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代谢标记法分析在肉汤和人吞噬细胞中生长的弗朗西斯菌脂 A 和 LPS 的总体组成。

Metabolic labeling to characterize the overall composition of Francisella lipid A and LPS grown in broth and in human phagocytes.

机构信息

1Inflammation Program and Department of Medicine, University of Iowa and Veterans Affairs Medical Center, IA, USA.

出版信息

Innate Immun. 2014 Jan;20(1):88-103. doi: 10.1177/1753425913485308. Epub 2013 May 31.

Abstract

A hallmark of Francisella tularensis, a highly virulent Gram-negative bacterium, is an unusual LPS that possesses both structural heterogeneity and characteristics that may contribute to innate immune evasion. However, none of the methods yet employed has been sufficient to determine the overall LPS composition of Francisella. We now demonstrate that metabolic labeling of francisellae with [(14)C]acetate, combined with fractionation of [(14)C]acetate-labeled lipids by ethanol precipitation rather than hot phenol-water extraction, permits a more sensitive and quantitative appraisal of overall compositional heterogeneity in lipid A and LPS. The majority of lipid A of different francisellae strains grown in diverse bacteriologic media and within human phagocytes accumulated as very hydrophobic species, including free lipid A, with <10% of the lipid A molecules substituted with O-Ag polysaccharides. The spectrum of lipid A and LPS species varied in a medium- and strain-dependent fashion, and growth in THP-1 cells yielded lipid A species that were not present in the same bacteria grown in brain heart infusion broth. In summary, metabolic labeling with [(14)C]acetate greatly facilitates assessment of the effect of genotypic and/or environmental variables on the synthesis and accumulation of lipid A and LPS by Francisella, including during growth within the cytosol of infected host cells.

摘要

土拉弗朗西斯菌是一种高度毒力的革兰氏阴性细菌,其脂多糖(LPS)具有结构异质性和逃避固有免疫的特点。然而,迄今为止采用的任何方法都不足以确定土拉弗朗西斯菌 LPS 的总体组成。我们现在证明,用 [(14)C]乙酸对弗朗西斯菌进行代谢标记,结合用乙醇沉淀而非热酚-水提取对 [(14)C]乙酸标记的脂质进行分级分离,可更灵敏、更定量地评估脂 A 和 LPS 的总体组成异质性。在不同的细菌培养基中和在人类吞噬细胞内生长的不同土拉弗朗西斯菌菌株的大多数脂 A 积累为非常疏水性的物质,包括游离脂 A,只有不到 10%的脂 A 分子被 O-Ag 多糖取代。不同的脂 A 和 LPS 物质的谱在培养基和菌株依赖性的方式上有所不同,在 THP-1 细胞中生长会产生在同样的细菌在脑心浸液培养基中生长时不存在的脂 A 物质。总之,用 [(14)C]乙酸进行代谢标记极大地促进了对基因型和/或环境变量对土拉弗朗西斯菌脂 A 和 LPS 合成和积累的影响的评估,包括在感染宿主细胞的细胞质内生长期间。

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本文引用的文献

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LPS remodeling is an evolved survival strategy for bacteria.脂多糖重塑是细菌进化而来的生存策略。
Proc Natl Acad Sci U S A. 2012 May 29;109(22):8716-21. doi: 10.1073/pnas.1202908109. Epub 2012 May 14.

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