首页> 外文期刊>Pathogens >Roles for wbtC, wbtI, and kdtA Genes in Lipopolysaccharide Biosynthesis, Protein Glycosylation, Virulence, and Immunogenicity in Francisella tularensis Strain SCHU S4
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Roles for wbtC, wbtI, and kdtA Genes in Lipopolysaccharide Biosynthesis, Protein Glycosylation, Virulence, and Immunogenicity in Francisella tularensis Strain SCHU S4

机译:wbtC,wbtI和kdtA基因在土拉弗朗西斯菌SCHU S4的脂多糖生物合成,蛋白质糖基化,毒力和免疫原性中的作用

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Using a strategy of gene deletion mutagenesis, we have examined the roles of genes putatively involved in lipopolysaccharide biosynthesis in the virulent facultative intracellular bacterial pathogen, Francisella tularensis subspecies tularensis, strain SCHU S4 in LPS biosynthesis, protein glycosylation, virulence and immunogenicity. One mutant, ∆wbtI, did not elaborate a long chain O-polysaccharide (OPS), was completely avirulent for mice, and failed to induce a protective immune response against challenge with wild type bacteria. Another mutant, ∆wbtC, produced a long chain OPS with altered chemical and electrophoretic characteristics. This mutant showed markedly reduced glycosylation of several known glycoproteins. Additionally this mutant was highly attenuated, and elicited a protective immune response against systemic, but not respiratory challenge with wild type SCHU S4. A third mutant, ∆kdtA, produced an unconjugated long chain OPS, lacking a detectable core structure, and which was not obviously expressed at the surface. It was avirulent and elicited partial protection against systemic challenge only.
机译:使用基因缺失诱变的策略,我们检查了脂多糖生物合成的基因在强力兼性细胞内细菌病原体,土拉弗朗西斯菌属tularensis,LPS生物合成中的SCHU S4菌株,蛋白质糖基化,毒力和免疫原性中的作用。一种突变体∆wbtI,没有修饰长链O-多糖(OPS),对小鼠完全无毒,并且不能诱导针对野生型细菌攻击的保护性免疫应答。另一个突变体∆wbtC产生了具有改变的化学和电泳特性的长链OPS。该突变体显示出几种已知糖蛋白的糖基化显着降低。另外,该突变体被高度减毒,并引发针对野生型SCHU S4的全身性而非呼吸性激发的保护性免疫应答。第三个突变体∆kdtA产生了未结合的长链OPS,缺乏可检测的核心结构,并且在表面没有明显表达。它是无毒的,仅引起部分抵抗系统性攻击的保护。

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