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An interplay of the base excision repair and mismatch repair pathways in active DNA demethylation

机译:碱基切除修复和错配修复途径在活性DNA去甲基化中的相互作用

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Active DNA demethylation (ADDM) in mammals occurs via hydroxylation of 5-methylcytosine (5mC) by TET and/or deamination by AID/APOBEC family enzymes. The resulting 5mC derivatives are removed through the base excision repair (BER) pathway. At present, it is unclear how the cell manages to eliminate closely spaced 5mC residues whilst avoiding generation of toxic BER intermediates and whether alternative DNA repair pathways participate in ADDM. It has been shown that non-canonical DNA mismatch repair (ncMMR) can remove both alkylated and oxidized nucleotides from DNA. Here, a phagemid DNA containing oxidative base lesions and methylated sites are used to examine the involvement of various DNA repair pathways in ADDM in murine and human cell-free extracts. We demonstrate that, in addition to short-patch BER, 5-hydroxymethyluracil and uracil mispaired with guanine can be processed by ncMMR and long-patch BER with concomitant removal of distant 5mC residues. Furthermore, the presence of multiple mispairs in the same MMR nick/mismatch recognition region together with BER-mediated nick formation promotes proficient ncMMR resulting in the reactivation of an epigenetically silenced reporter gene in murine cells. These findings suggest cooperation between BER and ncMMR in the removal of multiple mismatches that might occur in mammalian cells during ADDM.
机译:哺乳动物中的主动DNA脱甲基(ADDM)通过5-甲基胞嘧啶(5mC)的TET羟化作用和/或AID / APOBEC家族酶的脱氨作用而发生。通过碱基切除修复(BER)途径去除生成的5mC衍生物。目前,尚不清楚细胞如何设法消除紧密间隔的5mC残基,同时避免产生有毒的BER中间体,以及DNA修复途径是否参与ADDM。已经表明,非规范的DNA错配修复(ncMMR)可以从DNA中去除烷基化和氧化的核苷酸。在这里,含有氧化性碱基损伤和甲基化位点的噬菌粒DNA用于检查鼠类和人类无细胞提取物中ADDM中各种DNA修复途径的参与。我们证明,除了短补丁BER,鸟嘌呤错配的5-羟甲基尿嘧啶和尿嘧啶可以通过ncMMR和长补丁BER进行处理,同时去除远处的5mC残基。此外,在同一MMR缺口/错配识别区域中多个错配的存在以及BER介导的缺口形成促进了熟练的ncMMR,导致鼠细胞中表观遗传沉默的报告基因的重新激活。这些发现表明,BER和ncMMR之间的合作消除了ADDM期间哺乳动物细胞中可能发生的多种错配。

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