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Characterization and distinction of two flagellar systems in extraintestinal pathogenic Escherichia coli PCN033

机译:两种鞭毛系统在外素致病大肠杆菌PCN033中的表征与区分

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Extraintestinal pathogenic Escherichia coli (ExPEC) can invade and colonize multiple extraintestinal tissues and can cause a wide range of infections; however the mechanisms of its pathogenicity are not well understood. Flagella contribute to the infection of E. coli strains by mediating adhesion and invasion. Our previous bioinformatic analysis revealed two flagella gene clusters in the genome of an ExPEC isolate, PCN033. One encodes the conventional flagellum system (Flag-1) and the other encodes the Flag-2 system, whose function is uncharacterized. Here we aimed to characterize these two flagellum systems and determine their contributions to the flagellum formation and certain pathogenicity-associated phenotypes. Our observations support the involvement of Flag-1 system, but not Flag-2 system, in the synthesis and maturation of the flagellum structure, and in mediating bacterial swimming and swarming. Moreover, flgD, which encodes a flagellar-hook scaffolding protein in the Flag-1 system, is required for flagellum assembly by influencing the production of FliC (flagellin). Deletion of flgD attenuated ExPEC strain PCN033 invasion and colonization in vivo, probably by affecting bacterial adhesion and invasion, and by reducing resistance to phagocytosis by circulating monocytes. In contrast, these phenotypes were not observed in the strain with deletion of lfgD, encoding the FlgD-like protein in the Flag-2 system. Taken together, these findings indicate that Flag-1 flagellum system is the determinative component of bacterial flagella that contributes to the infection. (C) 2016 Elsevier GmbH. All rights reserved.
机译:外来致病性大肠杆菌(EXPEC)可以侵入和殖民化多种胶质组织,可引起广泛的感染;然而,其致病性的机制尚不清楚。鞭毛通过介导粘附和侵袭来促进大肠杆菌菌株的感染。我们以前的生物信息分析显示了expec分离物的基因组中的两个鞭毛基因簇,PCN033。一个编码传统的鞭毛系统(Flag-1),另一个编码标志2系统,其功能是无表的。在这里,我们旨在表征这两个鞭毛系统并确定其对鞭毛形成和某些致病性相关表型的贡献。我们的观察结果支持Flag-1系统的参与,但不是Flag-2系统,在鞭毛结构的合成和成熟中,以及介导细菌游泳和蜂拥而至。此外,通过影响生成的生成(鞭毛蛋白)的生产,需要在Flag-1系统中编码旗杆系统中的鞭毛钩脚手架蛋白的FLGD。缺失FLGD衰减的Expec菌株PCN033在体内侵袭和殖民化,可能是通过影响细菌粘附和侵袭,并通过循环单核细胞来降低对吞噬作用的抗性。相反,这些表型在菌株中未观察到LFGD缺失,在FLAG-2系统中编码FLGD样蛋白。在一起,这些发现表明Flag-1鞭毛系统是有助于感染的细菌鞭毛的确定性组分。 (c)2016 Elsevier GmbH。版权所有。

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