首页> 外文期刊>Journal of bacteriology >ICESluvan, a 94-Kilobase Mosaic Integrative Conjugative Element Conferring Interspecies Transfer of VanB-Type Glycopeptide Resistance, a Novel Bacitracin Resistance Locus, and a Toxin-Antitoxin Stabilization System
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ICESluvan, a 94-Kilobase Mosaic Integrative Conjugative Element Conferring Interspecies Transfer of VanB-Type Glycopeptide Resistance, a Novel Bacitracin Resistance Locus, and a Toxin-Antitoxin Stabilization System

机译:ICESluvan,一种94碱基碱基的马赛克整合共轭元件,赋予VanB型糖肽耐药性,新型杆菌肽耐药基因座和毒素-抗毒素稳定系统种间转移。

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A 94-kb integrative conjugative element (ICESluvan) transferable to Enterococcus faecium and Enterococcus faecalis from an animal isolate of Streptococcus lutetiensis consists of a mosaic of genetic fragments from different Gram-positive bacteria. A variant of ICESluvan was confirmed in S. lutetiensis from a patient. A complete Tn5382/Tn1549 with a vanB2 operon is integrated into a streptococcal ICESde3396-like region harboring a putative bacteriophage exclusion system, a putative agglutinin receptor precursor, and key components of a type IV secretion system. Moreover, ICESluvan encodes a putative MobC family mobilization protein and a relaxase and, thus, in total has all genetic components essential for conjugative transfer. A 9-kb element within Tn5382/Tn1549 encodes, among others, putative proteins similar to the TnpX site-specific recombinase in Faecalibacterium and VanZ in Paenibacillus, which may contribute to the detected low-level teicoplanin resistance. Furthermore, ICESluvan encodes a novel bacitracin resistance locus that is associated with reduced susceptibility to bacitracin when transferred to E. faecium. The expression of a streptococcal pezAT toxin-antitoxin-encoding operon of ICESluvan in S. lutetiensis, E. faecium, and E. faecalis was confirmed by reverse transcription (RT)-PCR, indicating an active toxin-antitoxin system which may contribute to stabilizing ICESluvan within new hosts. Junction PCR and DNA sequencing confirmed that ICESluvan excised to form a circular intermediate in S. lutetiensis, E. faecalis, and E. faecium. Transfer between E. faecalis cells was observed in the presence of helper plasmid pIP964. Sequence analysis of the original S. lutetiensis donor and enterococcal transconjugants showed that ICESluvan integrates in a site-specific manner into the C-terminal end of the chromosomal tRNA methyltransferase gene rumA.
机译:一个94 kb的整合性共轭元件(ICE Slu van)可从琵琶链球菌的动物分离株转移至粪肠球菌和粪肠球菌,由不同革兰氏阳性细菌的遗传片段组成。在患者体内,Lutetiensis中证实了ICE Slu van的变体。带有 vanB2 操纵子的完整Tn 5382 / Tn 1549 被整合入链球菌ICE Sde 3936样区域包含推定的噬菌体排除系统,推定的凝集素受体前体和IV型分泌系统的关键成分。而且,ICE Slu van编码一个推定的MobC家族动员蛋白和一个松弛酶,因此,总的来说,它具有共轭转移所必需的所有遗传成分。 Tn 5382 / Tn 1549 中的9 kb元件编码的推定蛋白质类似于Faecalibacterium中的TnpX位点特异性重组酶和Paenibacillus中的VanZ,可能有助于检测到的低水平替考拉宁耐药性。而且,ICE Slu van编码了一种新型杆菌肽抗性基因座,该基因座与转移至屎肠球菌时对杆菌肽的敏感性降低有关。逆转录(RT)证实了ICE Slu van链球菌 pezAT 毒素-抗毒素编码操纵子在sutetuteensis,粪肠球菌和粪肠球菌中的表达。 )-PCR,表明有活性的毒素-抗毒素系统可能有助于稳定新宿主中的ICE Slu van。接合点PCR和DNA测序证实,ICE Slu van被切除以在卢特链霉菌,粪肠球菌和粪肠球菌中形成环状中间体。在辅助质粒pIP964存在下观察到粪肠球菌细胞之间的转移。原始黄体链球菌供体和肠球菌转导结合体的序列分析表明,ICE Slu van以位点特异性方式整合入染色体tRNA甲基转移酶基因 rumA

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