 intergenic control region chromatin. Nucleic Acids Res. 12: 8457.
-
(1984)
Nucleic Acids Res.
, vol.12
, pp. 8457
-
-
Lohr, D.1
-
37
-
-
0023663417
-
Nucleosomes inhibit the initiation of transcription but allow chain elongation with the displacement of histones
-
Lorch Y., LaPointe J.W., and Kornberg R.D. 1987. Nucleosomes inhibit the initiation of transcription but allow chain elongation with the displacement of histones. Cell 49: 203.
-
(1987)
Cell
, vol.49
, pp. 203
-
-
Lorch, Y.1
Lapointe, J.W.2
Kornberg, R.D.3
-
38
-
-
1842411320
-
Crystal structure of the nucleosome core particle at 2.8 Å resolution
-
Luger K., Mader A.W., Richmond R.K., Sargent D.F., and Richmond T.J. 1997. Crystal structure of the nucleosome core particle at 2.8 Å resolution. Nature 389: 251.
-
(1997)
Nature
, vol.389
, pp. 251
-
-
Luger, K.1
Mader, A.W.2
Richmond, R.K.3
Sargent, D.F.4
Richmond, T.J.5
-
39
-
-
0026697659
-
Histone H3 N-terminal muta-tions allow hyperactivation of the yeast GAL1 gene in vivo
-
Mann R. and Grunstein M. 1992. Histone H3 N-terminal muta-tions allow hyperactivation of the yeast GAL1 gene in vivo. EMBO J. 11: 3297.
-
(1992)
EMBO J.
, vol.11
, pp. 3297
-
-
Mann, R.1
Grunstein, M.2
-
40
-
-
0026505554
-
Chromatin structure of the yeast SUC2 promoter in regulatory mutants
-
Matallana E., Franco L., and Pérez-Ortín J.E. 1992. Chromatin structure of the yeast SUC2 promoter in regulatory mutants. Mol. Gen. Genet. 231: 395.
-
(1992)
Mol. Gen. Genet.
, vol.231
, pp. 395
-
-
Matallana, E.1
Franco, L.2
Pérez-Ortín, J.E.3
-
41
-
-
0030953186
-
Nuclear receptor repression mediated by a complex containing SMRT, mSIN3A and histone deacetylase
-
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.
-
(1997)
Cell
, vol.89
, pp. 373
-
-
Nagy, L.1
Kao, H.Y.2
Chakravarti, D.3
Lin, R.J.4
Hassig, C.A.5
Ayer, D.E.6
Schreiber, S.L.7
Evans, R.M.8
-
42
-
-
0030606239
-
The transcriptional co-activators p300 and CBP are histone acetyltransferases
-
Ogryzko V.V., Schiltz R.L., Russanova V., Howard B.H., and Nakatani Y. 1996. The transcriptional co-activators p300 and CBP are histone acetyltransferases. Cell 87: 953.
-
(1996)
Cell
, vol.87
, pp. 953
-
-
Ogryzko, V.V.1
Schiltz, R.L.2
Russanova, V.3
Howard, B.H.4
Nakatani, Y.5
-
43
-
-
0027139910
-
Mapping polycomb-repressed domains in the bithorax complex using in vivo formaldehyde cross-linked chromatin
-
Orlando V. and Paro R. 1993. Mapping polycomb-repressed domains in the bithorax complex using in vivo formaldehyde cross-linked chromatin. Cell 75: 1187.
-
(1993)
Cell
, vol.75
, pp. 1187
-
-
Orlando, V.1
Paro, R.2
-
44
-
-
0030271392
-
The major cytoplasmic histone acetyltransferase in yeast: Links to chromatin replication and histone metabolism
-
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.
