Molecular and Cellular Biology · 2006 · 56 citations · 40 references
GeneticsH2b FamilyMolecular BiologyMolecular GeneticsMitotic ChromosomesEpigeneticsConventional H2bCell DivisionChromatin BiologyNuclear OrganizationH2bfwt NucleosomesChromosomal RearrangementCell BiologyChromatin FunctionConventional Histone H2bChromatinChromosome DynamicsChromatin StructureChromatin RemodelingNatural SciencesChromosome BiologyMedicine
We have studied the functional and structural properties of nucleosomes reconstituted with H2BFWT, a recently identified putative histone variant of the H2B family with totally unknown function. We show that H2BFWT can replace the conventional histone H2B in the nucleosome. The presence of H2BFWT did not affect the overall structure of the nucleosome, and the H2BFWT nucleosomes exhibited the same stability as conventional nucleosomes. SWI/SNF was able to efficiently remodel and mobilize the H2BFWT nucleosomes. Importantly, H2BFWT, in contrast to conventional H2B, was unable to recruit chromosome condensation factors and to participate in the assembly of mitotic chromosomes. This was determined by the highly divergent (compared to conventional H2B) NH2 tail of H2BFWT. These data, in combination with the observations that H2BFWT was found by others in the sperm nuclei and appeared to be associated with the telomeric chromatin, suggest that H2BFWT could act as a specific epigenetic marker.
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Crystal structure of the nucleosome core particle at 2.8 Å resolution
Karolin Luger, Armin W. Mäder, Robin K. Richmond et al. · Nature · 1997 · 9.3K citations
Nucleosome Core Particle, Crystal Structure, Engineering +10
Kinetics of Core Histones in Living Human Cells
Hiroshi Kimurâ, Peter R. Cook · The Journal of Cell Biology · 2001 · 678 citations · Full text