首页> 美国卫生研究院文献>Nucleic Acids Research >Discovery of a novel restriction endonuclease by genome comparison and application of a wheat-germ-based cell-free translation assay: PabI (5′-GTA/C) from the hyperthermophilic archaeon Pyrococcus abyssi
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Discovery of a novel restriction endonuclease by genome comparison and application of a wheat-germ-based cell-free translation assay: PabI (5′-GTA/C) from the hyperthermophilic archaeon Pyrococcus abyssi

机译:通过基因组比较发现新的限制性内切核酸酶并应用基于小麦胚芽的无细胞翻译测定法:来自超嗜热古生火球菌的PabI(5-GTA / C)

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摘要

To search for restriction endonucleases, we used a novel plant-based cell-free translation procedure that bypasses the toxicity of these enzymes. To identify candidate genes, the related genomes of the hyperthermophilic archaea Pyrococcus abyssi and Pyrococcus horikoshii were compared. In line with the selfish mobile gene hypothesis for restriction–modification systems, apparent genome rearrangement around putative restriction genes served as a selecting criterion. Several candidate restriction genes were identified and then amplified in such a way that they were removed from their own translation signal. During their cloning into a plasmid, the genes became connected with a plant translation signal. After in vitro transcription by T7 RNA polymerase, the mRNAs were separated from the template DNA and translated in a wheat-germ-based cell-free protein synthesis system. The resulting solution could be directly assayed for restriction activity. We identified two deoxyribonucleases. The novel enzyme was denoted as PabI, purified and found to recognize 5′-GTAC and leave a 3′-TA overhang (5′-GTA/C), a novel restriction enzyme-generated terminus. PabI is active up to 90°C and optimally active at a pH of around 6 and in NaCl concentrations ranging from 100 to 200 mM. We predict that it has a novel 3D structure.
机译:为了搜索限制性核酸内切酶,我们使用了一种新颖的基于植物的无细胞翻译程序,绕过了这些酶的毒性。为了鉴定候选基因,比较了超嗜热古生火球菌和火球菌的相关基因组。与限制性修饰系统自私的流动基因假设相一致,推定限制性基因周围的明显基因组重排用作选择标准。鉴定了几种候选限制性基因,然后以从它们自己的翻译信号中将它们去除的方式扩增。在将它们克隆为质粒的过程中,这些基因与植物翻译信号相连。在通过T7 RNA聚合酶进行体外转录后,从模板DNA中分离出mRNA,并在基于小麦胚芽的无细胞蛋白质合成系统中进行翻译。可以直接测定所得溶液的限制性内切酶活性。我们确定了两个脱氧核糖核酸酶。将该新型酶标记为PabI,纯化后发现可识别5'-GTAC,并留下3'-TA突出端(5'-GTA / C),这是一种新的限制性酶产生的末端。 PabI在高达90°C的温度下具有活性,并且在pH约为6且NaCl浓度范围为100至200 mM时具有最佳活性。我们预测它具有新颖的3D结构。

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