首页> 外文期刊>Glycobiology. >Structural analysis of lipopolysaccharide produced by Heddleston serovars 10, 11, 12 and 15 and the identification of a new Pasteurella multocida lipopolysaccharide outer core biosynthesis locus, L6
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Structural analysis of lipopolysaccharide produced by Heddleston serovars 10, 11, 12 and 15 and the identification of a new Pasteurella multocida lipopolysaccharide outer core biosynthesis locus, L6

机译:Heddleston血清型10、11、12和15产生的脂多糖的结构分析以及多杀巴斯德氏菌脂多糖外核心生物合成位点L6的鉴定

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摘要

Pasteurella multocida is a Gram-negative bacterial pathogen classified into 16 serovars based on lipopolysaccharide (LPS) antigens. Previously, we have characterized the LPS outer core biosynthesis loci L1, L2, L3, L5 and L7, and have elucidated the full range of LPS structures associated with each. In this study, we have determined the LPS structures produced by the type strains representing the serovars 10, 11, 12 and 15 and characterized a new LPS outer core biosynthesis locus, L6, common to all. The L6 outer core biosynthesis locus shares significant synteny with the L3 locus but due to nucleotide divergence, gene duplication and gene redundancy, the L6 and L3 LPS outer cores are structurally distinct. Using LPS structural and genetic differences identified in each L6 strain, we have predicted a role for most of the L6 glycosyltransferases in LPS assembly. Importantly, we have identified two glycosyltransferases, GctD and GatB, that differ by one amino acid, A162T, but use different donor sugars [uridine diphosphate (UDP)-Glc and UDP-Gal, respectively]. The longest outer core oligosaccharide, produced by the serovar 12 type strain, contained a terminal region consisting of β-Gal-(1,4)- β-GlcNAc-(1,3)-β-Gal-(1,4)-β-Glc that was identical in structure to the vertebrate glycosphingolipid, paragloboside. Mimicry of host glycosphingolipids has been observed previously in P. multocida strains belonging to L3 LPS genotype, which produce LPS similar in structure to the globo-series of glycosphingolipids. The expression of a paragloboside-like oligosaccharide on the LPS produced by the serovar 12 type strain indicates that strains belonging to the L6 LPS genotype may also engage in molecular mimicry.
机译:多杀巴斯德氏菌是革兰氏阴性细菌病原体,根据脂多糖(LPS)抗原分为16种血清型。以前,我们已经对LPS外部核心生物合成位点L1,L2,L3,L5和L7进行了表征,并阐明了与每个LPS结构相关的完整范围。在这项研究中,我们确定了代表血清型10、11、12和15的类型菌株产生的LPS结构,并表征了所有人共有的新LPS外核生物合成位点L6。 L6外核生物合成基因座与L3基因座具有显着的同义性,但是由于核苷酸差异,基因重复和基因冗余,L6和L3 LPS外核在结构上是不同的。使用在每个L6菌株中鉴定出的LPS结构和遗传差异,我们已经预测了LPS装配中大多数L6糖基转移酶的作用。重要的是,我们确定了两个糖基转移酶GctD和GatB,它们的一个氨基酸A162T不同,但使用了不同的供体糖[分别为尿苷二磷酸(UDP)-Glc和UDP-Gal]。由血清型12型菌株产生的最长的外核寡糖包含一个由β-Gal-(1,4)-β-GlcNAc-(1,3)-β-Gal-(1,4)-组成的末端区域β-Glc与脊椎动物的鞘糖脂,副球糖苷结构相同。先前已经在属于L3 LPS基因型的多杀毕赤氏酵母菌株中观察到宿主糖鞘脂的拟态,该菌株产生的结构与糖鞘脂的globo系列相似的LPS。血清型12型毒株在LPS上表达一种类珠蛋白苷低聚糖,这表明属于L6 LPS基因型的菌株也可能参与分子模拟。

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