Australian Research Council Centre of Excellence in Structural and Functional Microbial Genomics, Department of Microbiology, Monash University, Melbourne 3800, Australia.
Glycobiology. 2012 Mar;22(3):332-44. doi: 10.1093/glycob/cwr147. Epub 2011 Oct 15.
Pasteurella multocida strains are classified into 16 different lipopolysaccharide (LPS) serovars using the Heddleston serotyping scheme. Ongoing studies in our laboratories on the LPS aim to determine the core oligosaccharide (OS) structures expressed by each of the Heddleston type strains and identify the genes and transferases required for the biosynthesis of the serovar-specific OSs. In this study, we have determined the core OS of the LPS expressed by the Heddleston serovar 9 type strain, P2095. Structural information was established by a combination of monosaccharide and methylation analyses, nuclear magnetic resonance spectroscopy and mass spectrometry revealing the following structure: . The serovar 9 OS contains an inner core that is conserved among P. multocida strains with an elaborate outer core extension containing rhamnose (Rha), a D-glycero-D-manno isomer of heptose, and the unusual deoxyamino sugar, 3-acetamido-3,6-dideoxy-α-D-glucose (Qui3NAc). Genetic analyses of the LPS outer core biosynthesis locus revealed that in addition to the glycosyltransferases predicted to transfer the sugars to the nascent LPS molecule, the locus also contained the complete set of genes required for the biosynthesis of the nucleotide sugar donors dTDP-Rha and dTDP-Qui3NAc. One of the genes identified as part of the dTDP-Qui3NAc biosynthesis pathway, qdtD, encodes a proposed bi-functional enzyme with N-terminal amino acid identity to dTDP-4-oxo-6-deoxy-D-glucose-3,4-oxoisomerase and C-terminal amino acid identity to dTDP-3-oxo-6-deoxy-α-D-glucose transacetylase.
多杀巴斯德菌菌株根据 Heddleston 血清分型方案分为 16 种不同的脂多糖 (LPS) 血清型。我们实验室目前正在进行 LPS 的研究,旨在确定每种 Heddleston 型菌株表达的核心寡糖 (OS) 结构,并确定用于合成血清型特异性 OS 的基因和转移酶。在这项研究中,我们确定了 Heddleston 血清型 9 型菌株 P2095 表达的 LPS 的核心 OS。结构信息是通过单糖和甲基化分析、核磁共振波谱和质谱的组合建立的,揭示了以下结构:. 血清型 9 OS 包含一个在多杀巴斯德菌菌株中保守的内部核心,具有复杂的外部核心延伸,包含鼠李糖 (Rha)、庚糖的 D-甘油-D-甘露异构物和不常见的脱氧氨基糖 3-乙酰氨基-3,6-二脱氧-α-D-葡萄糖 (Qui3NAc)。LPS 外核心生物合成基因座的遗传分析表明,除了预测将糖转移到新生 LPS 分子的糖基转移酶外,该基因座还包含用于合成核苷酸糖供体 dTDP-Rha 和 dTDP-Qui3NAc 的完整基因集。作为 dTDP-Qui3NAc 生物合成途径的一部分鉴定的基因之一,qdtD 编码一种拟议的双功能酶,其 N 端氨基酸与 dTDP-4-氧代-6-脱氧-D-葡萄糖-3,4-差向异构酶具有同源性,C 端氨基酸与 dTDP-3-氧代-6-脱氧-α-D-葡萄糖乙酰转移酶具有同源性。