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淋球菌脑膜炎奈瑟菌因子 H 结合蛋白同源物的独特结合和免疫原性。

Distinct binding and immunogenic properties of the gonococcal homologue of meningococcal factor h binding protein.

机构信息

Sir William Dunn School of Pathology, University of Oxford, United Kingdom.

出版信息

PLoS Pathog. 2013;9(8):e1003528. doi: 10.1371/journal.ppat.1003528. Epub 2013 Aug 1.

Abstract

Neisseria meningitidis is a leading cause of sepsis and meningitis. The bacterium recruits factor H (fH), a negative regulator of the complement system, to its surface via fH binding protein (fHbp), providing a mechanism to avoid complement-mediated killing. fHbp is an important antigen that elicits protective immunity against the meningococcus and has been divided into three different variant groups, V1, V2 and V3, or families A and B. However, immunisation with fHbp V1 does not result in cross-protection against V2 and V3 and vice versa. Furthermore, high affinity binding of fH could impair immune responses against fHbp. Here, we investigate a homologue of fHbp in Neisseria gonorrhoeae, designated as Gonococcal homologue of fHbp (Ghfp) which we show is a promising vaccine candidate for N. meningitidis. We demonstrate that Gfhp is not expressed on the surface of the gonococcus and, despite its high level of identity with fHbp, does not bind fH. Substitution of only two amino acids in Ghfp is sufficient to confer fH binding, while the corresponding residues in V3 fHbp are essential for high affinity fH binding. Furthermore, immune responses against Ghfp recognise V1, V2 and V3 fHbps expressed by a range of clinical isolates, and have serum bactericidal activity against N. meningitidis expressing fHbps from all variant groups.

摘要

脑膜炎奈瑟菌是败血症和脑膜炎的主要病因。该细菌通过 fH 结合蛋白 (fHbp) 将补体系统的负调节剂因子 H (fH) 募集到其表面,提供了一种避免补体介导杀伤的机制。fHbp 是一种重要的抗原,可引发针对脑膜炎奈瑟球菌的保护性免疫,已分为三个不同的变体组 V1、V2 和 V3 或 A 族和 B 族。然而,fHbp V1 的免疫接种不会导致对 V2 和 V3 的交叉保护,反之亦然。此外,fH 的高亲和力结合可能会损害针对 fHbp 的免疫反应。在这里,我们研究了淋病奈瑟菌中 fHbp 的同源物,命名为 Gonococcal homologue of fHbp (Ghfp),我们证明它是脑膜炎奈瑟球菌有前途的疫苗候选物。我们表明 Gfhp 不在淋球菌表面表达,尽管与 fHbp 具有高度同源性,但不结合 fH。Ghfp 中仅两个氨基酸的替换就足以赋予 fH 结合能力,而 V3 fHbp 中的相应残基对于高亲和力 fH 结合是必不可少的。此外,针对 Ghfp 的免疫反应可识别由一系列临床分离株表达的 V1、V2 和 V3 fHbps,并对表达所有变体组 fHbps 的脑膜炎奈瑟球菌具有血清杀菌活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/637f/3731240/b34e5b59f3cf/ppat.1003528.g001.jpg

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