Structure of the yeast histone H3-ASF1 interaction: implications for chaperone mechanism, species-specific interactions, and epigenetics
Open Access
- 13 December 2006
- journal article
- research article
- Published by Springer Nature in BMC Structural Biology
- Vol. 6 (1), 26
- https://doi.org/10.1186/1472-6807-6-26
Abstract
The histone H3/H4 chaperone Asf1 (anti-silencing function 1) is required for the establishment and maintenance of proper chromatin structure, as well as for genome stability in eukaryotes. Asf1 participates in both DNA replication-coupled (RC) and replication-independent (RI) histone deposition reactions in vitro and interacts with complexes responsible for both pathways in vivo. Asf1 is known to directly bind histone H3, however, high-resolution structural information about the geometry of this interaction was previously unknown. Here we report the structure of a histone/histone chaperone interaction. We have solved the 2.2 Å crystal structure of the conserved N-terminal immunoglobulin fold domain of yeast Asf1 (residues 2–155) bound to the C-terminal helix of yeast histone H3 (residues 121–134). The structure defines a histone-binding patch on Asf1 consisting of both conserved and yeast-specific residues; mutation of these residues abrogates H3/H4 binding affinity. The geometry of the interaction indicates that Asf1 binds to histones H3/H4 in a manner that likely blocks sterically the H3/H3 interface of the nucleosomal four-helix bundle. These data clarify how Asf1 regulates histone stoichiometry to modulate epigenetic inheritance. The structure further suggests a physical model in which Asf1 contributes to interpretation of a "histone H3 barcode" for sorting H3 isoforms into different deposition pathways.Keywords
This publication has 39 references indexed in Scilit:
- Chromatin architectureCurrent Opinion in Structural Biology, 2006
- Histone H3 variants and their potential role in indexing mammalian genomes: The “H3 barcode hypothesis”Proceedings of the National Academy of Sciences, 2006
- The HIR corepressor complex binds to nucleosomes generating a distinct protein/DNA complex resistant to remodeling by SWI/SNFGenes & Development, 2005
- Replication-Independent Histone Deposition by the HIR Complex and Asf1Current Biology, 2005
- The histone H3.3 chaperone HIRA is essential for chromatin assembly in the male pronucleusNature, 2005
- Asymmetry in Histone H3 variants and lysine methylation between paternal and maternal chromatin of the early mouse zygoteMechanisms of Development, 2005
- The Histone Variant H3.3 Marks Active Chromatin by Replication-Independent Nucleosome AssemblyMolecular Cell, 2002
- HIRA Is Critical for a Nucleosome Assembly Pathway Independent of DNA SynthesisMolecular Cell, 2002
- Replication-Dependent Marking of DNA by PCNA Facilitates CAF-1-Coupled Inheritance of ChromatinCell, 1999
- Separation of basal histone synthesis from S-phase histone synthesis in dividing cellsCell, 1981