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Structural Heterogeneity and Environmentally Regulated Remodeling of Francisella tularensis subspecies novicida Lipid A Characterized by Tandem Mass Spectrometry

机译:串联质谱法表征图拉弗朗西斯菌Novicida脂质A的结构异质性和环境调控的重塑

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摘要

The structural characterization of environmentally-regulated lipid A derived from Francisella tularensis subspecies novicida (Fn) U112 is described using negative electrospray ionization with a linear ion trap Fourier transform ion cyclotron resonance (IT-FT-ICR) hybrid mass spectrometer. The results indicate that a unique profile of lipid A molecular structures are synthesized in response to Fn growth at 25 °C versus 37 °C. Molecular species were found to be tetra-acylated, sharing a conserved glucosamine disaccharide backbone, a galactosamine-1-phosphate linked to the reducing glucosamine, and multiple O- and N-linked fatty acyl groups. Deprotonated molecules were interrogated by MSn scanning techniques at both high and nominal mass resolution and were found to be complex heterogeneous mixtures where structures differed based on the positions and identities of the O- and N-linked fatty acyl substituents. For the dominant ion series, which consisted of five peaks, 30 unique lipid A structures were identified. Estimates for the relative abundance of each structure were derived from MS relative abundance ratios and fragment ion ratios from comparable dissociation pathways from MS2 through MS4 experiments. The results suggest a remodeling pathway in which the amide linked fatty acid of the reducing glucosamine favors a 3-hydroxyhexadecanoic acid substituent for growth conditions at 25 °C versus a 3-hydroxyoctadecanoic acid substituent for growth conditions at 37 °C.
机译:使用带有线性离子阱傅里叶变换离子回旋共振(IT-FT-ICR)混合质谱仪的负电喷雾电离技术,描述了源自土拉弗朗西斯菌新种(Fn)U112的环境调节脂质A的结构特征。结果表明,响应于Fn在25°C和37°C下的生长,合成了独特的脂质A分子结构。发现分子种类被四酰化,共有一个保守的葡糖胺二糖骨架,一个与还原性葡糖胺连接的半乳​​糖-1-磷酸半乳糖以及多个O-和N-连接的脂肪酰基。用MS n 扫描技术在高和标称质量分辨率下对去质子化的分子进行了询问,发现它们是复杂的异质混合物,其结构基于O和N连接的脂肪酰基的位置和特性而不同取代基。对于由五个峰组成的主导离子系列,已鉴定出30种独特的脂质A结构。从MS 2 到MS 4 实验的可比较解离途径,通过MS相对丰度比和碎片离子比估算出每个结构的相对丰度。结果表明了一种重塑途径,其中还原葡糖胺的酰胺键连接的脂肪酸在25°C的生长条件下倾向于3-羟基十六烷酸取代基,而在37°C的生长条件下则倾向于3-羟基十八烷酸取代基。

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