Gopalakrishnan R, et al. (2019) A conserved genetic interaction between Spt6 and Set2 regulates H3K36 methylation. Nucleic Acids Res 47(8):3888-3903 PMID:30793188
Armache KJ, et al. (2011) Structural basis of silencing: Sir3 BAH domain in complex with a nucleosome at 3.0 Å resolution. Science 334(6058):977-82 PMID:22096199
Tolstorukov MY, et al. (2009) Comparative analysis of H2A.Z nucleosome organization in the human and yeast genomes. Genome Res 19(6):967-77 PMID:19246569
Fan HY, et al. (2004) Noncovalent modification of chromatin: different remodeled products with different ATPase domains. Cold Spring Harb Symp Quant Biol 69:183-92 PMID:16117648
Kingston RE and Narlikar GJ (1999) ATP-dependent remodeling and acetylation as regulators of chromatin fluidity. Genes Dev 13(18):2339-52 PMID:10500090
Saltsman KA, et al. (1998) The C-terminal hydrophobic repeat of Schizosaccharomyces pombe heat shock factor is not required for heat-induced DNA-binding. Yeast 14(8):733-46 PMID:9675818
Imbalzano AN, et al. (1994) Transcription factor (TF) IIB and TFIIA can independently increase the affinity of the TATA-binding protein for DNA. J Biol Chem 269(11):8280-6 PMID:8132551
Cheng LZ, et al. (1992) Regulation of DNA replication in vitro by the transcriptional activation domain of GAL4-VP16. Proc Natl Acad Sci U S A 89(2):589-93 PMID:1309949
Workman JL and Kingston RE (1992) Nucleosome core displacement in vitro via a metastable transcription factor-nucleosome complex. Science 258(5089):1780-4 PMID:1465613
Liao SM, et al. (1991) RNA polymerase II carboxy-terminal domain contributes to the response to multiple acidic activators in vitro. Genes Dev 5(12B):2431-40 PMID:1752437
Schuetz TJ, et al. (1991) Isolation of a cDNA for HSF2: evidence for two heat shock factor genes in humans. Proc Natl Acad Sci U S A 88(16):6911-5 PMID:1871106
Taylor IC, et al. (1991) Facilitated binding of GAL4 and heat shock factor to nucleosomal templates: differential function of DNA-binding domains. Genes Dev 5(7):1285-98 PMID:2065977