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首页> 外文期刊>Infection and immunity >Construction of a flagellum-negative mutant of Proteus mirabilis: effect on internalization by human renal epithelial cells and virulence in a mouse model of ascending urinary tract infection.
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Construction of a flagellum-negative mutant of Proteus mirabilis: effect on internalization by human renal epithelial cells and virulence in a mouse model of ascending urinary tract infection.

机译:奇异变形杆菌鞭毛阴性突变体的构建:对人肾上皮细胞内在化的影响以及在升尿路感染的小鼠模型中的毒性。

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摘要

To examine the role of flagella in pathogenesis of urinary tract infection caused by Proteus mirabilis, we constructed a nonmotile, nonswarming flagellum mutant of strain WPM111 (an hpmA hemolysin mutant of strain BA6163, chosen because of its lack of in vitro cytotoxicity in renal epithelial cell internalization studies). A nonpolar mutation was introduced into the flaD gene, which encodes the flagellar cap protein. This mutation does not affect the synthesis of flagellin but rather prevents the assembly of an intact flagellar filament. In in vitro assays, the genetically characterized nonmotile mutant was found to be internalized by cultured human renal proximal tubular epithelial cells in numbers less than 1% of those of the flagellated parent strain. Internalization of the nonmotile mutant was increased significantly (14- to 21-fold) by centrifugation onto the monolayer. To assess virulence in vivo, CBA mice were challenged transurethrally with 10(7) CFU of P. mirabilis BA6163 (wild type) (n = 16), WPM111 (hpmA mutant) (n = 46), or BB2401 (hmpA flaD mutant) (n = 46). Differences in quantitative cultures between the parent strain and the hemolysin-negative mutant were not significant. However, the hpmA flaD mutant was recovered in numbers approximately 100-fold lower than those of the hmpA mutant or the wild-type parent strain and thus was clearly attenuated. We conclude that while hemolysin does not significantly influence virulence, flagella contribute significantly to the ability of P. mirabilis to colonize the urinary tract and cause acute pyelonephritis in an experimental model of ascending urinary tract infection.
机译:为了检查鞭毛在奇异变形杆菌引起的尿路感染的发病机理中的作用,我们构建了一种不活动,不易变的鞭毛细菌菌株WPM111(BA6163的hpmA溶血素突变体,由于其对肾上皮细胞缺乏体外细胞毒性而选择内部化研究)。非极性突变被引入flaD基因,该基因编码鞭毛帽蛋白。该突变不影响鞭毛蛋白的合成,而是阻止完整的鞭毛丝的组装。在体外试验中,发现具有遗传特征的非运动型突变体被培养的人肾近端肾小管上皮细胞内化,其数量不到鞭毛亲本菌株的1%。通过离心到单层上,非运动型突变体的内在化显着增加(14到21倍)。为了评估体内的毒性,用10(7)CFU的奇异毕赤酵母BA6163(野生型)(n = 16),WPM111(hpmA突变体)(n = 46)或BB2401(hmpA flaD突变体)对CBA小鼠进行尿道挑战。 (n = 46)。亲本菌株和溶血素阴性突变体之间的定量培养差异不显着。但是,hpmA flaD突变体的回收率比hmpA突变体或野生型亲本菌株低约100倍,因此明显减毒。我们得出的结论是,虽然溶血素不会显着影响毒力,但鞭毛在提高尿路感染的实验模型中显着促进了奇异疟原虫定植在尿路并引起急性肾盂肾炎的能力。

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