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Proceedings of the National Academy of Sciences of the United States of America|August 1, 1991
Histone contributions to the structure of DNA in the nucleosomeJ J Hayes, D J Clark, A P WolffeDevelopmental Biology|October 1, 1994
Histone acetylation influences both gene expression and development of Xenopus laevisG Almouzni, S Khochbin, S Dimitrov, et al.Molecular Biology Reports|August 3, 2002
Profiling methyl-CpG specific determinants on transcriptionally silent chromatinA El-Osta, E K Baker, A P WolffeNature|October 6, 1997
Somatic linker histones cause loss of mesodermal competence in XenopusO C Steinbach, A P Wolffe, R A RuppBiological Chemistry|November 15, 2000
Histone deacetylase activity is required for the induction of the MyoD muscle cell lineage in XenopusO C Steinbac, A P Wolffe, R A RuppThe Journal of Biological Chemistry|June 16, 2000
Determinants of vitellogenin B1 promoter architecture. HNF3 and estrogen responsive transcription within chromatinD Robyr, A Gegonne, A P Wolffe, et al.Science (New York, N.Y.)|December 23, 2000
Distinct roles for TBP and TBP-like factor in early embryonic gene transcription in XenopusG J Veenstra, D L Weeks, A P WolffeThe New Biologist|April 1, 1992
The Y-box factors: a family of nucleic acid binding proteins conserved from Escherichia coli to manA P Wolffe, S Tafuri, M Ranjan, et al.Developmental Biology|November 1, 1993
Chromatin transitions during early Xenopus embryogenesis: changes in histone H4 acetylation and in linker histone typeS Dimitrov, G Almouzni, M Dasso, et al.Journal of Molecular Endocrinology|December 22, 1999
Nuclear receptors: coactivators, corepressors and chromatin remodeling in the control of transcriptionT N Collingwood, F D Urnov, A P WolffePageof 23