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Human DNA mismatch repair in vitro operates independently of methylationstatus at CpG sites

机译:体外人类DNA错配修复独立于CpG位点的甲基化状态

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Whereas in Escherichia coil DNA mismatch repair is directed to the newly synthesized strand due to its transient lack of adenine methylation, the molecular determinants of strand discrimination in eukaryotes are presently unknown. In mammalian cells, cytosine methylation within CpG sites may represent an analogous and mechanistically plausible means of targeting mismatch correction. Using HeLa nuclear extracts, we conducted a systematic analysis in vitro to determine whether cytosine methylation participates in human DNA mismatch repair. We prepared a set of A.C heteroduplex molecules that were either unmethylated, hemimethylated or fully methylated at CpG sequences and found that the methylation status persisted under the assay conditions. However, no effect on either the time course or the magnitude of mismatch repair events was evident; only strand discontinuities contributed to strand bias. By western analysis we demonstrated that the HeLa extract contained MED1 protein, which interacts with MLH1 and binds to CpG-methylated DNA; supplementation with purified MED1 protein was without effect. In summary, human DNA mismatch repair operates independently of CpG methylation status, and we found no evidence supporting a role for CpG hemimethylation as a strand discrimination signal.
机译:在大肠杆菌中,由于暂时缺乏腺嘌呤甲基化,DNA错配修复是针对新合成的链,而真核生物中链歧视的分子决定因素目前尚不清楚。在哺乳动物细胞中,CpG位点内的胞嘧啶甲基化可能代表靶向错配校正的类似且机制合理的手段。我们使用HeLa核提取物在体外进行了系统分析,以确定胞嘧啶甲基化是否参与人类DNA错配修复。我们准备了一组在CpG序列上未甲基化,半甲基化或完全甲基化的A.C异源双链分子,发现在检测条件下甲基化状态持续存在。但是,对时间过程或失配修复事件的大小均无影响;只有钢绞线的不连续性导致钢绞线的偏斜。通过西方分析,我们证明了HeLa提取物含有MED1蛋白,该蛋白与MLH1相互作用并与CpG甲基化的DNA结合。补充纯化的MED1蛋白无效。总而言之,人类DNA错配修复的运行独立于CpG甲基化状态,我们发现没有证据支持CpG半甲基化作为链识别信号的作用。

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