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Recognition of Multivalent Histone States Associated with Heterochromatin by UHRF1 Protein

  1. Author:
    Nady, N.
    Lemak, A.
    Walker, J. R.
    Avvakumov, G. V.
    Kareta, M. S.
    Achour, M.
    Xue, S.
    Duan, S. L.
    Allali-Hassani, A.
    Zuo, X. B.
    Wang, Y. X.
    Bronner, C.
    Chedin, F.
    Arrowsmith, C. H.
    Dhe-Paganon, S.
  2. Author Address

    [Nady, N; Lemak, A; Duan, SL; Arrowsmith, CH] Univ Toronto, Ontario Canc Inst, Campbell Family Canc Res Inst, Toronto, ON M5G 1L7, Canada [Nady, N; Lemak, A; Duan, SL; Arrowsmith, CH] Univ Toronto, Dept Med Biophys, Toronto, ON M5G 1L7, Canada [Walker, JR; Avvakumov, GV; Xue, S; Allali-Hassani, A; Arrowsmith, CH; Dhe-Paganon, S] Univ Toronto, Struct Genom Consortium, Toronto, ON M5G 1L7, Canada [Kareta, MS; Chedin, F] Univ Calif Davis, Dept Mol & Cellular Biol, Davis, CA 95616 USA [Achour, M; Bronner, C] Fac Pharm, CNRS UMR7213, Lab Biophoton & Pharmacol, F-67401 Illkirch Graffenstaden, France [Zuo, XB; Wang, YX] NCI, Prot Nucle Acid Interact Sect, Struct Biophys Lab, NIH, Frederick, MD 21702 USA [Dhe-Paganon, S] Univ Toronto, Dept Physiol, Toronto, ON M5G 1L5, Canada;Arrowsmith, CH (reprint author), 101 Coll St,Ste 700, Toronto, ON M5G 1L7, Canada;carrow@uhnres.utoronto.ca sirano.dhepaganon@utoronto.ca
    1. Year: 2011
    2. Date: Jul
  1. Journal: Journal of Biological Chemistry
    1. 286
    2. 27
    3. Pages: 24300-24311
  2. Type of Article: Article
  3. ISSN: 0021-9258
  1. Abstract:

    Histone modifications and DNA methylation represent two layers of heritable epigenetic information that regulate eukaryotic chromatin structure and gene activity. UHRF1 is a unique factor that bridges these two layers; it is required for maintenance DNA methylation at hemimethylated CpG sites, which are specifically recognized through its SRA domain and also interacts with histone H3 trimethylated on lysine 9 (H3K9me3) in an unspecified manner. Here we show that UHRF1 contains a tandem Tudor domain (TTD) that recognizes H3 tail peptides with the heterochromatin-associated modification state of trimethylated lysine 9 and unmodified lysine 4 (H3K4me0/K9me3). Solution NMR and crystallographic data reveal the TTD simultaneously recognizes H3K9me3 through a conserved aromatic cage in the first Tudor subdomain and unmodified H3K4 within a groove between the tandem subdomains. The subdomains undergo a conformational adjustment upon peptide binding, distinct from previously reported mechanisms for dual histone mark recognition. Mutant UHRF1 protein deficient for H3K4me0/K9me3 binding shows altered localization to heterochromatic chromocenters and fails to reduce expression of a target gene, p16(INK4A), when overexpressed. Our results demonstrate a novel recognition mechanism for the combinatorial readout of histone modification states associated with gene silencing and add to the growing evidence for coordination of, and cross-talk between, the modification states of H3K4 and H3K9 in regulation of gene expression.

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External Sources

  1. DOI: 10.1074/jbc.M111.234104
  2. WOS: 000292294900071

Library Notes

  1. Fiscal Year: FY2010-2011
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