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鉴定 FimH 衍生物作为佐剂与 PAc 联合免疫,增强对变形链球菌定植的保护作用。

Identification of FimH derivatives as adjuvant vaccinated with PAc that enhance protection against Streptcoccus mutans colonization.

机构信息

The State Key Laboratory Breeding Base of Basic Science of Stomatology (Hubei-MOST), Key Laboratory of Oral Biomedicine of Ministry of Education (KLOBM), School and Hospital of Stomatology, Wuhan University, Wuhan, 430079, China.

The State Key Laboratory Breeding Base of Basic Science of Stomatology (Hubei-MOST), Key Laboratory of Oral Biomedicine of Ministry of Education (KLOBM), School and Hospital of Stomatology, Wuhan University, Wuhan, 430079, China.

出版信息

Mol Cell Probes. 2019 Jun;45:19-25. doi: 10.1016/j.mcp.2019.03.009. Epub 2019 Mar 30.

Abstract

FimH is the adhesin of type I fimbriae expressed on Escherichia coli that can mediate specific adherence to host cells. High binding mutations in FimH are related to the adaptive evolution of bacteria. However, additional roles that these allelic variations may play remain elusive. To investigate novel biological functions of the mutations in FimH, we introduced four different variants of FimH by incorporating single amino acid substitutions at specific sites, namely A25P, G73R, A106, and T158P, respectively. In this study, adjuvant potential of FimH variants was evaluated by investigating their ability to trigger innate immune response to DC2.4 and adaptive immunity to improve immunological characteristics. The data revealed that purified A106 and T158P up-regulated the expression of co-stimulatory molecules critically involved in DC2.4 activation by interaction with TLR4, whereas A25P and G73R did not induce the phenotypic maturation of DC2.4. Besides, the culture of DC2.4 with A106 and T158P enhanced the release of cytokines and protein phagocytosis. When formulated with PAc, T158P elicited more robust PAc-specific IgG and IgA antibody responses compared to PBS, PAc and PAc+K12 groups and inhibited bacteria colonization. Collectively, the results confirmed that the T158P mutation located around the inter-domain interface of the protein induced a specific enhancement effect on adjuvant characteristics.

摘要

FimH 是表达于大肠杆菌 I 型菌毛的黏附素,可介导其对宿主细胞的特异性黏附。FimH 中的高结合突变与细菌的适应性进化有关。然而,这些等位基因变异可能发挥的其他作用仍不清楚。为了研究 FimH 突变的新生物学功能,我们通过在特定位置引入单个氨基酸取代,分别引入了 FimH 的四个不同变体,即 A25P、G73R、A106 和 T158P。在这项研究中,通过研究它们触发 DC2.4 固有免疫反应和改善免疫特性的能力,评估了 FimH 变体的佐剂潜力。数据显示,纯化的 A106 和 T158P 通过与 TLR4 相互作用上调了共刺激分子的表达,这些共刺激分子对于 DC2.4 的激活至关重要,而 A25P 和 G73R 则不能诱导 DC2.4 的表型成熟。此外,用 A106 和 T158P 培养 DC2.4 增强了细胞因子的释放和蛋白吞噬作用。当与 PAc 联合使用时,与 PBS、PAc 和 PAc+K12 组相比,T158P 引发了更强烈的 PAc 特异性 IgG 和 IgA 抗体反应,并抑制了细菌定植。总的来说,这些结果证实了位于蛋白质的域间界面附近的 T158P 突变对佐剂特性产生了特定的增强作用。

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