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Further Characterization of the epa Gene Cluster and Epa Polysaccharides of Enterococcus faecalis▿ †

机译:粪肠球菌的epa基因簇和Epa多糖的进一步表征

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摘要

We previously identified a gene cluster, epa (for enterocococcal polysaccharide antigen), involved in polysaccharide biosynthesis of Enterococcus faecalis and showed that disruption of epaB and epaE resulted in attenuation in translocation, biofilm formation, resistance to polymorphonuclear leukocyte (PMN) killing, and virulence in a mouse peritonitis model. Using five additional mutant disruptions in the 26-kb region between orfde2 and OG1RF_0163, we defined the epa locus as the area from epaA to epaR. Disruption of epaA, epaM, and epaN, like prior disruption of epaB and epaE, resulted in alteration in Epa polysaccharide content, more round cells versus oval cells with OG1RF, decreased biofilm formation, attenuation in a mouse peritonitis model, and resistance to lysis by the phage NPV-1 (known to lyse OG1RF), while mutants disrupted in orfde2 and OG1RF_163 (the epa locus flanking genes) behaved like OG1RF in those assays. Analysis of the purified Epa polysaccharide from OG1RF revealed the presence of rhamnose, glucose, galactose, GalNAc, and GlcNAc in this polysaccharide, while carbohydrate preparation from the epaB mutant did not contain rhamnose, suggesting that one or more of the glycosyl transferases encoded by the epaBCD operon are necessary to transfer rhamnose to the polysaccharide. In conclusion, the epa genes, uniformly present in E. faecalis strains and involved in biosynthesis of polysaccharide in OG1RF, are also important for OG1RF shape determination, biofilm formation, and NPV-1 replication/lysis, as well as for E. faecalis virulence in a mouse peritonitis model.
机译:我们先前鉴定了一个基因簇epa(用于肠球菌多糖抗原),参与粪肠球菌的多糖生物合成,并显示epaB和epaE的破坏导致移位,生物膜形成,对多形核白细胞(PMN)杀伤力和毒力的减弱。在小鼠腹膜炎模型中使用orfde2和OG1RF_0163之间26kb区域中的五个其他突变破坏,我们将epa基因座定义为epaA到epaR的区域。像先前破坏epaB和epaE一样,破坏epaA,epaM和epaN会导致Epa多糖含量的改变,具有OG1RF的椭圆形细胞比卵圆形细胞更多,生物膜形成减少,小鼠腹膜炎模型的衰减以及对溶胞的抗性噬菌体NPV-1(已知可裂解OG1RF),而在orfde2和OG1RF_163(epa位点侧翼基因)中被破坏的突变体在这些测定中的行为类似于OG1RF。对来自OG1RF的纯化的Epa多糖进行分析后发现,该多糖中存在鼠李糖,葡萄糖,半乳糖,GalNAc和GlcNAc,而epaB突变体制备的碳水化合物中不含鼠李糖,这表明该糖蛋白编码的一种或多种糖基转移酶epaBCD操纵子是将鼠李糖转移至多糖所必需的。总之,均匀存在于粪肠球菌菌株中并参与OG1RF多糖生物合成的epa基因对于OG1RF形状确定,生物膜形成和NPV-1复制/裂解以及粪肠球菌的毒力也很重要。在小鼠腹膜炎模型中

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