首页> 美国卫生研究院文献>Infection and Immunity >Escherichia coli DraE Adhesin-Associated Bacterial Internalization by Epithelial Cells Is Promoted Independently by Decay-Accelerating Factor and Carcinoembryonic Antigen-Related Cell Adhesion Molecule Binding and Does Not Require the DraD Invasin
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Escherichia coli DraE Adhesin-Associated Bacterial Internalization by Epithelial Cells Is Promoted Independently by Decay-Accelerating Factor and Carcinoembryonic Antigen-Related Cell Adhesion Molecule Binding and Does Not Require the DraD Invasin

机译:上皮细胞与大肠杆菌DraE粘附素相关的细菌内化作用由衰变促进因子和癌胚抗原相关的细胞粘附分子结合独立促进不需要DraD浸润素

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摘要

The Dr family of Escherichia coli adhesins are virulence factors associated with diarrhea and urinary tract infections. Dr fimbriae are comprised of two subunits. DraE/AfaE represents the major structural, antigenic, and adhesive subunit, which recognizes decay-accelerating factor (DAF) and carcinoembryonic antigen (CEA)-related cell adhesion molecules (CEACAMs) CEA, CEACAM1, CEACAM3, and CEACAM6 as binding receptors. The DraD/AfaD subunit caps fimbriae and has been implicated in the entry of Dr-fimbriated E. coli into host cells. In this study, we demonstrate that DAF or CEACAM receptors independently promote DraE-mediated internalization of E. coli by CHO cell transfectants expressing these receptors. We also found that DraE-positive recombinant bacteria adhere to and are internalized by primary human bladder epithelial cells which express DAF and CEACAMs. DraE-mediated bacterial internalization by bladder cells was inhibited by agents which disrupt lipid rafts, microtubules, and phosphatidylinositol 3-kinase (PI3K) activity. Immunofluorescence confocal microscopic examination of epithelial cells detected considerable recruitment of caveolin, β1 integrin, phosphorylated ezrin, phosphorylated PI3K, and tubulin, but not F-actin, by cell-associated bacteria. Finally, we demonstrate that the DraD subunit, previously implicated as an “invasin,” is not required for β1 integrin recruitment or bacterial internalization.
机译:大肠杆菌粘附素的Dr家族是与腹泻和尿路感染相关的毒力因子。 fimbriae博士由两个亚基组成。 DraE / AfaE代表主要的结构,抗原和粘附亚基,它识别与衰变促进因子(DAF)和癌胚抗原(CEA)相关的细胞粘附分子(CEACAM)CEA,CEACAM1,CEACAM3和CEACAM6作为结合受体。 DraD / AfaD亚基覆盖菌毛,并与Dr菌丝化的大肠杆菌进入宿主细胞有关。在这项研究中,我们证明DAF或CEACAM受体通过表达这些受体的CHO细胞转染子独立地促进DraE介导的大肠杆菌内在化。我们还发现,DraE阳性重组细菌粘附于表达DAF和CEACAM的原代人膀胱上皮细胞并被其内在化。破坏脂质筏,微管和磷脂酰肌醇3-激酶(PI3K)活性的物质抑制了DraE介导的膀胱细胞细菌内在化。上皮细胞的免疫荧光共聚焦显微镜检查发现,细胞相关细菌可大量募集小窝蛋白,β1整合素,磷酸化的ezrin,磷酸化的PI3K和微管蛋白,但不吸收F-肌动蛋白。最后,我们证明β1整联蛋白募集或细菌内化不需要DraD亚基(以前牵涉为“ invasin”)。

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