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    A histone acetylation switch regulates H2A.Z deposition by the SWR-C remodeling enzyme

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    Authors
    Watanabe, Shinya
    Radman-Livaja, Marta
    Rando, Oliver J.
    Peterson, Craig L.
    UMass Chan Affiliations
    Program in Molecular Medicine
    Department of Biochemistry and Molecular Pharmacology
    Document Type
    Journal Article
    Publication Date
    2013-04-12
    Keywords
    Acetylation
    Adenosine Triphosphatases
    Biocatalysis
    *Chromatin Assembly and Disassembly
    Histones
    Multienzyme Complexes
    Nucleosomes
    Protein Multimerization
    Protein Stability
    Protein Subunits
    Saccharomyces cerevisiae
    Saccharomyces cerevisiae Proteins
    Substrate Specificity
    Biochemistry
    Molecular Biology
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    Link to Full Text
    http://dx.doi.org/10.1126/science.1229758
    Abstract
    The histone variant H2A.Z plays key roles in gene expression, DNA repair, and centromere function. H2A.Z deposition is controlled by SWR-C chromatin remodeling enzymes that catalyze the nucleosomal exchange of canonical H2A with H2A.Z. Here we report that acetylation of histone H3 on lysine 56 (H3-K56Ac) alters the substrate specificity of SWR-C, leading to promiscuous dimer exchange in which either H2A.Z or H2A can be exchanged from nucleosomes. This result was confirmed in vivo, where genome-wide analysis demonstrated widespread decreases in H2A.Z levels in yeast mutants with hyperacetylated H3K56. Our work also suggests that a conserved SWR-C subunit may function as a "lock" that prevents removal of H2A.Z from nucleosomes. Our study identifies a histone modification that regulates a chromatin remodeling reaction and provides insights into how histone variants and nucleosome turnover can be controlled by chromatin regulators.
    Source
    Science. 2013 Apr 12;340(6129):195-9. doi: 10.1126/science.1229758. Link to article on publisher's site
    DOI
    10.1126/science.1229758
    Permanent Link to this Item
    http://hdl.handle.net/20.500.14038/30692
    PubMed ID
    23580526
    Related Resources
    Link to Article in PubMed
    ae974a485f413a2113503eed53cd6c53
    10.1126/science.1229758
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    UMass Chan Faculty and Researcher Publications

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