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脑膜炎奈瑟菌脂寡糖的内核组装与结构:菌株NMB表达所有已知免疫型表位的能力。

Inner core assembly and structure of the lipooligosaccharide of Neisseria meningitidis: capacity of strain NMB to express all known immunotype epitopes.

作者信息

Kahler Charlene M, Datta Anup, Tzeng Yih-ling, Carlson Russell W, Stephens David S

机构信息

Department of Microbiology, Monash University, Clayton 3800, Australia.

出版信息

Glycobiology. 2005 Apr;15(4):409-19. doi: 10.1093/glycob/cwi018. Epub 2004 Dec 1.

Abstract

Neisseria meningitidis expresses a heterogeneous population of lipooligosaccharide (LOS) inner cores variously substituted with alpha1-3-linked glucose and O-3, O-6, and O-7 linked phosphoethanolamine (PEA), as well as glycine, attached to HepII. Combinations of these attachments to the LOS inner core represent immunodominant epitopes that are being exploited as future vaccine candidates. Historically, each LOS immunotype was structurally assessed and prescribed a certain unique inner core epitope. We report that a single isolate, strain NMB, possesses the capacity to produce all of the known neisserial LOS inner core immunotype structures. Analysis of the inner cores from parental LOS revealed the presence or absence of alpha1,3-linked glucose, O-6 and/or O-7 linked PEA, in addition to glycine attached at the 7 position of the HepII inner core. Identification and inactivation of lpt-6 in strain NMB resulted in the loss of both O-6 and O-7 linked PEA groups from the LOS inner core, suggesting that Lpt-6 of strain NMB may have bifunctional transferase activities or that the O-6 linked PEA groups once attached to the inner core undergo nonenzymatic transfer to the O-7 position of HepII. Although O-3 linked PEA was not detected in parental LOS inner cores devoid of alpha1-3-linked glucose residues, LOS glycoforms bearing O-3 PEA groups accumulated in a truncated mutant, NMBlgtK (Hep2Kdo2-lipid A). Because these structures disappeared upon inactivation of the lpt-3 locus, strain NMB expresses a functional O-3 PEA transferase. The LOS glycoforms expressed by NMBlgtK were also devoid of glycine attachments, indicating that glycine was added to the inner core after the completion of the gamma-chain by LgtK. In conclusion, strain NMB has the capability to express all known inner core structures, but in in vitro culture L2 and L4 immunotype structures are predominantly expressed.

摘要

脑膜炎奈瑟菌表达了多种脂寡糖(LOS)内核,这些内核被α1-3连接的葡萄糖、O-3、O-6和O-7连接的磷酸乙醇胺(PEA)以及与HepII相连的甘氨酸以不同方式取代。这些与LOS内核的连接组合代表了免疫显性表位,正被开发为未来的疫苗候选物。从历史上看,每种LOS免疫型都经过结构评估,并被指定了某种独特的内核表位。我们报告称,单个分离株NMB菌株具有产生所有已知奈瑟菌LOS内核免疫型结构的能力。对亲本LOS的内核分析显示,除了在HepII内核7位连接的甘氨酸外,还存在或不存在α1,3连接的葡萄糖、O-6和/或O-7连接的PEA。在NMB菌株中鉴定并失活lpt-6导致LOS内核中O-6和O-7连接的PEA基团均丢失,这表明NMB菌株的Lpt-6可能具有双功能转移酶活性,或者一旦连接到内核的O-6连接的PEA基团会发生非酶促转移至HepII的O-7位。尽管在缺乏α1-3连接的葡萄糖残基的亲本LOS内核中未检测到O-3连接的PEA,但带有O-3 PEA基团的LOS糖型在截短突变体NMBlgtK(Hep2Kdo2-脂质A)中积累。由于这些结构在lpt-3基因座失活后消失,NMB菌株表达一种功能性的O-3 PEA转移酶。NMBlgtK表达的LOS糖型也没有甘氨酸连接,这表明甘氨酸是在LgtK完成γ链后添加到内核中的。总之,NMB菌株有能力表达所有已知的内核结构,但在体外培养中主要表达L2和L4免疫型结构。

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