首页> 美国卫生研究院文献>Infection and Immunity >Comparative Analysis of EspF Variants in Inhibition of Escherichia coli Phagocytosis by Macrophages and Inhibition of E. coli Translocation through Human- and Bovine-Derived M Cells
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Comparative Analysis of EspF Variants in Inhibition of Escherichia coli Phagocytosis by Macrophages and Inhibition of E. coli Translocation through Human- and Bovine-Derived M Cells

机译:EspF变体通过巨噬细胞抑制大肠杆菌吞噬作用和通过人源和牛源M细胞抑制大肠杆菌易位的比较分析

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摘要

The EspF protein is secreted by the type III secretion system of enteropathogenic and enterohemorrhagic Escherichia coli (EPEC and EHEC, respectively). EspF sequences differ between EHEC O157:H7, EHEC O26:H11, and EPEC O127:H6 in terms of the number of SH3-binding polyproline-rich repeats and specific residues in these regions, as well as residues in the amino domain involved in cellular localization. EspFO127 is important for the inhibition of phagocytosis by EPEC and also limits EPEC translocation through antigen-sampling cells (M cells). EspFO127 has been shown to have effects on cellular organelle function and interacts with several host proteins, including N-WASP and sorting nexin 9 (SNX9). In this study, we compared the capacities of different espF alleles to inhibit (i) bacterial phagocytosis by macrophages, (ii) translocation through an M-cell coculture system, and (iii) uptake by and translocation through cultured bovine epithelial cells. The espF gene from E. coli serotype O157 (espFO157) allele was significantly less effective at inhibiting phagocytosis and also had reduced capacity to inhibit E. coli translocation through a human-derived in vitro M-cell coculture system in comparison to espFO127 and espFO26. In contrast, espFO157 was the most effective allele at restricting bacterial uptake into and translocation through primary epithelial cells cultured from the bovine terminal rectum, the predominant colonization site of EHEC O157 in cattle and a site containing M-like cells. Although LUMIER binding assays demonstrated differences in the interactions of the EspF variants with SNX9 and N-WASP, we propose that other, as-yet-uncharacterized interactions contribute to the host-based variation in EspF activity demonstrated here.
机译:EspF蛋白由肠致病性和肠出血性大肠杆菌(分别为EPEC和EHEC)的III型分泌系统分泌。 EspF序列在EHEC O157:H7,EHEC O26:H11和EPEC O127:H6之间有所不同,就在于这些区域中富含SH3的多脯氨酸重复序列和特定残基的数量,以及细胞中涉及的氨基域中的残基本土化。 EspFO127对于抑制EPEC吞噬作用很重要,并且还限制了EPEC通过抗原采样细胞(M细胞)的转运。 EspFO127已显示对细胞器功能有影响,并与几种宿主蛋白​​相互作用,包括N-WASP和分选nexin 9(SNX9)。在这项研究中,我们比较了不同espF等位基因抑制(i)巨噬细胞细菌吞噬作用,(ii)通过M细胞共培养系统易位以及(iii)被培养的牛上皮细胞摄取和易位的能力。与espFO127和espFO26相比,来自大肠杆菌O157血清型(espFO157)等位基因的espF基因在抑制吞噬作用方面效率显着降低,并且通过人源性体外M细胞共培养系统抑制大肠杆菌易位的能力也有所降低。相比之下,espFO157是最有效的等位基因,可限制细菌从牛末端直肠,牛EHEC O157的主要定殖位点和含有M样细胞的位点培养的原代上皮细胞中摄取和转运细菌。尽管LUMIER结合试验证明了EspF变体与SNX9和N-WASP相互作用的差异,但我们提出其他尚未表征的相互作用有助于此处所示的EspF活性的基于宿主的变异。

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