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Enterococcal Surface Protein Esp Is Important for Biofilm Formation of Enterococcus faecium E1162▿

机译:肠球菌表面蛋白Esp对于粪肠球菌E1162的生物膜形成很重要

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摘要

Enterococci have emerged as important nosocomial pathogens with resistance to multiple antibiotics. Adhesion to abiotic materials and biofilm formation on medical devices are considered important virulence properties. A single clonal lineage of Enterococcus faecium, complex 17 (CC17), appears to be a successful nosocomial pathogen, and most CC17 isolates harbor the enterococcal surface protein gene, esp. In this study, we constructed an esp insertion-deletion mutant in a clinical E. faecium CC17 isolate. In addition, initial adherence and biofilm assays were performed. Compared to the wild-type strain, the esp insertion-deletion mutant no longer produced Esp on the cell surface and had significantly lower initial adherence to polystyrene and significantly less biofilm formation, resulting in levels of biofilm comparable to those of an esp-negative isolate. Capacities for initial adherence and biofilm formation were restored in the insertion-deletion mutant by in trans complementation with esp. These results identify Esp as the first documented determinant in E. faecium CC17 with an important role in biofilm formation, which is an essential factor in infection pathogenesis.
机译:肠球菌已成为对多种抗生素具有抗性的重要医院病原体。对非生物材料的粘附和在医疗设备上生物膜的形成被认为是重要的毒力特性。粪肠球菌复合物17(CC17)的单一克隆谱系似乎是成功的医院病原体,大多数CC17分离株都具有肠球菌表面蛋白基因,尤其是。在这项研究中,我们在临床屎肠球菌CC17分离物中构建了esp插入-缺失突变体。另外,进行了初始粘附和生物膜测定。与野生型菌株相比,esp插入-缺失突变体不再在细胞表面产生Esp,并且与聚苯乙烯的初始粘附力显着降低,生物膜的形成也明显减少,从而导致生物膜的水平与esp阴性分离株的水平相当。 。通过与esp反式互补,在插入缺失突变体中恢复了初始粘附和生物膜形成的能力。这些结果确定Esp是粪便大肠杆菌CC17中第一个记录的决定因素,在生物膜形成中起重要作用,而生物膜是感染发病机理中的重要因素。

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