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首页> 外文期刊>Journal of Molecular Biology >Identification of a Single HNH Active Site in Type IIS Restriction Endonuclease Eco31I.
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Identification of a Single HNH Active Site in Type IIS Restriction Endonuclease Eco31I.

机译:在IIS型限制性内切核酸酶Eco31I中识别单个HNH活动位点。

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Type IIS restriction endonuclease Eco31I is a "short-distance cutter", which cleaves DNA strands close to its recognition sequence, 5'-GGTCTC(1/5). Previously, it has been proposed that related endonucleases recognizing a common sequence core GTCTC possess two active sites for cleavage of both strands in the DNA substrate. Here, we present bioinformatic identification and experimental evidence for a single nuclease active site. We identified a short region of homology between Eco31I and HNH nucleases, constructed a three-dimensional model of the putative catalytic domain and validated our predictions by random and site-specific mutagenesis. The restriction mechanism of Eco31I is suggested by analogy to the mechanisms of phage T4 endonuclease VII and homing endonuclease I-PpoI. We propose that residues D311 and N334 coordinate the cofactor. H312 acts as a general base-activating water molecule for the nucleophilic attack. K337 together with R340 and D345 are located in close proximity to the active center and are essential for correct folding of catalytic motif, while D345 together with R264 and D273 could be directly involved in DNA binding. We also predict that the Eco31I catalytic domain contains a putative Zn-binding site, which is essential for its structural integrity. Our results suggest that the HNH-like active site is involved in the cleavage of both strands in the DNA substrate. On the other hand, analysis of site-specific mutants in the region, previously suggested to harbor the second active site, revealed its irrelevance to the nuclease activity. Thus, our data argue against the earlier prediction and indicate the presence of a single conserved active site in type IIS restriction endonucleases that recognize common sequence core GTCTC.
机译:IIS型限制性核酸内切酶Eco31I是一种“短距离切割器”,可切割与其识别序列5'-GGTCTC(1/5)接近的DNA链。以前,已经提出了识别共同序列核心GTCTC的相关核酸内切酶具有两个活性位点,用于切割DNA底物中的两条链。在这里,我们介绍了单个核酸酶活性位点的生物信息学鉴定和实验证据。我们确定了Eco31I和HNH核酸酶之间的短同源性区域,构建了推定催化域的三维模型,并通过随机和位点特异性诱变验证了我们的预测。通过类似于噬菌体T4内切核酸酶VII和归巢内切核酸酶I-PpoI的机制,提出了Eco31I的限制机制。我们建议残基D311和N334协调辅因子。 H312充当亲核攻击的一般碱基激活水分子。 K337与R340和D345一起位于活性中心附近,对于正确折叠催化基序至关重要,而D345与R264和D273一起可以直接参与DNA结合。我们还预测Eco31I催化域包含一个假定的Zn结合位点,这对于其结构完整性至关重要。我们的结果表明,类似HNH的活性位点参与了DNA底物中两条链的切割。另一方面,对该区域中位点特异性突变体的分析(先前建议包含第二个活性位点)表明其与核酸酶活性无关。因此,我们的数据与早期的预测相抵触,并表明在识别共同序列核心GTCTC的IIS型限制性核酸内切酶中存在单个保守的活性位点。

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