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Endonuclease G preferentially cleaves 5-hydroxymethylcytosine-modified DNA creating a substrate for recombination

机译:内切核酸酶G优先切割5-羟甲基胞嘧啶改性的DNA,用于产生重组的基材

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摘要

5-hydroxymethylcytosine (5hmC) has been suggested to be involved in various nucleic acid transactions and cellular processes, including transcriptional regulation, demethylation of 5-methylcytosine and stem cell pluripotency. We have identified an activity that preferentially catalyzes the cleavage of double-stranded 5hmC-modified DNA. Using biochemical methods we purified this activity from mouse liver extracts and demonstrate that the enzyme responsible for the cleavage of 5hmC-modified DNA is Endonuclease G (EndoG). We show that recombinant EndoG preferentially recognizes and cleaves a core sequence when one specific cytosine within that core sequence is hydroxy-methylated. Additionally, we provide in vivo evidence that EndoG catalyzes the formation of double-stranded DNA breaks and that this cleavage is dependent upon the core sequence, EndoG and 5hmC. Finally, we demonstrate that the 5hmC modification can promote conservative recombination in an EndoG-dependent manner.
机译:已经提出5-羟甲基胞嘧啶(5HMC)参与各种核酸交易和细胞过程,包括转录调节,5-甲基胞嘧啶和干细胞多能性的去甲基化。 我们已经确定了一种优先催化双链5HMC改性DNA的切割的活性。 使用生化方法,我们从小鼠肝提取物中纯化了该活性,并证明了负责5HMC改性DNA切割的酶是核心酶G(endoG)。 当该核序列内的一种特异性胞嘧啶是羟基 - 甲基化时,重组endog优先识别和切割核心序列。 此外,我们提供的体内证据表明,engoG催化了双链DNA断裂的形成,并且这种切割取决于核心序列,endoG和5HMC。 最后,我们证明5HMC改性可以以依赖于基因的方式促进保守重组。

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