首页> 外文OA文献 >Mannose-Resistant Proteus-Like Fimbriae Are Produced by Most Proteus mirabilis Strains Infecting the Urinary Tract, Dictate the In Vivo Localization of Bacteria, and Contribute to Biofilm Formation
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Mannose-Resistant Proteus-Like Fimbriae Are Produced by Most Proteus mirabilis Strains Infecting the Urinary Tract, Dictate the In Vivo Localization of Bacteria, and Contribute to Biofilm Formation

机译:大多数耐变形杆菌,感染尿道,指示细菌体内定位并有助于生物膜形成的变形杆菌菌株均产生耐甘露糖的变形杆菌样菌毛。

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摘要

Proteus mirabilis, an etiologic agent of complicated urinary tract infections, expresses mannose-resistant Proteus-like (MR/P) fimbriae whose expression is phase variable. Here we examine the role of these fimbriae in biofilm formation and colonization of the urinary tract. The majority of wild-type P. mirabilis cells in transurethrally infected mice produced MR/P fimbriae. Mutants that were phase-locked for either constitutive expression (MR/P ON) or the inability to express MR/P fimbriae (MR/P OFF) were phenotypically distinct and swarmed at different rates. The number of P. mirabilis cells adhering to bladder tissue did not appear to be affected by MR/P fimbriation. However, the pattern of adherence to the bladder surface was strikingly different. MR/P OFF colonized the lamina propria underlying exfoliated uroepithelium, while MR/P ON colonized the luminal surfaces of bladder umbrella cells and not the exfoliated regions. Wild-type P. mirabilis was usually found colonizing intact uroepithelium, but it occasionally adhered to exfoliated areas. MR/P ON formed significantly more biofilm than either P. mirabilis HI4320 (P = 0.03) or MR/P OFF (P = 0.05). MR/P OFF was able to form a biofilm similar to that of the wild type. MR/P ON formed a three-dimensional biofilm structure as early as 18 h after the initiation of the biofilm, while MR/P OFF and the wild type did not. After 7 days, however, P. mirabilis HI4320 formed a 65-μm-thick biofilm, while the thickest MR/P ON and MR/P OFF biofilms were only 12 μm thick. We concluded that MR/P fimbriae are expressed by most P. mirabilis cells infecting the urinary tract, dictate the localization of bacteria in the bladder, and contribute to biofilm formation.
机译:复杂的尿路感染的病原体奇异变形杆菌表达抗甘露糖的变形样(MR / P)菌毛,其表达是相变的。在这里,我们检查了这些菌毛在生物膜形成和尿道定植中的作用。经尿道感染的小鼠中大多数野生型奇异疟原虫细胞产生MR / P菌毛。对于组成型表达(MR / P ON)或无法表达MR / P菌毛(MR / P OFF)被锁相的突变体在表型上是不同的,并且以不同的速率聚集。粘附在膀胱组织上的奇异疟原虫细胞的数量似乎不受MR / P纤维化的影响。但是,对膀胱表面的粘附方式却截然不同。 MR / P ON定植在剥脱的尿路上皮上皮下的固有层,而MR / P ON定植在膀胱伞细胞的管腔表面而不是定植在脱落的区域。通常发现野生型奇异假单胞菌定植在完整的尿道上皮中,但偶尔会附着在脱落的区域。 MR / P ON形成的生物膜明显大于奇异假单胞菌HI4320(P = 0.03)或MR / P OFF(P = 0.05)。 MR / P OFF能够形成类似于野生型的生物膜。早在生物膜启动后18 h,MR / P ON就形成了三维生物膜结构,而MR / P OFF和野生型则没有。然而,在7天后,奇异假单胞菌HI4320形成了65μm厚的生物膜,而最厚的MR / P ON和MR / P OFF生物膜只有12μm厚。我们得出的结论是,大多数感染尿路的奇异毕赤酵母细胞表达MR / P菌毛,决定了细菌在膀胱中的定位,并有助于生物膜的形成。

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