-
(1996)
Cell
, vol.87
, pp. 85
-
-
Parthun, M.R.1
Widom, J.2
Gottschling, D.E.3
-
45
-
-
0027423613
-
ADA3: A gene, identified by resistance to GAL4-VP16, with properties similar to and different from those of ADA2
-
Pina B., Berger S., Marcus G.A., Silverman N., Agapite J., and Guarante L. 1993. ADA3: A gene, identified by resistance to GAL4-VP16, with properties similar to and different from those of ADA2. Mol. Cell Biol. 13: 5981.
-
(1993)
Mol. Cell Biol.
, vol.13
, pp. 5981
-
-
Pina, B.1
Berger, S.2
Marcus, G.A.3
Silverman, N.4
Agapite, J.5
Guarante, L.6
-
46
-
-
0026552385
-
Stable nucleosome positioning and complete repression by the yeast α2 repressor are disrupted by amino-terminal mutations in histone H4
-
Roth S.Y., Shimizu M., Johnson L., Grunstein M., and Simpson R.T. 1992. Stable nucleosome positioning and complete repression by the yeast α2 repressor are disrupted by amino-terminal mutations in histone H4. Genes Dev. 6: 411.
-
(1992)
Genes Dev.
, vol.6
, pp. 411
-
-
Roth, S.Y.1
Shimizu, M.2
Johnson, L.3
Grunstein, M.4
Simpson, R.T.5
-
47
-
-
85015857390
-
RPD3 deacetylates histone H4 lysine 5 to repress UME6 regulated genes
-
Rundlett S.R., Carmen A.A., Suka N., Turner B.T., and Grunstein M. 1998. RPD3 deacetylates histone H4 lysine 5 to repress UME6 regulated genes. Nature 393: 831.
-
(1998)
Nature
, vol.393
, pp. 831
-
-
Rundlett, S.R.1
Carmen, A.A.2
Suka, N.3
Turner, B.T.4
Grunstein, M.5
-
48
-
-
0029856225
-
HDA1 and RPD3 are members of functionally distinct yeast histone deacetylase complexes
-
Rundlett S., Carmen A.A., Turner B., Kobayashi R., Bavykin S., and Grunstein M. 1996. HDA1 and RPD3 are members of functionally distinct yeast histone deacetylase complexes. Proc. Natl. Acad. Sci. 93: 14503.
-
(1996)
Proc. Natl. Acad. Sci.
, vol.93
, pp. 14503
-
-
Rundlett, S.1
Carmen, A.A.2
Turner, B.3
Kobayashi, R.4
Bavykin, S.5
Grunstein, M.6
-
49
-
-
0025119580
-
Nucleosome depletion alters the chromatin structure of Saccharomyces cerevisiae centromeres
-
Saunders M.J., Yeh, E., Grunstein M., and Bloom K. 1990. Nucleosome depletion alters the chromatin structure of Saccharomyces cerevisiae centromeres. Mol. Cell. Biol. 10: 5721.
-
(1990)
Mol. Cell. Biol.
, vol.10
, pp. 5721
-
-
Saunders, M.J.1
Yeh, E.2
Grunstein, M.3
Bloom, K.4
-
50
-
-
0030768745
-
Steroid receptor coactivator-1 is a histone acetyltransferase
-
Spencer T.E., Jenster G., Burcin M.M., Allis C.D., Zhou J., Mizzen C.A., McKenna N.J., Onate S.A., Tsai S.Y., Tsai M.-J., and O'Malley B.W. 1997. Steroid receptor coactivator-1 is a histone acetyltransferase. Nature 389: 194.
-
(1997)
Nature
, vol.389
, pp. 194
-
-
Spencer, T.E.1
Jenster, G.2
Burcin, M.M.3
Allis, C.D.4
Zhou, J.5
Mizzen, C.A.6
McKenna, N.J.7
Onate, S.A.8
Tsai, S.Y.9
Tsai, M.-J.10
O'Malley, B.W.11
-
51
-
-
0031027431
-
SIR2 and SIR4 interactions differ in core and extended telomeric heterochromatin of yeast
-
Strahl-Bolsinger S., Hecht A., Luo K., and Grunstein M. 1997. SIR2 and SIR4 interactions differ in core and extended telomeric heterochromatin of yeast. Genes Dev. 11: 83.
