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Identification of Cj1051c as a Major Determinant for the Restriction Barrier of Campylobacter jejuni Strain NCTC11168

机译:Cj1051c鉴定为空肠弯曲菌NCTC11168限制性障碍的主要决定因素

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Campylobacter jejuni is a leading cause of human diarrheal illness in the world, and research on it has benefitted greatly by the completion of several genome sequences and the development of molecular biology tools. However, many hurdles remain for a full understanding of this unique bacterial pathogen. One of the most commonly used strains for genetic work with C. jejuni is NCTC11168. While this strain is readily transformable with DNA for genomic recombination, transformation with plasmids is problematic. In this study, we have identified a determinant of this to be cj1051c , predicted to encode a restriction-modification type IIG enzyme. Knockout mutagenesis of this gene resulted in a strain with a 1,000-fold-enhanced transformation efficiency with a plasmid purified from a C. jejuni host. Additionally, this mutation conferred the ability to be transformed by plasmids isolated from an Escherichia coli host. Sequence analysis suggested a high level of variability of the specificity domain between strains and that this gene may be subject to phase variation. We provide evidence that cj1051c is active in NCTC11168 and behaves as expected for a type IIG enzyme. The identification of this determinant provides a greater understanding of the molecular biology of C. jejuni as well as a tool for plasmid work with strain NCTC11168.
机译:空肠弯曲菌是世界上人类腹泻病的主要原因,通过完成一些基因组序列和开发分子生物学工具,空肠弯曲菌的研究大大受益。但是,要全面了解这种独特的细菌病原体,仍然存在许多障碍。用于空肠弯曲杆菌遗传工作的最常用菌株之一是NCTC11168。尽管该菌株易于用DNA转化以进行基因组重组,但是用质粒转化是有问题的。在这项研究中,我们已经确定了cj1051c的决定因素,预计将编码限制修饰类型IIG酶。该基因的敲除诱变产生了具有从空肠弯曲杆菌宿主纯化的质粒的转化率提高了1,000倍的菌株。另外,该突变赋予了被从大肠杆菌宿主分离的质粒转化的能力。序列分析表明菌株之间特异性结构域的高度可变性,并且该基因可能会发生相变。我们提供的证据表明cj1051c在NCTC11168中具有活性,并且表现出与IIG型酶一样的预期效果。该决定簇的鉴定为空肠弯曲杆菌的分子生物学提供了更深入的了解,并为菌株NCTC11168进行质粒工作提供了工具。

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