Exocyclic ethenobases are highly mutagenic DNA lesions strongly implicated in inflammation and vinyl chloride-induced carcinogenesis. While the alkyladenine DNA glycosylase, AAG (or MPG), binds the etheno lesions 1,N(6)-ethenoadenine (ÉA) and 3,N(4)-ethenocytosine (ÉC) with high affinity, only ÉA can be excised to initiate base excision repair. Here, we discover that the human AlkB homolog 2 (ALKBH2) dioxygenase enzyme catalyzes direct reversal of ÉC lesions in both double- and single-stranded DNA with comparable efficiency to canonical ALKBH2 substrates. Notably, we find that in vitro, the non-enzymatic binding of AAG to ÉC specifically blocks ALKBH2-catalyzed repair of ÉC but not that of methylated ALKBH2 substrates. These results identify human ALKBH2 as a repair enzyme for mutagenic ÉC lesions and highlight potential consequences for substrate-binding overlap between the base excision and direct reversal DNA repair pathways.
Direct repair of 3,N(4)-ethenocytosine by the human ALKBH2 dioxygenase is blocked by the AAG/MPG glycosylase.
人类 ALKBH2 双加氧酶对 3,N(4)-乙烯胞嘧啶的直接修复被 AAG/MPG 糖基化酶阻断
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作者:Fu Dragony, Samson Leona D
| 期刊: | DNA Repair | 影响因子: | 2.700 |
| 时间: | 2012 | 起止号: | 2012 Jan 2; 11(1):46-52 |
| doi: | 10.1016/j.dnarep.2011.10.004 | 种属: | Human |
| 研究方向: | 免疫/内分泌 | ||
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