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Flagellin/TLR5 signalling activates renal collecting duct cells and facilitates invasion and cellular translocation of uropathogenic Escherichia coli

机译:鞭毛蛋白/ TLR5信号激活肾收集管细胞并促进尿路致病性大肠杆菌的侵袭和细胞易位

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Uropathogenic Escherichia coli (UPEC) colonizing kidneys is the main cause of acute pyelonephritis. TLR5 that senses flagellin was shown to be highly expressed in the bladder and to participate in host defence against flagellated UPEC, although its role in kidneys still remains elusive. Here we show that TLR5 is expressed in renal medullary collecting duct (MCD) cells, which represent a preferential site of UPEC adhesion. Flagellin, like lipopolysaccharide, stimulated the production of the chemoattractant chemokines CXCL1 and CXCL2, and subsequent migration capacity of neutrophils in cultured wild-type (WT) and Tlr4~(-/-) MCDs, but not in Tlr5~(-/-) MCDs. UPEC can translocate across intact MCD layers without altering tight junctions. Strikingly, the invasion capacity and transcellular translocation of the UPEC strain HT7 were significantly lower in Tlr5~(-/-) than in WT MCDs. The non-motile HT7ΔfliC mutant lacking flagellin also exhibited much lower translocation capacities than the HT7 isolates. Finally, Tlr5~(-/-) kidneys exhibited less infiltrating neutrophils than WT kidneys one day after the transurethral inoculation of HT7, and greater delayed renal bacterial loads in the day 4 postinfected Tlr5~(-/-) kidneys. Overall, these findings indicate that the epithelial TLR5 participates to renal antibacterial defence, but paradoxically favours the translocation of UPEC across intact MCD cell layers.
机译:尿毒症性大肠杆菌(UPEC)移居肾脏是急性肾盂肾炎的主要原因。尽管感觉到鞭毛蛋白的TLR5在肾脏中的作用仍然难以捉摸,但已显示其在膀胱中高表达并参与了抗鞭毛UPEC的宿主防御。在这里,我们显示TLR5在肾髓质收集管(MCD)细胞中表达,这代表UPEC粘附的优先位点。鞭毛蛋白与脂多糖一样,刺激了趋化因子趋化因子CXCL1和CXCL2的产生,并刺激了中性粒细胞在培养的野生型(WT)和Tlr4〜(-/-)MCD中的迁移能力,但在Tlr5〜(-/-)中却没有。 MCD。 UPEC可以跨完整的MCD层移位,而无需更改紧密连接。引人注目的是,UPEC菌株HT7在Tlr5〜(-/-)中的侵袭能力和细胞易位明显低于WT MCD。缺乏鞭毛蛋白的非运动型HT7ΔfliC突变体也比HT7分离株具有低得多的易位能力。最后,经尿道HT7接种后一天,Tlr5〜(-/-)肾脏的浸润中性粒细胞比WT肾脏少,而在感染Tlr5〜(-/-)肾脏后的第4天,肾脏的细菌延迟负荷更大。总体而言,这些发现表明上皮TLR5参与了肾脏的抗菌防御,但矛盾的是,UPEC跨完整的MCD细胞层易位。

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