Double Strand Breaks Can Initiate Gene Silencing and SIRT1-Dependent Onset of DNA Methylation in an Exogenous Promoter CpG Island

被引:306
作者
O'Hagan, Heather M. [1 ]
Mohammad, Helai P. [1 ]
Baylin, Stephen B. [1 ]
机构
[1] Canc Ctr Johns Hopkins, Sidney Kimmel Comprehens Canc Ctr, Baltimore, MD USA
来源
PLOS GENETICS | 2008年 / 4卷 / 08期
关键词
D O I
10.1371/journal.pgen.1000155
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Chronic exposure to inducers of DNA base oxidation and single and double strand breaks contribute to tumorigenesis. In addition to the genetic changes caused by this DNA damage, such tumors often contain epigenetically silenced genes with aberrant promoter region CpG island DNA hypermethylation. We herein explore the relationships between such DNA damage and epigenetic gene silencing using an experimental model in which we induce a defined double strand break in an exogenous promoter construct of the E-cadherin CpG island, which is frequently aberrantly DNA hypermethylated in epithelial cancers. Following the onset of repair of the break, we observe recruitment to the site of damage of key proteins involved in establishing and maintaining transcriptional repression, namely SIRT1, EZH2, DNMT1, and DNMT3B, and the appearance of the silencing histone modifications, hypoacetyl H4K16, H3K9me2 and me3, and H3K27me3. Although in most cells selected after the break, DNA repair occurs faithfully with preservation of activity of the promoter, a small percentage of the plated cells demonstrate induction of heritable silencing. The chromatin around the break site in such a silent clone is enriched for most of the above silent chromatin proteins and histone marks, and the region harbors the appearance of increasing DNA methylation in the CpG island of the promoter. During the acute break, SIRT1 appears to be required for the transient recruitment of DNMT3B and subsequent methylation of the promoter in the silent clones. Taken together, our data suggest that normal repair of a DNA break can occasionally cause heritable silencing of a CpG island-containing promoter by recruitment of proteins involved in silencing. Furthermore, with contribution of the stress-related protein SIRT1, the break can lead to the onset of aberrant CpG island DNA methylation, which is frequently associated with tight gene silencing in cancer.
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页数:16
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共 86 条
  • [1] Phosphorylation of HuR by Chk2 regulates SIRT1 expression
    Abdelmohsen, Kotb
    Pullmann, Rudolf, Jr.
    Lai, Ashish
    Kim, Hyeon Ho
    Galban, Stefanie
    Yang, Xiaoling
    Blethrow, Justin D.
    Walker, Mark
    Shubert, Jonathan
    Gillespie, David A.
    Furneaux, Henry
    Gorospe, Myriam
    [J]. MOLECULAR CELL, 2007, 25 (04) : 543 - 557
  • [2] Histone modifications in response to DNA damage
    Altaf, Mohammed
    Saksouk, Nehme
    Cote, Jacques
    [J]. MUTATION RESEARCH-FUNDAMENTAL AND MOLECULAR MECHANISMS OF MUTAGENESIS, 2007, 618 (1-2) : 81 - 90
  • [3] Regulated recruitment of HP1 to a euchromatic gene induces mitotically heritable, epigenetic gene silencing: a mammalian cell culture model of gene variegation
    Ayyanathan, K
    Lechner, MS
    Bell, P
    Maul, GG
    Schultz, DC
    Yamada, Y
    Tanaka, K
    Torigoe, K
    Rauscher, FJ
    [J]. GENES & DEVELOPMENT, 2003, 17 (15) : 1855 - 1869
  • [4] Dnmt3a and Dnmt3b are transcriptional repressors that exhibit unique localization properties to heterochromatin
    Bachman, KE
    Rountree, MR
    Baylin, SB
    [J]. JOURNAL OF BIOLOGICAL CHEMISTRY, 2001, 276 (34) : 32282 - 32287
  • [5] Epigenetic gene silencing in cancer - a mechanism for early oncogenic pathway addiction?
    Baylin, SB
    Ohm, JE
    [J]. NATURE REVIEWS CANCER, 2006, 6 (02) : 107 - 116
  • [6] Bestor TH, 1998, CIBA F SYMP, V214, P187
  • [7] Bestor TH, 1998, NOVART FDN SYMP, V214, P228
  • [8] BESTOR TH, 1998, NOVART FDN SYMP, V214, P228
  • [9] Acetylation of histone H4 by Esa1 is required for DNA double-strand break repair
    Bird, AW
    Yu, DY
    Pray-Grant, MG
    Qiu, QF
    Harmon, KE
    Megee, PC
    Grant, PA
    Smith, MM
    Christman, MF
    [J]. NATURE, 2002, 419 (6905) : 411 - 415
  • [10] Mutagenicity, toxicity and repair of DNA base damage induced by oxidation
    Bjelland, S
    Seeberg, E
    [J]. MUTATION RESEARCH-FUNDAMENTAL AND MOLECULAR MECHANISMS OF MUTAGENESIS, 2003, 531 (1-2) : 37 - 80