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Differential binding of Escherichia coli McrA protein to DNA sequences that contain the dinucleotide m5CpG

机译:大肠杆菌McrA蛋白与包含二核苷酸m5CpG的DNA序列的差异结合

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摘要

The Escherichia coli McrA protein, a putative C5-methylcytosine/C5-hydroxyl methylcytosine-specific nuclease, binds DNA with symmetrically methylated HpaII sequences (Cm5CGG), but its precise recognition sequence remains undefined. To determine McrA’s binding specificity, we cloned and expressed recombinant McrA with a C-terminal StrepII tag (rMcrA-S) to facilitate protein purification and affinity capture of human DNA fragments with m5C residues. Sequence analysis of a subset of these fragments and electrophoretic mobility shift assays with model methylated and unmethylated oligonucleotides suggest that N(Y > R) m5CGR is the canonical binding site for rMcrA-S. In addition to binding HpaII-methylated double-stranded DNA, rMcrA-S binds DNA containing a single, hemimethylated HpaII site; however, it does not bind if A, C, T or U is placed across from the m5C residue, but does if I is opposite the m5C. These results provide the first systematic analysis of McrA’s in vitro binding specificity.
机译:大肠杆菌McrA蛋白是一种推测的C 5 -甲基胞嘧啶/ C 5 -羟基甲基胞嘧啶特异性核酸酶,它结合具有对称甲基化HpaII序列(Cm5CGG)的DNA。识别顺序仍然不确定。为了确定McrA的结合特异性,我们克隆并表达了带有C末端StrepII标签(rMcrA-S)的重组McrA,以促进蛋白质纯化和具有m5C残基的人类DNA片段的亲和捕获。这些片段的子集的序列分析和模型甲基化和未甲基化的寡核苷酸的电泳迁移率迁移分析表明,N(Y> R)m5CGR是rMcrA-S的典型结合位点。除了结合HpaII-甲基化的双链DNA外,rMcrA-S还结合了含有单个半甲基化的HpaII位点的DNA。但是,如果在m5C残基对面放置A,C,T或U,则它不会结合,但是如果I与m5C相反,则它会结合。这些结果对McrA的体外结合特异性进行了首次系统分析。

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