-
(1997)
Genes Dev.
, vol.11
, pp. 83
-
-
Strahl-Bolsinger, S.1
Hecht, A.2
Luo, K.3
Grunstein, M.4
-
52
-
-
0029871340
-
Chromatin structure of the yeast URA3 gene at high resolution provides insight into structure and positioning of nucleosomes in the chromosomal context
-
Tanaka S., Livingstone-Zatchej M., and Thoma F. 1996. Chromatin structure of the yeast URA3 gene at high resolution provides insight into structure and positioning of nucleosomes in the chromosomal context. J. Mol. Biol. 257: 919.
-
(1996)
J. Mol. Biol.
, vol.257
, pp. 919
-
-
Tanaka, S.1
Livingstone-Zatchej, M.2
Thoma, F.3
-
53
-
-
0029932598
-
A mammalian histone deacetylase related to the yeast transcriptional regulator Rpd3p
-
Taunton J., Hassig C.A., and Schreiber S.L. 1996. A mammalian histone deacetylase related to the yeast transcriptional regulator Rpd3p. Science 272: 408.
-
(1996)
Science
, vol.272
, pp. 408
-
-
Taunton, J.1
Hassig, C.A.2
Schreiber, S.L.3
-
54
-
-
0024396097
-
Histone H4 acetylation in human cells. Frequency of acetylation at different sites defined by immunolabeling with site-specific antibodies
-
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 immunolabeling with site-specific antibodies. FEBS Lett. 253: 141.
-
(1989)
FEBS Lett.
, vol.253
, pp. 141
-
-
Turner, B.M.1
O'Neill, L.P.2
Allan, I.M.3
-
55
-
-
0032581751
-
Transcriptional activators direct histone acetyltransferase complexes to nucleosomes
-
Utley R.T., Ikeda K., Grant P.A., Cote J., Steger D.J., Eberharter A., John S., and Workman J.L. 1998. Transcriptional activators direct histone acetyltransferase complexes to nucleosomes. Nature 394: 498.
-
(1998)
Nature
, vol.394
, pp. 498
-
-
Utley, R.T.1
Ikeda, K.2
Grant, P.A.3
Cote, J.4
Steger, D.J.5
Eberharter, A.6
John, S.7
Workman, J.L.8
-
56
-
-
0029015717
-
Yeast histone H3 and H4 N-termini function through different GAL regulatory elements to repress and activate transcription
-
Wan J., Mann R., and Grunstein M. 1995. Yeast histone H3 and H4 N-termini function through different GAL] regulatory elements to repress and activate transcription. Proc. Natl. Acad. Sci. 92: 5664.
-
(1995)
Proc. Natl. Acad. Sci.
, vol.92
, pp. 5664
-
-
Wan, J.1
Mann, R.2
Grunstein, M.3
-
57
-
-
0032031606
-
Critical residues for histone acetylation by Gcn5, functioning in Ada and SAGA complexes, are also required for transcriptional function in vivo
-
Wang L., Liu L., and Berger S.L. 1998. Critical residues for histone acetylation by Gcn5, functioning in Ada and SAGA complexes, are also required for transcriptional function in vivo. Genes Dev. 12: 640.
-
(1998)
Genes Dev.
, vol.12
, pp. 640
-
-
Wang, L.1
Liu, L.2
Berger, S.L.3
-
58
-
-
0029665857
-
A p300/CBP-associated factor that competes with the adenoviral oncoprotein E1A
-
Yang X., Ogryzko V.V., Nishikawa J., Howard B., and Nakatani Y. 1996. A p300/CBP-associated factor that competes with the adenoviral oncoprotein E1A. Nature 382: 319.
-
(1996)
Nature
, vol.382
, pp. 319
-
-
Yang, X.1
Ogryzko, V.V.2
Nishikawa, J.3
Howard, B.4
Nakatani, Y.5
|