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首页> 外文期刊>Infection and immunity >Type IV Secretion Machinery Promotes Ton-Independent Intracellular Survival of Neisseria gonorrhoeae within Cervical Epithelial Cells
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Type IV Secretion Machinery Promotes Ton-Independent Intracellular Survival of Neisseria gonorrhoeae within Cervical Epithelial Cells

机译:IV型分泌机器可促进淋病奈瑟氏菌在宫颈上皮细胞内的非依赖于吨的细胞内存活

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Survival of Neisseria gonorrhoeae within host epithelial cells is expected to be important in the pathogenesis of gonococcal disease. We previously demonstrated that strain FA1090 derives iron from a host cell in a process that requires the Ton complex and a putative TonB-dependent transporter, TdfF. FA1090, however, lacks the gonococcal genetic island (GGI) that is present in the majority of strains. The GGI in strain MS11 has been partially characterized, and it encodes a type IV secretion system (T4SS) involved in DNA release. In this study we investigated the role of iron acquisition and GGI-encoded gene products in gonococcal survival within cervical epithelial cells. We demonstrated that intracellular survival of MS11 was dependent on acquisition of iron from the host cell, but unlike the findings for FA1090, expression of the Ton complex was not required. Survival was not dependent on a putative TonB-like protein encoded in the GGI but instead was directly linked to T4SS structural components in a manner independent of the ability to release or internalize DNA. These data suggest that expression of selected GGI-encoded open reading frames confers an advantage during cervical cell infection. This study provides the first link between expression of the T4SS apparatus and intracellular survival of gonococci.
机译:淋病奈瑟氏球菌在宿主上皮细胞内的存活在淋球菌病的发病机理中很重要。我们先前证明,菌株FA1090在需要Ton复合物和推定的TonB依赖转运蛋白TdfF的过程中从宿主细胞中提取铁。但是,FA1090缺乏大多数菌株中存在的淋球菌遗传岛(GGI)。 MS11菌株中的GGI已部分表征,它编码参与DNA释放的IV型分泌系统(T4SS)。在这项研究中,我们调查了铁摄取和GGI编码的基因产物在宫颈上皮细胞内淋球菌存活中的作用。我们证明了MS11的细胞内存活取决于从宿主细胞中获得铁,但与FA1090的发现不同,不需要Ton复合物的表达。生存并不依赖于GGI中编码的假定的TonB样蛋白,而是以与释放或内化DNA的能力无关的方式直接连接到T4SS结构组件。这些数据表明,选定的GGI编码的开放阅读框的表达在宫颈细胞感染期间具有优势。这项研究提供了T4SS装置的表达与淋球菌的细胞内存活之间的第一个联系。

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