Minimal role of base excision repair in TET-induced global DNA demethylation in HEK293T cells

被引:19
作者
Jin, Chunlei [1 ,2 ]
Qin, Taichun [3 ]
Barton, Michelle Craig [2 ]
Jelinek, Jaroslav [1 ]
Issa, Jean-Pierre J. [1 ]
机构
[1] Temple Univ, Fels Inst Canc Res & Mol Biol, Philadelphia, PA 19122 USA
[2] Univ Texas MD Anderson Canc Ctr, Dept Epigenet & Mol Carcinogenesis, Houston, TX 77030 USA
[3] Univ Texas MD Anderson Canc Ctr, Dept Canc Biol, Houston, TX 77030 USA
基金
美国国家卫生研究院;
关键词
base excision repair; DNA replication; DNA damage; DNA demethylation pathway; TET genes; MAMMALIAN DNA; CPG-SITES; IN-VIVO; 5-METHYLCYTOSINE; DAMAGE; METHYLATION; 5-HYDROXYMETHYLCYTOSINE; 5-CARBOXYLCYTOSINE; GLYCOSYLASE; MECHANISMS;
D O I
10.1080/15592294.2015.1091145
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Oxidation of 5-methylcytosine by TET family proteins can induce DNA replication-dependent (passive) DNA demethylation and base excision repair (BER)-based (active) DNA demethylation. The balance of active vs. passive TET-induced demethylation remains incompletely determined. In the context of large scale DNA demethylation, active demethylation may require massive induction of the DNA repair machinery and thus compromise genome stability. To study this issue, we constructed a tetracycline-controlled TET-induced global DNA demethylation system in HEK293T cells. Upon TET overexpression, we observed induction of DNA damage and activation of a DNA damage response; however, BER genes are not upregulated to promote DNA repair. Depletion of TDG (thymine DNA glycosylase) or APEX1 (apurinic/apyrimidinic endonuclease 1), two key BER enzymes, enhances rather than impairs global DNA demethylation, which can be explained by stimulated proliferation. By contrast, growth arrest dramatically blocks TET-induced global DNA demethylation. Thus, in the context of TET-induction in HEK293T cells, the DNA replication-dependent passive mechanism functions as the predominant pathway for global DNA demethylation. In the same context, BER-based active demethylation is markedly restricted by limited BER upregulation, thus potentially preventing a disastrous DNA damage response to extensive active DNA demethylation.
引用
收藏
页码:1006 / 1013
页数:8
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