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Discovery of New Genes Involved in Curli Production by a Uropathogenic Escherichia coli Strain from the Highly Virulent O45:K1:H7 Lineage

机译:从高毒力的O45:K1:H7谱系发现了致病性大肠杆菌菌株涉及卷毛生产的新基因。

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ABSTRACT Curli are bacterial surface-associated amyloid fibers that bind to the dye Congo red (CR) and facilitate uropathogenic Escherichia coli (UPEC) biofilm formation and protection against host innate defenses. Here we sequenced the genome of the curli-producing UPEC pyelonephritis strain MS7163 and showed it belongs to the highly virulent O45:K1:H7 neonatal meningitis-associated clone. MS7163 produced curli at human physiological temperature, and this correlated with biofilm growth, resistance of sessile cells to the human cationic peptide cathelicidin, and enhanced colonization of the mouse bladder. We devised a forward genetic screen using CR staining as a proxy for curli production and identified 41 genes that were required for optimal CR binding, of which 19 genes were essential for curli synthesis. Ten of these genes were novel or poorly characterized with respect to curli synthesis and included genes involved in purine de novo biosynthesis, a regulator that controls the Rcs phosphorelay system, and a novel repressor of curli production (referred to as rcpA ). The involvement of these genes in curli production was confirmed by the construction of defined mutants and their complementation. The mutants did not express the curli major subunit CsgA and failed to produce curli based on CR binding. Mutation of purF (the first gene in the purine biosynthesis pathway) and rcpA also led to attenuated colonization of the mouse bladder. Overall, this work has provided new insight into the regulation of curli and the role of these amyloid fibers in UPEC biofilm formation and pathogenesis. IMPORTANCE Uropathogenic Escherichia coli (UPEC) strains are the most common cause of urinary tract infection, a disease increasingly associated with escalating antibiotic resistance. UPEC strains possess multiple surface-associated factors that enable their colonization of the urinary tract, including fimbriae, curli, and autotransporters. Curli are extracellular amyloid fibers that enhance UPEC virulence and promote biofilm formation. Here we examined the function and regulation of curli in a UPEC pyelonephritis strain belonging to the highly virulent O45:K1:H7 neonatal meningitis-associated clone. Curli expression at human physiological temperature led to increased biofilm formation, resistance of sessile cells to the human cationic peptide LL-37, and enhanced bladder colonization. Using a comprehensive genetic screen, we identified multiple genes involved in curli production, including several that were novel or poorly characterized with respect to curli synthesis. In total, this study demonstrates an important role for curli as a UPEC virulence factor that promotes biofilm formation, resistance, and pathogenesis.
机译:摘要Curli是细菌表面相关的淀粉样蛋白纤维,可与染料刚果红(CR)结合并促进尿路致病性大肠杆菌(UPEC)生物膜的形成并防止宿主固有防御。在这里,我们对产卷曲的UPEC肾盂肾炎菌株MS7163的基因组进行了测序,表明它属于高毒性的O45:K1:H7新生儿脑膜炎相关克隆。 MS7163在人的生理温度下会产生卷曲,这与生物膜的生长,无柄细胞对人阳离子肽cathelicidin的抗性以及小鼠膀胱的定殖有关。我们设计了一种前向遗传筛选方法,使用CR染色作为curli生产的代理,并鉴定了41种基因,这些基因是实现最佳CR结合所必需的,其中19个基因是curli合成必不可少的。这些基因中有十个在卷曲合成方面是新颖的或表征较差的,其中包括参与嘌呤从头生物合成,调控Rcs磷酸酶系统的调节子和卷曲合成的新型阻遏物的基因(称为rcpA)。通过定义的突变体的构建和它们的互补性,证实了这些基因参与了冰壶的生产。突变体不表达curli主要亚基CsgA,并且基于CR结合不能产生curli。 purF(嘌呤生物合成途径中的第一个基因)和rcpA的突变也导致小鼠膀胱定植减弱。总的来说,这项工作提供了对curli的调节以及这些淀粉样蛋白纤维在UPEC生物膜形成和发病机理中的作用的新见解。重要说明致病性大肠埃希菌(UPEC)菌株是尿路感染的最常见原因,这种疾病越来越多地与不断增加的抗生素耐药性相关。 UPEC菌株具有多种与表面相关的因子,可使其在尿道中定植,包括菌毛,卷曲和自转运蛋白。 Curli是细胞外淀粉样纤维,可增强UPEC毒力并促进生物膜形成。在这里,我们研究了UPEC肾盂肾炎菌株中curli的功能和调节,该菌株属于高毒性O45:K1:H7新生儿脑膜炎相关克隆。在人类生理温度下Curli表达导致生物膜形成增加,无柄细胞对人类阳离子肽LL-37的抗性和增强的膀胱定植。使用全面的遗传筛选,我们确定了参与卷发生产的多个基因,包括在卷发合成方面新颖或特征较差的几个基因。总的来说,这项研究证明了curli作为UPEC毒力因子的重要角色,它可以促进生物膜的形成,抵抗力和发病机理。

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