Major structural proteins of type 1 and type 3 Klebsiella fimbriae are effective protein carriers and immunogens in conjugates as revealed from their immunochemical characterization

Danuta Witkowska , Małgorzata Mieszała , Andrzej Gamian , Magdalena Staniszewska , Anna Czarny , Anna Przondo-Mordarska , Michel Jaquinod , Eric Forest
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引用次数: 9

Abstract

Fimbriae are filamentous structures present on the cell surface of many bacteria, including genus Klebsiella. The use of fimbriae as protein carriers in conjugates may allow to formulate effective multivalent vaccines and suitable diagnostics. However, the evidences have been reported that fimbriae may enhance the inflammatory response. This prompted us to examine the degree of cytokine induction by the type 1 and type 3 Klebsiella fimbriae and their conjugates. Fimbriae were assessed as carrier proteins for Escherichia coli K12 endotoxin core oligosaccharide. MALDI-MS revealed the molecular mass of fimbrial monomer major protein, which was 15,847 Da for type 1 and 18,574 Da for type 3 fimbriae of Klebsiella. These two types of fimbriae were moderate inductors of IL-6 and interferon and almost inactive with regard to the stimulation of TNF when tested in human whole blood assay. Coupling of fimbriae with E. coli K12 core oligosaccharide gave immunogenic conjugates with respect to a saccharide ligand and protein carrier, although only 10% of the pilin monomers possessed the attached oligosaccharide. Rabbit antiserum reacted with a broad spectrum of lipopolysaccharides, as measured by ELISA and immunoblotting assays. The antibodies against glycoconjugates were bactericidal for the wild, S-type bacteria of some species. Regarding the induction of cytokines by conjugates only the TNF level was noticeably elevated. These results prompt for the practical use of fimbriae, as effective protein carriers for conjugates to obtain broad-spectrum antisera for diagnostic applications.

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1型和3型克雷伯菌菌毛的主要结构蛋白是偶联物中有效的蛋白载体和免疫原
菌毛是存在于许多细菌细胞表面的丝状结构,包括克雷伯氏菌属。在偶联物中使用菌毛作为蛋白质载体,可以制定有效的多价疫苗和合适的诊断方法。然而,已有证据表明,菌毛可增强炎症反应。这促使我们研究1型和3型克雷伯菌菌毛及其偶联物对细胞因子的诱导程度。测定菌毛作为大肠杆菌K12内毒素核心寡糖的载体蛋白。MALDI-MS检测到克雷伯菌1型菌毛单体主蛋白分子量为15847 Da, 3型菌毛主要蛋白分子量为18574 Da。这两种类型的菌毛是IL-6和干扰素的中等诱导剂,在人全血试验中对TNF的刺激几乎没有作用。菌毛与大肠杆菌K12核心低聚糖的偶联产生了糖配体和蛋白质载体的免疫原偶联物,尽管只有10%的菌毛单体具有附着的低聚糖。兔抗血清与广谱脂多糖反应,通过ELISA和免疫印迹测定。抗糖缀合物的抗体对某些种类的野生s型细菌具有杀菌作用。对于偶联物诱导的细胞因子,只有TNF水平明显升高。这些结果提示实际使用的毛,作为有效的蛋白质载体的结合物,以获得广谱抗血清诊断应用。
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