Department of Genetics and Microbiology, Maria Curie-Sklodowska University, Akademicka 19, Lublin 20-033, Poland.
Mar Drugs. 2013 Apr 17;11(4):1235-55. doi: 10.3390/md11041235.
Chemical analyses and mass spectrometry were used to study the structure of the lipopolysaccharide (LPS) isolated from Aeromonas bestiarum strain K296, serotype O18. ESI-MS revealed that the most abundant A. bestiarum LPS glycoforms have a hexa-acylated or tetra-acylated lipid A with conserved architecture of the backbone, consisting of a 1,4'-bisphosphorylated β-(1→6)-linked D-GlcN disaccharide with an AraN residue as a non-stoichiometric substituent and a core oligosaccharide composed of Kdo1Hep6Hex1HexN1P1. 1D and 2D NMR spectroscopy revealed that the O-specific polysaccharide (OPS) of A. bestiarum K296 consists of a branched tetrasaccharide repeating unit containing two 6-deoxy-l-talose (6dTalp), one Manp and one GalpNAc residues; thus, it is similar to that of the OPS of A. hydrophila AH-3 (serotype O34) in both the sugar composition and the glycosylation pattern. Moreover, 3-substituted 6dTalp was 2-O-acetylated and additional O-acetyl groups were identified at O-2 and O-4 (or O-3) positions of the terminal 6dTalp. Western blots with polyclonal rabbit sera showed that serotypes O18 and O34 share some epitopes in the LPS. The very weak reaction of the anti-O34 serum with the O-deacylated LPS of A. bestiarum K296 might have been due to the different O-acetylation pattern of the terminal 6dTalp. The latter suggestion was further confirmed by NMR.
采用化学分析和质谱法研究了从气单胞菌 K296 菌株(血清型 O18)中分离的脂多糖(LPS)的结构。ESI-MS 显示,最丰富的气单胞菌 LPS 糖型具有六酰化或四酰化的脂质 A,其骨架结构保守,由 1,4'-双磷酸化的β-(1→6)连接的 D-GlcN 二糖组成,带有一个 AraN 残基作为非化学计量取代基,以及由 Kdo1Hep6Hex1HexN1P1 组成的核心寡糖。1D 和 2D NMR 光谱表明,气单胞菌 K296 的 O-特异性多糖(OPS)由含有两个 6-去氧-l-塔洛糖(6dTalp)、一个 Manp 和一个 GalpNAc 残基的支化四糖重复单元组成;因此,它在糖组成和糖基化模式上与嗜水气单胞菌 AH-3(血清型 O34)的 OPS 相似。此外,3-取代的 6dTalp 被 2-O-乙酰化,并且在末端 6dTalp 的 O-2 和 O-4(或 O-3)位置鉴定出额外的 O-乙酰基。用多克隆兔血清进行的 Western blot 显示,血清型 O18 和 O34 在 LPS 中共享一些表位。抗-O34 血清与气单胞菌 K296 的 O-去乙酰化 LPS 反应较弱可能是由于末端 6dTalp 的 O-乙酰化模式不同。这一假设通过 NMR 进一步得到证实。