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Molecular and Cellular Biology|January 16, 1999
The SWI/SNF complex creates loop domains in DNA and polynucleosome arrays and can disrupt DNA-histone contacts within these domainsD P Bazett-Jones, J Côté, C C Landel, et al.The Journal of Clinical Psychiatry|November 1, 1978
Unsocialized aggressive boys: a follow-up studyM A Stewart, C C Adams, J K MeardonMolecular Cell|January 14, 1999
The ATM-related cofactor Tra1 is a component of the purified SAGA complexP A Grant, D Schieltz, M G Pray-Grant, et al.Nature|August 31, 1999
Nucleosome mobilization catalysed by the yeast SWI/SNF complexI Whitehouse, A Flaus, B R Cairns, et al.Biochemical Society Transactions|October 28, 2004
Proteomic analysis of chromatin-modifying complexes in Saccharomyces cerevisiae identifies novel subunitsK K Lee, P Prochasson, L Florens, et al.The Journal of Biological Chemistry|February 20, 1999
Expanded lysine acetylation specificity of Gcn5 in native complexesP A Grant, A Eberharter, S John, et al.Genes & Development|December 4, 2001
Histone H3 specific acetyltransferases are essential for cell cycle progressionL Howe, D Auston, P Grant, et al.The EMBO Journal|October 1, 1993
A critical role for heat shock transcription factor in establishing a nucleosome-free region over the TATA-initiation site of the yeast HSP82 heat shock geneD S Gross, C C Adams, S Lee, et al.Genes & Development|December 4, 2001
The yeast SAS (something about silencing) protein complex contains a MYST-type putative acetyltransferase and functions with chromatin assembly factor ASF1S Osada, A Sutton, N Muster, et al.Molecular and Cellular Biology|December 1, 1996
Heat shock factor gains access to the yeast HSC82 promoter independently of other sequence-specific factors and antagonizes nucleosomal repression of basal and induced transcriptionA M Erkine, C C Adams, T Diken, et al.Pageof 352