首页> 美国卫生研究院文献>Journal of Bacteriology >Expression of the Gonococcal Global Regulatory Protein Fur and Genes Encompassing the Fur and Iron Regulon during In Vitro and In Vivo Infection in Women
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Expression of the Gonococcal Global Regulatory Protein Fur and Genes Encompassing the Fur and Iron Regulon during In Vitro and In Vivo Infection in Women

机译:妇女的体内和体外感染过程中淋球菌全局调控蛋白毛皮和包含毛皮和铁调节子的基因的表达

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摘要

The ferric uptake regulatory protein, Fur, functions as a global regulatory protein of gene transcription in the mucosal pathogen Neisseria gonorrhoeae. We have shown previously that several N. gonorrhoeae Fur-repressed genes are expressed in vivo during mucosal gonococcal infection in men, which suggests that this organism infects in an iron-limited environment and that Fur is expressed under these conditions. In this study we have demonstrated expression of the gonococcal fur gene in vitro, in human cervical epithelial cells, and in specimens from female subjects with uncomplicated gonococcal infection. In vitro studies confirmed that the expression of the gonococcal fur gene was repressed during growth under iron-replete growth conditions but that a basal level of the protein was maintained. Using GFP transcriptional fusions constructed from specific Fur binding sequences within the fur promoter/operator region, we determined that this operator region was functional during N. gonorrhoeae infection of cervical epithelial cells. Furthermore, reverse transcription-PCR analysis, as well as microarray analysis, using a custom Neisseria Fur and iron regulon microarray revealed that several Fur- and iron-regulated genes were expressed during N. gonorrhoeae infection of cervical epithelial cells. Microarray analysis of specimens obtained from female subjects with uncomplicated gonococcal infection corroborated our in vitro findings and point toward a key role of gonococcal Fur- and iron-regulated genes in gonococcal disease.
机译:铁吸收调节蛋白Fur在粘膜病原体淋病奈瑟氏球菌中作为基因转录的全局调节蛋白。以前我们已经表明,在男子的粘膜淋菌球菌感染过程中,体内有淋病奈瑟氏球菌抑制的基因在体内表达,这表明该生物体在铁受限的环境中感染,并且在这些条件下表达了毛皮。在这项研究中,我们已经证明了淋球菌毛基因在体外,人宫颈上皮细胞以及患有单纯性淋球菌感染的女性受试者的标本中的表达。体外研究证实,在铁充足的生长条件下,淋巴球菌毛发基因的表达在生长过程中受到抑制,但蛋白质的基本水平得以维持。使用从毛皮启动子/操纵子区域内的特定毛皮结合序列构建的GFP转录融合蛋白,我们确定该操纵子区域在淋病奈瑟氏球菌感染宫颈上皮细胞期间起作用。此外,使用定制的奈瑟氏菌毛皮和铁调节子微阵列进行的逆转录-PCR分析以及微阵列分析显示,淋病奈瑟氏球菌感染宫颈上皮细胞时表达了几种Fur和铁调节的基因。从患有单纯性淋球菌感染的女性受试者获得的标本进行的微阵列分析证实了我们的体外发现,并指出了淋球菌的Fur和铁调节基因在淋球菌疾病中的关键作用。

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