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A Novel Means of Self-Protection Unrelated to Toxin Activation Confers Immunity to the Bactericidal Effects of the Enterococcus faecalis Cytolysin

机译:一种新的自我保护手段与毒素激活无关使免疫力对粪肠球菌溶细胞素的杀菌作用具有免疫力

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摘要

Enterococcus faecalis has become a pervasive clinical problem due to the emergence of resistance to most antibiotics. The cytolysin of E. faecalis is a novel bacterial toxin that contributes to the severity of disease. It consists of two structural subunits, which together possess both hemolytic and bactericidal activity. Both toxin subunits are encoded in a complex operon frequently harbored on pheromone-responsive plasmids. E. faecalis strains lacking such plasmids are susceptible to the bactericidal effects of the cytolysin. A novel cytolysin immunity determinant at the 3′ end of the pAD1 cytolysin operon is described in the present study. Deletion analysis and specific mutagenesis isolated the immunity function to a single open reading frame. Specific mutagenesis experiments demonstrate that cytolysin immunity is unrelated to cytolysin activator (CylA) expression as previously proposed. Cytolysin immunity is, however, encoded on the same transcript as and 3′ to CylA, and previous associations between immunity and CylA can be ascribed to the polar behavior of Tn917 insertion.
机译:由于对大多数抗生素的耐药性出现,粪肠球菌已成为普遍存在的临床问题。粪肠球菌的溶细胞素是一种新型细菌毒素,会加剧疾病的严重性。它由两个结构亚基组成,它们同时具有溶血和杀菌活性。这两个毒素亚基都编码在一个复杂的操纵子中,该操纵子经常在信息素反应性质粒上存在。缺少这种质粒的粪肠球菌菌株对溶细胞素的杀菌作用敏感。在本研究中描述了在pAD1溶细胞素操纵子的3'末端的一种新型溶细胞素免疫决定因子。缺失分析和特异性诱变将免疫功能隔离到单个开放阅读框。特定诱变实验表明,溶胞素的免疫力与溶胞素激活剂(CylA)的表达无关。但是,溶细胞素的免疫力与CylA的转录本和3'编码相同,并且免疫力和CylA之间的先前联系可归因于Tn917插入的极性行为。

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