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Critical Reviews in Eukaryotic Gene Expression|March 29, 2001
Control of chromatin remodelingJ R Davie, M MoniwaBiochemistry|May 8, 1999
Purification and characterization of chicken erythrocyte histone deacetylase 1J M Sun, H Y Chen, M Moniwa, et al.The Journal of Biological Chemistry|April 18, 2001
An essential role for Mad homology domain 1 in the association of Smad3 with histone deacetylase activity*N T Liberati, M Moniwa, A J Borton, et al.The Journal of Biological Chemistry|August 12, 2000
Rapid induction of histone hyperacetylation and cellular differentiation in human breast tumor cell lines following degradation of histone deacetylase-1Q Zhou, Z K Melkoumian, A Lucktong, et al.The Journal of Biological Chemistry|September 7, 2000
Drosophila C-terminal binding protein functions as a context-dependent transcriptional co-factor and interferes with both mad and groucho transcriptional repressionT M Phippen, A L Sweigart, M Moniwa, et al.Molecular Biology Reports|August 1, 1997
Nuclear matrix, dynamic histone acetylation and transcriptionally active chromatinJ R DavieInternational Review of Cytology|January 1, 1995
The nuclear matrix and the regulation of chromatin organization and functionJ R DavieCurrent Opinion in Genetics & Development|June 4, 1998
Covalent modifications of histones: expression from chromatin templatesJ R DavieJournal of Cellular Biochemistry|August 1, 1996
Histone modifications, chromatin structure, and the nuclear matrixJ R DavieAnalytical Biochemistry|February 1, 1985
Peptide mapping of basic proteins by proteolysis in acetic acid/urea-minislab polyacrylamide gelsJ R DaviePageof 12