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首页> 外文期刊>The FEBS journal >The HS : 19 serostrain of Campylobacter jejuni has a hyaluronic acid-type capsular polysaccharide with a nonstoichiometric sorbose branch and O-methyl phosphoramidate group
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The HS : 19 serostrain of Campylobacter jejuni has a hyaluronic acid-type capsular polysaccharide with a nonstoichiometric sorbose branch and O-methyl phosphoramidate group

机译:空肠弯曲杆菌的HS:19血清菌株具有透明质酸型荚膜多糖,具有非化学计量的山梨糖分支和O-氨基磷酸氨基酯基团

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A recent study that examined multiple strains of Campylobacter jejuni reported that HS:19, a serostrain that has been associated with the onset of Guillain-Barre syndrome, had unidentified labile, capsular polysaccharide (CPS) structures. In this study, we expand on this observation by using current glyco-analytical technologies to characterize these unknown groups. Capillary electrophoresis electrospray ionization MS and NMR analysis with a cryogenically cooled probe (cold probe) of CPS purified using a gentle enzymatic method revealed a hyaluronic acid-type [-4)-beta-D-GlcA6NGro-(1-3)-beta-D-GlcNAc-(1-](n) repeating unit, where NGro is 2-aminoglycerol. A labile alpha-sorbofuranose branch located at C2 of GlcA was determined to have the L configuration using a novel pyranose oxidase assay and is the first report of this sugar in a bacterial glycan. A labile O-methyl phosphoramidate group, CH3OP(O)(NH2)(OR) (MeOPN), was found at C4 of GlcNAc. Structural heterogeneity of the CPS was due to nonstoichiometric glycosylation with sorbose at C2 of GlcA and the nonstoichiometric, variably methylated phosphoramidate group. Examination of whole bacterial cells using high-resolution magic angle spinning NMR revealed that the MeOPN group is a prominent feature on the cell surface for this serostrain. These results are reminiscent of those in the 11168 and HS:1 strains and suggest that decoration of CPS with nonstoichiometric elements such as keto sugars and the phosphoramidate is a common mechanism used by this bacterium to produce a structurally complex surface glycan from a limited number of genes. The findings of this work with the HS:19 serostrain now present a means to explore the role of CPS as a virulence factor in C. jejuni.
机译:最近一项检查了多个空肠弯曲菌菌株的研究报告说,HS:19是一种与Guillain-Barre综合征发作有关的血清菌株,具有不稳定的荚膜多糖(CPS)结构。在这项研究中,我们通过使用当前的糖分析技术来表征这些未知基团,从而扩展了这一观察结果。毛细管电泳电喷雾电离质谱和NMR分析(使用温和酶法纯化的CPS的低温冷却探针(冷探针)显示透明质酸类型为[-4)-β-D-GlcA6NGro-(1-3)-β- D-GlcNAc-(1-](n)重复单元,其中NGro为2-氨基甘油,通过新颖的吡喃糖氧化酶测定,确定位于GlcA C2处的不稳定α-山梨糖醛酸支链具有L构型,这是第一份报告在细菌GlcNAc的C4上发现了不稳定的O-甲基氨基磷酸O-甲基氨基磷酸酯基团CH3OP(O)(NH2)(OR)(MeOPN)。 GlcA的C2和非化学计量的,可变甲基化的氨基磷酸酯基团,使用高分辨率魔角旋转NMR检查整个细菌细胞后发现,MeOPN基团是该表面活性菌株在细胞表面的主要特征,这些结果让人想起11168和HS :1菌株,表明用非化学计量元素(例如酮糖和氨基磷酸酯)修饰CPS是该细菌用来从有限数量的基因中产生结构复杂的表面聚糖的常见机制。 HS:19血清菌株的这项工作的发现现在提供了探索CPS作为空肠弯曲菌中毒力因子的作用的方法。

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