首页> 美国卫生研究院文献>Infection and Immunity >In Vivo Gene Expression Analysis Identifies Genes Required for Enhanced Colonization of the Mouse Urinary Tract by Uropathogenic Escherichia coli Strain CFT073 dsdA
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In Vivo Gene Expression Analysis Identifies Genes Required for Enhanced Colonization of the Mouse Urinary Tract by Uropathogenic Escherichia coli Strain CFT073 dsdA

机译:体内基因表达分析鉴定了致病性大肠杆菌菌株CFT073 dsdA增强小鼠尿道定植的基因

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摘要

Deletional inactivation of the gene encoding d-serine deaminase, dsdA, in uropathogenic Escherichia coli strain CFT073 results in a hypermotile strain with a hypercolonization phenotype in the bladder and kidneys of mice in a model of urinary tract infection (UTI). The in vivo gene expression profiles of CFT073 and CFT073 dsdA were compared by isolating RNA directly from the urine of mice challenged with each strain individually. Hybridization of cDNAs derived from these samples to CFT073-specific microarrays allowed identification of genes that were up- or down-regulated in the dsdA deletion strain during UTI. Up-regulated genes included the known d-serine-responsive gene dsdX, suggesting in vivo intracellular accumulation of d-serine by CFT073 dsdA. Genes encoding F1C fimbriae, both copies of P fimbriae, hemolysin, OmpF, a dipeptide transporter DppA, a heat shock chaperone IbpB, and clusters of open reading frames with unknown functions were also up-regulated. To determine the role of these genes as well as motility in the hypercolonization phenotype, mutants were constructed in the CFT073 dsdA background and tested in competition against the wild type in the murine model of UTI. Strains with deletions of one or both of the two P fimbrial operons, hlyA, fliC, ibpB, c0468, locus c3566 to c3568, or c2485 to c2490 colonized mouse bladders and kidneys at levels indistinguishable from wild type. CFT073 dsdA c2398 and CFT073 dsdA focA maintained a hypercolonization phenotype. A CFT073 dsdA dppA mutant was attenuated 10- to 50-fold in its colonization ability compared to CFT073. Our results support a role for d-serine catabolism and signaling in global virulence gene regulation of uropathogenic E. coli.
机译:在尿路致病性大肠杆菌菌株CFT073中,编码d-丝氨酸脱氨酶dsdA的基因的缺失失活会导致尿道感染(UTI)模型的小鼠膀胱和肾脏中具有超殖民化表型的高活动性菌株。通过直接从分别用每种菌株攻击的小鼠的尿液中分离RNA来比较CFT073和CFT073 dsdA的体内基因表达谱。将这些样品衍生的cDNA与CFT073特异性微阵列杂交,可以鉴定在UTI期间dsdA缺失菌株中上调或下调的基因。上调的基因包括已知的d-丝氨酸反应基因dsdX,表明CFT073 dsdA在体内对d-丝氨酸的蓄积。编码F1C菌毛,P菌毛,溶血素,OmpF,二肽转运蛋白DppA,热休克伴侣IbpB以及功能未知的开放阅读框簇的基因也被上调。为了确定这些基因以及运动在超殖民化表型中的作用,在CFT073 dsdA背景中构建了突变体,并在UTI鼠模型中测试了与野生型的竞争性。带有两个P纤维操纵子hlyA,fliC,ibpB,c0468,c3566至c3568或c2485至c2490的一个或两个缺失的菌株定植在小鼠膀胱和肾脏中,其水平与野生型没有区别。 CFT073 dsdA c2398和CFT073 dsdA focA保持了超殖民化表型。与CFT073相比,CFT073 dsdA dppA突变体的定植能力降低了10到50倍。我们的结果支持d-丝氨酸分解代谢和信号在尿毒症性大肠杆菌的全球毒力基因调控中的作用。

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