首页> 美国卫生研究院文献>Infection and Immunity >Evidence that the Enterococcal Polysaccharide Antigen Gene (epa) Cluster Is Widespread in Enterococcus faecalis and Influences Resistance to Phagocytic Killing of E. faecalis
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Evidence that the Enterococcal Polysaccharide Antigen Gene (epa) Cluster Is Widespread in Enterococcus faecalis and Influences Resistance to Phagocytic Killing of E. faecalis

机译:肠球菌多糖抗原基因(epa)簇在粪肠球菌中广泛传播并影响对粪肠球菌吞噬的抗性的证据

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摘要

In previous studies, we cloned a cluster of genes involved in polysaccharide biosynthesis (epa) from Enterococcus faecalis strain OG1RF and showed that this gene cluster mediated synthesis of a polysaccharide in Escherichia coli. Disruption of two open reading frames in the epa gene cluster of OG1RF generated two mutants, TX5179 and TX5180, which were attenuated in a mouse peritonitis model. In the current study, Western blotting was performed with serum from a patient with E. faecalis endocarditis and polysaccharide extracts from OG1RF and the mutants TX5179 and TX5180. OG1RF showed a smear in the high-molecular-weight region and discrete bands in the low-molecular-weight region, which were missing from the mutants; periodate treatment and carbohydrate staining confirmed the polysaccharide nature of this material. In a neutrophil killing assay using OG1RF-absorbed normal human serum, the mutants TX5179 and TX5180, respectively, were 50 and 2.4 times more susceptible to killing than wild-type OG1RF (P ≤ 0.01). With a fluorescence phagocytosis assay, 2.5 to 3 times more of the mutants were taken up by neutrophils than OG1RF (P ≤ 0.001). Finally, with restriction digestion and hybridization under high-stringency conditions, the epa gene cluster of OG1RF (which is also present in the sequenced E. faecalis strain V583) was detected in 12 of 12 other clonally distinct E. faecalis strains tested: a similar polysaccharide pattern was detected for the 12 strains on Western blots using an E. faecalis endocarditis patient serum, and sera from four other patients with E. faecalis endocarditis all reacted with polysaccharide extracts of OG1RF. These results indicate that the epa gene cluster is widespread among E. faecalis and confers some protection against human host defenses.
机译:在以前的研究中,我们从粪肠球菌OG1RF克隆了一个参与多糖生物合成(epa)的基因簇,并表明该基因簇介导了大肠杆菌中多糖的合成。 OG1RF的epa基因簇中两个开放阅读框的破坏产生了两个突变体TX5179和TX5180,它们在小鼠腹膜炎模型中被减弱。在当前的研究中,用粪肠球菌性心内膜炎患者的血清和OG1RF的多糖提取物以及突变体TX5179和TX5180进行Western blotting。 OG1RF在高分子量区域显示涂片,而在低分子量区域显示离散带,这些突变体均缺失。高碘酸盐处理和碳水化合物染色证实了这种材料的多糖性质。在使用OG1RF吸收的正常人血清进行的嗜中性粒细胞杀伤测定中,突变体TX5179和TX5180的杀灭敏感性分别比野生型OG1RF高50倍和2.4倍(P≤0.01)。通过荧光吞噬作用测定,嗜中性粒细胞吸收的突变体比OG1RF多2.5到3倍(P≤0.001)。最后,在高严格性条件下进行限制性酶切消化和杂交后,在测试的其他12个克隆不同的粪肠球菌菌株中的12株中检测到OG1RF的epa基因簇(也存在于测序的粪肠球菌菌株V583中):使用粪肠球菌心内膜炎患者血清在Western印迹上检测到12个菌株的多糖模式,其他四名粪肠球菌心内膜炎患者的血清均与OG1RF多糖提取物反应。这些结果表明,epa基因簇在粪肠球菌中广泛分布,并赋予了一些对抗人类宿主防御的保护作用。

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