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Proceedings of the National Academy of Sciences of the United States of America|November 21, 1995
The histone fold: a ubiquitous architectural motif utilized in DNA compaction and protein dimerizationG Arents, E N MoudrianakisJournal of Molecular Biology|November 5, 1989
Glycera dibranchiata hemoglobin. Structure and refinement at 1.5 A resolutionG Arents, W E LoveProceedings of the National Academy of Sciences of the United States of America|November 15, 1993
Topography of the histone octamer surface: repeating structural motifs utilized in the docking of nucleosomal DNAG Arents, E N MoudrianakisJournal of Molecular Biology|February 11, 1994
The octameric histone core of the nucleosome. Structural issues resolvedB C Wang, J Rose, G Arents, et al.Nucleic Acids Research|July 25, 1995
A variety of DNA-binding and multimeric proteins contain the histone fold motifA D Baxevanis, G Arents, E N Moudrianakis, et al.Journal of Molecular Biology|April 22, 1994
Glycera dibranchiata hemoglobin. X-ray structure of carbonmonoxide hemoglobin at 1.5 A resolutionB C Braden, G Arents, E A Padlan, et al.The EMBO Journal|May 1, 1997
Histone octamer function in vivo: mutations in the dimer-tetramer interfaces disrupt both gene activation and repressionM S Santisteban, G Arents, E N Moudrianakis, et al.Proceedings of the National Academy of Sciences of the United States of America|November 15, 1991
The nucleosomal core histone octamer at 3.1 A resolution: a tripartite protein assembly and a left-handed superhelixG Arents, R W Burlingame, B C Wang, et al.Genes & Development|November 15, 1995
Amino acid substitutions in the structured domains of histones H3 and H4 partially relieve the requirement of the yeast SWI/SNF complex for transcriptionW Kruger, C L Peterson, A Sil, et al.Science (New York, N.Y.)|October 25, 1996
An asymmetric model for the nucleosome: a binding site for linker histones inside the DNA gyresD Pruss, B Bartholomew, J Persinger, et al.Pageof 1