Clinical Research Centre, University College of South Stockholm, Karolinska Institutet, Stockholm, NOVUM, S-141 86 Huddinge, Sweden.
Carbohydr Res. 2011 Jul 15;346(10):1241-9. doi: 10.1016/j.carres.2011.04.030. Epub 2011 Apr 28.
We have investigated the structure of the lipopolysaccharide (LPS) of nontypeable Haemophilus influenzae (NTHi) strain 2019, a prototype strain that is used for studies of NTHi biology and disease. Analysis of LPS from wild type and lex2B, lpt3 and pgm mutant strains using NMR techniques and ESI-MS on O-deacylated LPS and core oligosaccharide material (OS), as well as ESI-MS(n) on permethylated dephosphorylated OS, confirmed the previously established structure in which lactose is linked to the proximal heptose (HepI) of the conserved triheptosyl inner-core moiety, l-α-D-Hepp-(1→2)-[PEtn→6]-l-α-D-Hepp-(1→3)-l-α-D-Hepp-(1→5)-[PPEtn→4]-α-Kdo-(2→6)-lipid A. Importantly, our data provide further structural detail whereby extensions from the middle heptose (HepII) are now characterized as β-D-Galp-(1→4)-β-D-Glcp-(1→4)-α-D-Glcp-(1→3 and truncated versions thereof. PEtn substitutes O-3 of the distal heptose (HepIII) of the inner-core moiety. This PEtn substituent was absent in the lpt3 mutant indicating that Lpt3 is the transferase required to add PEtn to the distal heptose. Interestingly, in the lex2B mutant strain HepIII was found to be substituted at O-2 by β-D-Glcp which, in turn, can be further extended. Contrary to previous findings, LPS of the pgm mutant strain contained minor glycoforms having β-D-Glcp linked to O-4 of HepI and also glycoforms with an additional PEtn which could be assigned to HepIII. Acetate groups and one glycine residue further substitute HepIII in NTHi 2019.
我们研究了非典型流感嗜血杆菌(NTHi)菌株 2019 的脂多糖(LPS)结构,该菌株是用于 NTHi 生物学和疾病研究的原型菌株。使用 NMR 技术和 ESI-MS 对野生型和 lex2B、lpt3 和 pgm 突变株的 LPS 进行分析,以及对 O-去酰化 LPS 和核心寡糖材料(OS)以及 permethylated 去磷酸化 OS 的 ESI-MS(n)进行分析,证实了先前建立的结构,其中乳糖连接到保守三己糖内核心部分的近端庚糖(HepI),l-α-D-Hepp-(1→2)-[PEtn→6]-l-α-D-Hepp-(1→3)-l-α-D-Hepp-(1→5)-[PPEtn→4]-α-Kdo-(2→6)-脂 A。重要的是,我们的数据提供了进一步的结构细节,其中从中庚糖(HepII)延伸的部分现在被表征为β-D-Galp-(1→4)-β-D-Glcp-(1→4)-α-D-Glcp-(1→3 和其截断版本。PEtn 取代内核心部分远端庚糖(HepIII)的 O-3。该 PEtn 取代物在 lpt3 突变体中不存在,表明 Lpt3 是将 PEtn 添加到远端庚糖所需的转移酶。有趣的是,在 lex2B 突变株中,发现 HepIII 在 O-2 处被β-D-Glcp 取代,而β-D-Glcp 可以进一步延伸。与先前的发现相反,pgm 突变株的 LPS 含有少量的糖型,其β-D-Glcp 连接到 HepI 的 O-4,并且还含有另外的 PEtn,可以分配给 HepIII。乙酸基团和一个甘氨酸残基进一步取代了 NTHi 2019 中的 HepIII。