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首页> 外文期刊>The Journal of biological chemistry >Genetic and Structural Characterization of L11 Lipooligosaccharide from Neisseria meningitidis Serogroup A Strains
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Genetic and Structural Characterization of L11 Lipooligosaccharide from Neisseria meningitidis Serogroup A Strains

机译:Neisseria Meningitidis Serogroup的L11 L11 L11 L11 L11 L11 L11 L11脂肪糖的遗传和结构特征

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The lipooligosaccharide (LOS) of immunotype L11 is unique within serogroup A meningococci. In order to resolve its molecular structure, we conducted LOS genotyping by PCR analysis of genes responsible for α-chain sugar addition (lgtA, -B, -C, -E, -H, and -F) and inner core substituents (lgtG, lpt-3, and lpt-6). For this study, we selected seven strains belonging to subgroup III, a major clonal complex responsible for meningococcal meningitis epidemics in Africa. In addition, we sequenced the homopolymeric tract regions of three phase-variable genes (lgtA, lgtG, and lot-3) to predict gene functionality. The fine structure of the L11 LOS of each strain was determined using composition and glycosyl linkage analyses, NMR, and mass spectrometry. The masses of the dephosphorylated oligosaccharides were consistent with an oligosaccharide composed of two hexoses, one N-acetyl-hexosamine, two heptoses, and one KDO, as proposed previously. The molar composition of LOS showed two glucose residues to be present, in agreement with lgtH sequence prediction. Despite phosphoethanolaminetransferase genes lpt-3 and lpt-6 being present in all seven Neisseria meningitidis strains, phosphoethanolamine (PEtn) was found at both O-3 and O-6 of HepII among the three ST-5 strains, whereas among the four ST-7 strains, only one PEtn was found and located at O-3 of the HepII. The L11 LOS was found to be O-acetylated, as was indicated by the presence of the lot-3 gene being in-frame in all of the seven N. meningitidis strains. To our knowledge, these studies represent the first full genetic and structural characterization of the L11 LOS of N. meningitidis. These investigations also suggest the presence of further regulatory mechanisms affecting LOS structure microheterogeneity in N. meningitidis related to PEtn decoration of the inner core.
机译:Immunotype L11的脂稀烃(LOS)在梅毒球菌内的血清组中是独特的。为了解决其分子结构,我们通过PCR分析对负责α-链糖的基因进行PCR基因分型(LGTA,-B,-C,-E,-H,-F)和内核取代基(LGTG, LPT-3和LPT-6)。对于这项研究,我们选择了属于亚组III的七种菌株,这是非洲脑膜炎球菌脑膜炎流行病的主要克隆复合体。此外,我们测序了三相 - 可变基因(LGTA,LGTG和LOT-3)的均聚物托管区域以预测基因功能。使用组合物和糖基键分析,NMR和质谱法测定每种菌株的L11 L11 L11 L11 L11的细结构。脱磷的寡糖的质量与由两种己糖,一种N-乙酰基 - 己胺,两六六六六甲醇组成的低聚糖,和一个KDO一致,如前所述。与LGTH序列预测一致,LOS的摩尔组合物显示出两种葡萄糖残基。尽管存在磷酸乙醇氨基氨基嘧啶酶基因LPT-3和LPT-6在所有七种脑膜炎脑奈瑟虫菌株中存在,但在三个ST-5菌株中的O-3和O-6中发现磷乙醇胺(PETN),而四个ST- 7株,只发现一个肥料并位于肝脏的O-3。发现L11 LOS是O-乙酰化,如诸如七个N.脑膜炎菌株中的全部仓库的批次-3基因的存在表示。据我们所知,这些研究代表了N. Meningitidis的第一个全遗传和结构表征。这些调查还表明存在影响与内芯的肥料装饰有关的N.脑膜炎的LOS结构微肾的进一步调节机制。

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