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Structural insights into DNA sequence recognition by Type ISP restriction-modification enzymes

机译:通过ISP型限制性修饰酶识别DNA序列的结构见解

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摘要

Engineering restriction enzymes with new sequence specificity has been an unaccomplished challenge, presumably because of the complexity of target recognition. Here we report detailed analyses of target recognition by Type ISP restriction-modification enzymes. We determined the structure of the Type ISP enzyme LlaGI bound to its target and compared it with the previously reported structure of a close homologue that binds to a distinct target, LlaBIII. The comparison revealed that, although the two enzymes use almost a similar set of structural elements for target recognition, the residues that read the bases vary. Change in specificity resulted not only from appropriate substitution of amino acids that contacted the bases but also from new contacts made by positionally distinct residues directly or through a water bridge. Sequence analyses of 552 Type ISP enzymes showed that the structural elements involved in target recognition of LlaGI and LlaBIII were structurally well-conserved but sequentially less-conserved. In addition, the residue positions within these structural elements were under strong evolutionary constraint, highlighting the functional importance of these regions. The comparative study helped decipher a partial consensus code for target recognition by Type ISP enzymes.
机译:具有新序列特异性的工程限制酶一直是一项艰巨的挑战,大概是因为靶标识别的复杂性。在这里,我们报告通过类型ISP限制修饰酶对目标识别的详细分析。我们确定了与它的靶标结合的ISP型酶LlaGI的结构,并将其与先前报道的与不同靶标LlaBIII结合的紧密同源物的结构进行了比较。比较结果表明,尽管两种酶几乎都使用相似的结构元件来识别靶标,但读取碱基的残基却有所不同。特异性的变化不仅是由于与碱基接触的氨基酸的适当取代,而且是由于位置不同的残基直接或通过水桥而形成的新的接触。 552种ISP酶的序列分析表明,参与LlaGI和LlaBIII靶标识别的结构元件在结构上保守性好,但顺序上保守性低。此外,这些结构元件中的残基位置受到强大的进化约束,突出了这些区域的功能重要性。这项比较研究帮助破译了ISP型酶识别目标的部分共有密码。

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