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Physical Extraction and Fast Protein Liquid Chromatography for Purifying Flagella Filament From Uropathogenic Escherichia coli for Immune Assay

机译:物理提取和快速蛋白液相色谱法纯化尿毒症大肠杆菌鞭毛细丝进行免疫分析

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摘要

Flagella are expressed on the surface of a wide range of bacteria, conferring motility and contributing to virulence and innate immune stimulation. Host-pathogen interaction studies of the roles of flagella in infection, including due to uropathogenic Escherichia coli (UPEC), have used various methods to purify and examine the biology of the major flagella subunit protein, FliC. These studies have offered insight into the ways in which flagella proteins interact with host cells. However, previous methods used to extract and purify FliC, such as mechanical shearing, ultracentrifugation, heterologous expression in laboratory E. coli strains, and precipitation-inducing chemical treatments have various limitations; as a result, there are few observations based on highly purified, non-denatured FliC in the literature. This is especially relevant to host-pathogen interaction studies such as immune assays that are designed to parallel, as closely as possible, naturally-occurring interactions between host cells and flagella. In this study, we sought to establish a new, carefully optimized method to extract and purify non-denatured, native FliC from the reference UPEC strain CFT073 to be suitable for immune assays. To achieve purification of FliC to homogeneity, we used a mutant CFT073 strain containing deletions in four major chaperone-usher fimbriae operons (type 1, F1C and two P fimbrial gene clusters; CFT073Δ4). A sequential flagella extraction method based on mechanical shearing, ultracentrifugation, size exclusion chromatography, protein concentration and endotoxin removal was applied to CFT073Δ4. Protein purity and integrity was assessed using SDS-PAGE, Western blots with anti-flagellin antisera, and native-PAGE. We also generated a fliC-deficient strain, CFT073Δ4ΔfliC, to enable the concurrent preparation of a suitable carrier control to be applied in downstream assays. Innate immune stimulation was examined by exposing J774A.1 macrophages to 0.05-1 μg of purified FliC for 5 h; the supernatants were analyzed for cytokines known to be induced by flagella, including TNF-α, IL-6, and IL-12; the results were assessed in the context of prior literature. Macrophage responses to purified FliC encompassed significant levels of several cytokines consistent with prior literature reports. The purification method described here establishes a new approach to examine highly purified FliC in the context of host-pathogen interaction model systems.
机译:鞭毛在各种细菌的表面表达,赋予其运动性,并促进毒力和先天性免疫刺激。鞭毛在感染中的作用的宿主-病原体相互作用研究,包括归因于尿路致病性大肠杆菌(UPEC),已经使用了多种方法来纯化和检查主要鞭毛亚基蛋白FliC的生物学特性。这些研究为鞭毛蛋白与宿主细胞相互作用的方式提供了见识。但是,以前用于提取和纯化FliC的方法,例如机械剪切,超速离心,实验室大肠杆菌菌株中的异源表达以及诱导沉淀的化学处理等,都有各种局限性。结果,在文献中很少有基于高度纯化的非变性FliC的观察结果。这与宿主-病原体相互作用研究(例如免疫分析)特别相关,该研究旨在使宿主细胞与鞭毛之间尽可能自然地发生的相互作用平行化。在这项研究中,我们寻求建立一种经过精心优化的新方法,以从参考UPEC菌株CFT073中提取和纯化未变性的天然FliC,以适合进行免疫测定。为了实现FliC纯化至同质,我们使用了一个突变的CFT073菌株,该菌株在四个主要的陪伴者-菌毛菌毛操纵子(1型,F1C和两个P纤维基因簇;CFT073Δ4)中缺失。基于机械剪切,超速离心,尺寸排阻色谱,蛋白质浓度和内毒素去除的顺序鞭毛提取方法应用于CFT073Δ4。使用SDS-PAGE,具有抗鞭毛蛋白抗血清的Western印迹和天然PAGE评估蛋白质的纯度和完整性。我们还产生了fliC缺陷菌株CFT073Δ4ΔfliC,以使同时制备合适的载体对照物可用于下游分析。通过将J774A.1巨噬细胞暴露于0.05-1μg纯化的FliC 5 h来检查先天免疫刺激。分析上清液中已知由鞭毛诱导的细胞因子,包括TNF-α,IL-6和IL-12。在先前文献的背景下评估结果。巨噬细胞对纯化的FliC的反应包括显着水平的几种细胞因子,与先前的文献报道一致。此处描述的纯化方法建立了一种新方法,可以在宿主-病原体相互作用模型系统的背景下检查高度纯化的FliC。

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