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首页> 外文期刊>Applied and Environmental Microbiology >Construction of Improved Temperature-Sensitive and Mobilizable Vectors and Their Use for Constructing Mutations in the Adhesin-Encoding acm Gene of Poorly Transformable Clinical Enterococcus faecium Strains
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Construction of Improved Temperature-Sensitive and Mobilizable Vectors and Their Use for Constructing Mutations in the Adhesin-Encoding acm Gene of Poorly Transformable Clinical Enterococcus faecium Strains

机译:改进的温度敏感和可动载体的构建及其在转化不良临床粪肠球菌菌株的粘附素编码acm基因突变中的应用

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摘要

Inactivation by allelic exchange in clinical isolates of the emerging nosocomial pathogen Enterococcus faecium has been hindered by lack of efficient tools, and, in this study, transformation of clinical isolates was found to be particularly problematic. For this reason, a vector for allelic replacement (pTEX5500ts) was constructed that includes (i) the pWV01-based gram-positive repAts replication region, which is known to confer a high degree of temperature intolerance, (ii) Escherichia coli oriR from pUC18, (iii) two extended multiple-cloning sites located upstream and downstream of one of the marker genes for efficient cloning of flanking regions for double-crossover mutagenesis, (iv) transcriptional terminator sites to terminate undesired readthrough, and (v) a synthetic extended promoter region containing the cat gene for allelic exchange and a high-level gentamicin resistance gene, aph(2′′)-Id, to distinguish double-crossover recombination, both of which are functional in gram-positive and gram-negative backgrounds. To demonstrate the functionality of this vector, the vector was used to construct an acm (encoding an adhesin to collagen from E. faecium) deletion mutant of a poorly transformable multidrug-resistant E. faecium endocarditis isolate, TX0082. The acm-deleted strain, TX6051 (TX0082Δacm), was shown to lack Acm on its surface, which resulted in the abolishment of the collagen adherence phenotype observed in TX0082. A mobilizable derivative (pTEX5501ts) that contains oriT of Tn916 to facilitate conjugative transfer from the transformable E. faecalis strain JH2Sm::Tn916 to E. faecium was also constructed. Using this vector, the acm gene of a nonelectroporable E. faecium wound isolate was successfully interrupted. Thus, pTEX5500ts and its mobilizable derivative demonstrated their roles as important tools by helping to create the first reported allelic replacement in E. faecium; the constructed this acm deletion mutant will be useful for assessing the role of acm in E. faecium pathogenesis using animal models.
机译:缺乏有效工具阻碍了新兴医院病原体粪肠球菌临床分离物中等位基因交换的失活,并且在这项研究中,发现临床分离株的转化特别成问题。因此,构建了用于等位基因置换的载体(pTEX5500ts),其中包括(i)基于pWV01的革兰氏阳性repAts复制区,已知该复制区具有高度的温度耐受性,(ii)来自pUC18的大肠杆菌oriR ,(iii)位于一个标记基因上游和下游的两个延伸的多克隆位点,用于有效克隆侧翼区域以进行双交换诱变;(iv)转录终止位点可终止不需要的通读;以及(v)合成的延伸启动子区域,包含用于等位基因交换的cat基因和一个高水平的庆大霉素抗性基因aph(2'')-Id,以区分双交换重组,两者在革兰氏阳性和革兰氏阴性背景中均起作用。为了证明该载体的功能,该载体用于构建难以转化的多药耐药性粪肠球菌心内膜炎分离株TX0082的acm(编码黏附于粪肠球菌的胶原蛋白)缺失突变体。已显示缺失acm的菌株TX6051(TX0082Δacm)在其表面缺少Acm,这导致了TX0082中观察到的胶原粘附表型的消除。还构建了包含Tn916 oriT的可动员衍生物(pTEX5501ts),以促进从可转化的屎肠球菌菌株JH2Sm :: Tn916到屎肠球菌的共轭转移。使用该载体,成功地阻断了不可电穿孔的屎肠球菌伤口分离株的acm基因。因此,pTEX5500ts及其可移动衍生物通过帮助在粪便中创建第一个报道的等位基因替代物,证明了其作为重要工具的作用。所构建的该acm缺失突变体对于使用动物模型评估acm在粪肠球菌发病机理中的作用将是有用的。

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