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Ⅰ-Ssp6803l: the first homing endonuclease from the PD-(D/E)XK superfamily exhibits an unusual mode of DNA recognition

机译:Ⅰ-Ssp6803l:PD-(D / E)XK超家族的第一个归巢核酸内切酶表现出不寻常的DNA识别方式

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Motivation: Restriction endonucleases (REases) and homing endo-nucleases (HEases) are biotechnologically important enzymes. Nearly all structurally characterized REases belong to the PD-(D/E)XK superfamily of nucleases, while most HEases belong to an unrelated LAGLIDADG superfamily. These two protein folds are typically associated with very different modes of protein-DNA recognition, consistent with the different mechanisms of action required to achieve high specificity. REases recognize short DNA sequences using multiple contacts per base pair, while HEases recognize very long sites using a few contacts per base pair, thereby allowing for partial degeneracy of the target sequence. Thus far, neither REases with the LAGLIDADG fold, nor HEases with the PD-(D/E)XK fold, have been found. Results: Using protein fold recognition, we have identified the first member of the PD-(D/E)XK superfamily among homing endonucleases, a cyanobacterial enzyme Ⅰ-Ssp6803l. We present a model of the Ⅰ-Ssp6803l-DNA complex based on the structure of Type Ⅱ restriction endonuclease R.Bgll and predict the active site and residues involved in specific DNA sequence recognition by Ⅰ-Ssp6803l. Our finding reveals a new unexpected evolutionary link between HEases and REases and suggests how PD-(D/E)XK nucleases may develop a 'HEase-like' way of interacting with the extended DNA sequence. This in turn may be exploited to study the evolution of DNA sequence specificity and to engineer nucleases with new substrate specificities.
机译:动机:限制性内切酶(REases)和归巢内切酶(HEases)是生物技术上重要的酶。几乎所有结构特征化的REase都属于核酸酶的PD-(D / E)XK超家族,而大多数HEase则属于无关的LAGLIDADG超家族。这两个蛋白质折叠通常与非常不同的蛋白质-DNA识别模式相关,这与实现高特异性所需的不同作用机制一致。 REases使用每个碱基对的多个接触识别短的DNA序列,而HEases使用每个碱基对的几个接触识别非常长的位点,从而允许靶序列的部分简并。迄今为止,尚未发现具有LAGLIDADG折叠的REase,或具有PD-(D / E)XK折叠的HEase。结果:通过蛋白质折叠识别,我们在归巢核酸内切酶蓝细菌酶Ⅰ-Ssp6803l中鉴定了PD-(D / E)XK超家族的第一个成员。基于Ⅱ型限制性核酸内切酶R.Bgll的结构,建立了Ⅰ-Ssp6803l-DNA复合物的模型,并预测了Ⅰ-Ssp6803l识别特定DNA序列的活性位点和残基。我们的发现揭示了HEases和REases之间新的出乎意料的进化联系,并暗示了PD-(D / E)XK核酸酶如何形成与扩展DNA序列相互作用的“ HEase样”方式。反过来,这可以被用来研究DNA序列特异性的进化并以新的底物特异性工程改造核酸酶。

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