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Top-down strategies for the structural elucidation of intact gram-negative bacterial endotoxins

机译:完整革兰阴性细菌内毒素结构阐明的自上而下策略

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摘要

Re-modelling of lipopolysaccharides, which are the primary constituent of the outer cell membrane of Gram-negative bacteria, modulates pathogenesis and resistance to microbials. Reported herein is the characterization of intact Gram-negative bacterial lipooligosaccharides (LOS) via a new strategy utilizing online liquid chromatography (LC) coupled with ultraviolet photodissociation (UVPD) mass spectrometry. Compared to collision-based MS/MS methods, UVPD and UVPD/HCD promoted a greater array of cleavages within both the glycan and lipid moieties, including C-C, C-N, C-O cleavages in the acyl chains as well as glycosidic and cross-ring cleavages, thus providing the most far-reaching structural characterization of LOS. This LC-MS/MS strategy affords a robust analytical method to structurally characterize complex mixtures of bacterial endotoxins that maintains the integrity of the core oligosaccharide and lipid A domains of LOS, providing direct feedback about the cell envelope architectures and LOS modification strategies involved in resistance of the host innate immune defense.
机译:作为革兰氏阴性细菌外部细胞膜的主要组成的脂多糖的重新建模,调节发病机制和对微生物的抗性。本文报道的是通过利用紫外线光散(UVPD)质谱法偶联的在线液相色谱(LC)的新策略来表征完整革兰氏阴性细菌脂溶酶(LOS)。与基于碰撞的MS / MS方法相比,UVPD和UVPD / HCD在甘草和脂质部分中促进了更大的糖类和脂质部分的切割,包括CC,CN,酰基链中的CO裂解以及糖苷和横环切割,因此,提供了LOS的最深远的结构表征。该LC-MS / MS策略提供了一种稳健的分析方法,可以在结构上表征复杂的细菌内毒素混合物,其保持核心寡糖和LOS结构域的完整性,提供关于电池包络架构和LOS改性策略的直接反馈,涉及阻力主持人天生免疫防御。

著录项

  • 来源
    《Chemical science》 |2014年第11期|共11页
  • 作者单位

    Department of Chemistry The University of Texas at Austin 1 University Station A5300 Austin TX USA 78712.;

    The University of Texas at Austin Department of Molecular Biosciences 2506 Speedway A5000 Austin TX USA 78712;

    The University of Texas at Austin Department of Molecular Biosciences 2506 Speedway A5000 Austin TX USA 78712;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
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