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多杀巴斯德氏菌 Heddleston 血清型 3 和 4 菌株共享一个共同的脂多糖生物合成基因座,但表现出菌株间和菌株内脂多糖的异质性。

Pasteurella multocida Heddleston serovar 3 and 4 strains share a common lipopolysaccharide biosynthesis locus but display both inter- and intrastrain lipopolysaccharide heterogeneity.

机构信息

Australian Research Council Centre of Excellence in Structural and Functional Microbial Genomics, Department of Microbiology, Monash University, Melbourne, Australia.

出版信息

J Bacteriol. 2013 Nov;195(21):4854-64. doi: 10.1128/JB.00779-13. Epub 2013 Aug 23.

Abstract

Pasteurella multocida is a Gram-negative multispecies pathogen and the causative agent of fowl cholera, a serious disease of poultry which can present in both acute and chronic forms. The major outer membrane component lipopolysaccharide (LPS) is both an important virulence factor and a major immunogen. Our previous studies determined the LPS structures expressed by different P. multocida strains and revealed that a number of strains belonging to different serovars contain the same LPS biosynthesis locus but express different LPS structures due to mutations within glycosyltransferase genes. In this study, we report the full LPS structure of the serovar 4 type strain, P1662, and reveal that it shares the same LPS outer core biosynthesis locus, L3, with the serovar 3 strains P1059 and Pm70. Using directed mutagenesis, the role of each glycosyltransferase gene in LPS outer core assembly was determined. LPS structural analysis of 23 Australian field isolates that contain the L3 locus revealed that at least six different LPS outer core structures can be produced as a result of mutations within the LPS glycosyltransferase genes. Moreover, some field isolates produce multiple but related LPS glycoforms simultaneously, and three LPS outer core structures are remarkably similar to the globo series of vertebrate glycosphingolipids. Our in-depth analysis showing the genetics and full range of P. multocida lipopolysaccharide structures will facilitate the improvement of typing systems and the prediction of the protective efficacy of vaccines.

摘要

多杀巴斯德菌是一种革兰氏阴性多物种病原体,也是禽霍乱的病原体,禽霍乱是一种严重的家禽疾病,可呈现急性和慢性两种形式。主要的外膜成分脂多糖(LPS)既是重要的毒力因子,也是主要的免疫原。我们之前的研究确定了不同多杀巴斯德菌菌株表达的 LPS 结构,并揭示了许多属于不同血清型的菌株含有相同的 LPS 生物合成基因座,但由于糖基转移酶基因的突变而表达不同的 LPS 结构。在这项研究中,我们报告了血清型 4 型菌株 P1662 的完整 LPS 结构,并揭示它与血清型 3 菌株 P1059 和 Pm70 共享相同的 LPS 外核心生物合成基因座 L3。通过定向诱变,确定了每个糖基转移酶基因在 LPS 外核心组装中的作用。对含有 L3 基因座的 23 株澳大利亚田间分离株的 LPS 结构分析表明,由于 LPS 糖基转移酶基因的突变,至少可以产生六种不同的 LPS 外核心结构。此外,一些田间分离株同时产生多种但相关的 LPS 糖型,并且三种 LPS 外核心结构与脊椎动物糖脂的 globo 系列非常相似。我们深入的分析显示了多杀巴斯德菌脂多糖结构的遗传学和全范围,将有助于改进分型系统和预测疫苗的保护效力。

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