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首页> 外文期刊>Plasmid: An International Journal Devoted to Extrachromosomal Gene Systems >Analysis of pCERC7, a small antibiotic resistance plasmid from a commensal ST131 Escherichia coli, defines a diverse group of plasmids that include various segments adjacent to a multimer resolution site and encode the same NikA relaxase accessory protein enabling mobilisation
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Analysis of pCERC7, a small antibiotic resistance plasmid from a commensal ST131 Escherichia coli, defines a diverse group of plasmids that include various segments adjacent to a multimer resolution site and encode the same NikA relaxase accessory protein enabling mobilisation

机译:PCERC7的分析,来自共数ST131大肠杆菌的小抗生素抗性质粒定义了多样的质粒,包括与多聚体分辨率部位相邻的各种段,并编码相同的尼卡弛豫酶配件蛋白,从而实现动员

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The ampicillin resistance plasmid pCERC7, carrying transposon Tn2 with an IS4 insertion, was detected in the draft genome of a commensal Escherichia coli isolate. The genome data also revealed that this isolate belongs to ST131, Glade B. pCERC7 is 9712 bp comprised of a 3319 bp backbone, Tn2::IS4 (6388 bp) and 5 bp of target site duplication, and was present at a copy number of 40. pCERC7 is related to several plasmids composed of only the backbone, or the backbone with the Tn2 insertion in the same position. These plasmids have been found previously in Escherichia coli or Salmonella enterica recovered in several different countries from as early as the 1970s. This group was named the NTP16 group after the best studied example. pCERC7 was annotated using available information about plasmids in this group and additional analyses. The backbone includes genes for RNA I and RNA II to initiate replication and the Tn2 interrupts a gene found here to encode a protein 66% identical to the Rom regulatory protein of ColEl. NTP16 family plasmids include a gene, previously designated mobA, that was found to encode a homologue (53% identical) of the NikA relaxase accessory protein of the conjugative Inch plasmid R64, which is known to bind to the R64 oriT. However, a nikB relaxase gene is not present, indicating that a relaxase must be supplied in trans for mobilisation by R64 to occur, as demonstrated previously for NTP16. Hence, MobA of NTP16 and relatives was renamed NilcA. Upstream of nikA, we found a region closely related to the oriT of R64. pCERC7 and all members of the NTP16 family also include a multimer resolution site, nmr, similar to the cer site of ColE1. The backbone of the NTP16 family also includes genes for a demonstrated toxin antitoxin system, LsoAB. Several more distantly related groups of plasmids that include a very closely related nmr-nikA-oriTsegment (99.4-93.7% DNA identity) were identified in the GenBank non-redundant DNA database. All use an RNA I/RNA II-Rom system for replication initiation, but each contains a unique fragment adjacent to the nmr site. The segment of the NTP16/pCERC7 group that encodes the LsoAB toxin-antitoxin system is replaced by a different segment in other family groups. The point at which the sequences diverge is between the XerC and XerD sites of the dif site at one end of nmr, suggesting that the evolution of this broad group of plasmids involves XerC/XerD recombination. (C) 2016 Elsevier Inc. All rights reserved.
机译:在共数大肠杆菌分离物的基因组草案中,检测到具有IS4插入的转座子TN2的氨苄青霉素抗性质粒PCERC7。基因组数据还透露,这种隔离属于ST131,Glade B.PCERC7是9712 BP,包括3319bp骨干,TN2 :: IS4(6388bp)和5bp的目标站点复制,并且存在于副本数量40.PCERC7与仅由骨架组成的几种质粒,或者在相同位置处的TN2插入的骨架。在20世纪70年代早早,这些质粒已在大肠杆菌或沙门氏菌中被发现在几个不同的国家中回收。在最佳研究的例子之后,该组被命名为NTP16组。 PCERC7使用该组中的质粒的可用信息和其他分析进行了注释。骨干包括用于引发复制的RNA I和RNA II的基因,并且TN2中断这里发现的基因以编码与COLER的ROM调节蛋白相同的蛋白质66%。 NTP16家族质粒包括先前指定的MOBA的基因,发现该基因被发现编码缀合的英寸质粒R64的尼卡弛豫酶辅助蛋白的同源物(53%相同),这已知已知与R64结合。然而,不存在NIKB弛豫酶基因,表明必须在r64中供应弛豫酶以便通过先前用于NTP16的r64进行动员。因此,NTP16和亲属的MOBA更名为NILCA。在Nika的上游,我们发现一个与R64的orit密切相关的地区。 PCERC7和NTP16系列的所有成员还包括多聚体分辨率网站NMR,类似于COLE1的CER网站。 NTP16系列的骨干还包括用于证明毒素抗毒素系统的基因,LSOFAB。在Genbank非冗余DNA数据库中鉴定出包括非常密切相关的NMR-Nika-OritSement(99.4-93.7%DNA鉴定)的几个更远距离的质粒。所有使用RNA I / RNA II-ROM系统进行复制启动,但各自包含与NMR位点相邻的唯一片段。 NTP16 / PCERC7组的段,其编码溶解型毒素 - 抗毒素系统被其他家庭组中的不同段取代。序列分歧的点在NMR的一端差异的Xerc和Xerd位点之间,表明该宽组质粒的演变涉及Xerc / Xerd重组。 (c)2016年Elsevier Inc.保留所有权利。

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