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首页> 外文期刊>Plasmid: An International Journal Devoted to Extrachromosomal Gene Systems >A novel conjugative plasmid from Enterococcus faecalis E99 enhances resistance to ultraviolet radiation.
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A novel conjugative plasmid from Enterococcus faecalis E99 enhances resistance to ultraviolet radiation.

机译:粪肠球菌E99的新型偶联质粒增强了对紫外线的抵抗力。

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Enterococcus faecalis has emerged as a prominent healthcare-associated pathogen frequently encountered in bacteremia, endocarditis, urinary tract infection, and as a leading cause of antibiotic-resistant infections. We recently demonstrated a capacity for high-level biofilm formation by a clinical E. faecalis isolate, E99. This high biofilm-forming phenotype was attributable to a novel locus, designated bee, specifying a pilus at the bacterial cell surface and localized to a large approximately 80 kb conjugative plasmid. To better understand the origin of the bee locus, as well as to potentially identify additional factors important to the biology and pathogenesis of strain E99, we sequenced the entire plasmid. The nucleotide sequence of the plasmid, designated pBEE99, revealed large regions of identity to the previously characterized conjugative plasmid pCF10. In addition to the bee locus, pBEE99 possesses an open reading frame potentially encoding aggregation substance, as well as open reading frames putatively encoding polypeptides with 60% to 99% identity at the amino acid level to proteins involved in regulation of the pheromone response and conjugal transfer of pCF10. However, strain E99 did not respond to the cCF10 pheromone in clumping assays. While pBEE99 was found to be devoid of any readily recognizable antibiotic resistance determinants, it carries two non-identical impB/mucB/samB-type genes, as well as genes potentially encoding a two-component bacteriocin similar to that encoded on pYI14. Although no bacteriocin activity was detected from an OG1RF transconjugant carrying pBEE99 against strain FA2-2, it was approximately an order of magnitude more resistant to ultraviolet radiation. Moreover, curing strain E99 of this plasmid significantly reduced its ability to survive UV exposure. Therefore, pBEE99 represents a novel conjugative plasmid that confers biofilm-forming and enhanced UV resistance traits that might potentially impact the virulence and/or fitness of E. faecalis.
机译:粪肠球菌已经成为在细菌血症,心内膜炎,尿路感染中经常遇到的重要的医疗保健相关病原体,并且是抗生素耐药性感染的主要原因。我们最近证明了通过临床粪肠球菌分离株E99形成高水平生物膜的能力。这种高生物膜形成表型可归因于一个新的基因位点,称为蜜蜂,在细菌细胞表面上指定了菌毛,并定位于大约80 kb的大结合质粒中。为了更好地了解蜜蜂基因座的起源,并潜在地鉴定对菌株E99的生物学和发病机理重要的其他因素,我们对整个质粒进行了测序。该质粒的核苷酸序列命名为pBEE99,与先前表征的偶联质粒pCF10揭示了较大的同一性区域。除蜂基因座外,pBEE99还具有可能编码聚集物质的开放阅读框,以及推测编码在氨基酸水平上与参与信息素应答和结合调节的蛋白质具有60%至99%相同性的多肽的开放阅读框。 pCF10的转移。但是,在结块测定中,菌株E99对cCF10信息素没有反应。尽管发现pBEE99缺乏任何易于识别的抗生素抗性决定簇,但它携带两个不相同的impB / mucB / samB型基因,以及可能编码与pYI14编码相似的双组分细菌素的基因。尽管从携带pBEE99的OG1RF转导结合体中未检测到针对菌株FA2-2的细菌素活性,但其抗紫外线能力大约高出一个数量级。而且,该质粒的固化菌株E99显着降低了其在紫外线照射下存活的能力。因此,pBEE99代表一种新型的共轭质粒,可赋予生物膜形成和增强的抗紫外线特性,这可能会影响粪肠球菌的毒力和/或适应性。

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