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Modification-dependent restriction endonuclease MspJI flips 5-methylcytosine out of the DNA helix

机译:修饰依赖性限制性核酸内切酶MspJI将5-甲基胞嘧啶从DNA螺旋中翻转出来

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摘要

MspJI belongs to a family of restriction enzymes that cleave DNA containing 5-methylcytosine (5mC) or 5-hydroxymethylcytosine (5hmC). MspJI is specific for the sequence 5(h)mC-N-N-G or A and cleaves with some variability 9/13 nucleotides downstream. Earlier, we reported the crystal structure of MspJI without DNA and proposed how it might recognize this sequence and catalyze cleavage. Here we report its co-crystal structure with a 27-base pair oligonucleotide containing 5mC. This structure confirms that MspJI acts as a homotetramer and that the modified cytosine is flipped from the DNA helix into an SRA-like-binding pocket. We expected the structure to reveal two DNA molecules bound specifically to the tetramer and engaged with the enzyme's two DNA-cleavage sites. A coincidence of crystal packing precluded this organization, however. We found that each DNA molecule interacted with two adjacent tetramers, binding one specifically and the other non-specifically. The latter interaction, which prevented cleavage-site engagement, also involved base flipping and might represent the sequence-interrogation phase that precedes specific recognition. MspJI is unusual in that DNA molecules are recognized and cleaved by different subunits. Such interchange of function might explain how other complex multimeric restriction enzymes act.
机译:MspJI属于限制性内切酶家族,可切割包含5-甲基胞嘧啶(5mC)或5-羟甲基胞嘧啶(5hmC)的DNA。 MspJI对序列5(h)mC-N-N-G或A具有特异性,并在下游具有9/13个核苷酸的可变性进行切割。早些时候,我们报道了不含DNA的MspJI的晶体结构,并提出了它如何识别该序列并催化切割的方法。在这里,我们报告其与含有5mC的27个碱基对的寡核苷酸的共晶体结构。这种结构证实MspJI充当同型四聚体,并且修饰的胞嘧啶从DNA螺旋翻转到SRA样结合袋中。我们期望该结构能够揭示两个与四聚体特异性结合并与酶的两个DNA切割位点结合的DNA分子。然而,晶体堆积的巧合阻止了这种组织。我们发现每个DNA分子与两个相邻的四聚体相互作用,一个特异性结合另一个非特异性结合。后者的相互作用阻止了切割位点的参与,也涉及碱基的翻转,可能代表了特定识别之前的序列询问阶段。 MspJI的与众不同之处在于,DNA分子可以被不同的亚基识别和切割。这种功能互换可以解释其他复杂的多聚限制酶如何起作用。

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