Analytical Science, Pre-Clinical Development, Banyu Pharmaceutical Co. Ltd., 3 Okubo, Tsukuba, Ibaraki, 300-2611, Japan.
Rapid Commun Mass Spectrom. 2010 Jan;24(1):43-8. doi: 10.1002/rcm.4355.
The lipopolysaccharide (LPS) of enterobacteria frequently contains various numbers of charged non-stoichiometric substituents such as phosphate (P) and ethanolamine (EtN) groups and a third residue of 3-deoxy-D-manno-2-octulosonic acid (KDO) on the R-core polysaccharide backbone. These substituents can modify the biological activities of LPS including varying the stability of the outer membrane, tolerance to cationic antibiotics, pathogenicity, and sensitivity to enterobacteria bacteriophages. These diverse substituents can be clearly detected in degraded samples of LPS from E. coli C using electrospray ionization single quadrupole mass spectrometry (ESI-Q-MS) from a 0.1 mg/mL solution in a 50:50 mixture of methanol and 10 mM ammonium acetate (pH 6.8). The O-deacylated derivative showed multiple peaks of M-3H ions which corresponded to species having up to eight phosphates, two ethanolamines, and an additional KDO on the backbone of Hex(5) Hep(3) KDO(2) GlcN(2) C14:0(3-OH)(2). The major components of the O,N-deacylated derivative were the species associated with four and five phosphates on Hex(5) Hep(3) KDO(2) GlcN(2). The polysaccharide portion of LPS also revealed species which corresponded to Hex(5) Hep(3) KDO associated with two to four phosphates and an ethanolamine. The present method was proved to be useful to investigate the structural diversity of enterobacterial LPS.
肠杆菌的脂多糖 (LPS) 经常在 R 核心多糖骨架上带有各种数量的带电非化学计量取代基,如磷酸 (P) 和乙醇胺 (EtN) 基团以及第三个 3-脱氧-D-甘露-2-辛烯酸 (KDO) 残基。这些取代基可以改变 LPS 的生物学活性,包括改变外膜的稳定性、对阳离子抗生素的耐受性、致病性和对肠杆菌噬菌体的敏感性。这些不同的取代基可以在大肠杆菌 C 的 LPS 降解样品中使用电喷雾电离单四极杆质谱 (ESI-Q-MS) 从 0.1 mg/mL 的甲醇和 10 mM 乙酸铵(pH 6.8)的 50:50 混合物溶液中清楚地检测到。O-脱酰基衍生物显示出多个 M-3H 离子峰,这些峰对应于在 Hex(5)Hep(3)KDO(2)GlcN(2)C14:0(3-OH)(2) 骨架上带有多达八个磷酸、两个乙醇胺和一个额外 KDO 的物种。O,N-脱酰基衍生物的主要成分是与 Hex(5)Hep(3)KDO 上的四个和五个磷酸有关的物种。LPS 的多糖部分还揭示了与两个到四个磷酸和一个乙醇胺相关的 Hex(5)Hep(3)KDO 相关的物种。本方法被证明可用于研究肠杆菌 LPS 的结构多样性。