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来自B群脑膜炎球菌菌株NL096的补体H因子结合蛋白交叉保护性天然嵌合体的结构表征

Structural characterization of a cross-protective natural chimera of factor H binding protein from meningococcal serogroup B strain NL096.

作者信息

Veggi Daniele, Malito Enrico, Lo Surdo Paola, Pansegrau Werner, Rippa Valentina, Wahome Newton, Savino Silvana, Masignani Vega, Pizza Mariagrazia, Bottomley Matthew J

机构信息

GSK Vaccines srl, Via Fiorentina 1, Siena 53100, Italy.

出版信息

Comput Struct Biotechnol J. 2022 Apr 18;20:2070-2081. doi: 10.1016/j.csbj.2022.04.011. eCollection 2022.

Abstract

Invasive meningococcal disease can cause fatal sepsis and meningitis and is a global health threat. Factor H binding protein (fHbp) is a protective antigen included in the two currently available vaccines against serogroup B meningococcus (MenB). FHbp is a remarkably variable surface-exposed meningococcal virulence factor with over 1300 different amino acid sequences identified so far. Based on this variability, fHbp has been classified into three variants, two subfamilies or nine modular groups, with low degrees of cross-protective activity. Here, we report the crystal structure of a natural fHbp cross-variant chimera, named variant1-2,3.x expressed by the MenB clinical isolate NL096, at 1.2 Å resolution, the highest resolution of any fHbp structure reported to date. We combined biochemical, site-directed mutagenesis and computational biophysics studies to deeply characterize this rare chimera. We determined the structure to be composed of two adjacent domains deriving from the three variants and determined the molecular basis of its stability, ability to bind Factor H and to adopt the canonical three-dimensional fHbp structure. These studies guided the design of loss-of-function mutations with potential for even greater immunogenicity. Moreover, this study represents a further step in the understanding of the fHbp biological and immunological evolution in nature. The chimeric variant1-2,3.x fHbp protein emerges as an intriguing cross-protective immunogen and suggests that identification of such naturally occurring hybrid proteins may result in stable and cross-protective immunogens when seeking to design and develop vaccines against highly variable pathogens.

摘要

侵袭性脑膜炎球菌病可导致致命的败血症和脑膜炎,是一种全球健康威胁。因子H结合蛋白(fHbp)是目前两种可用的B群脑膜炎球菌(MenB)疫苗中包含的一种保护性抗原。FHbp是一种显著可变的表面暴露的脑膜炎球菌毒力因子,迄今为止已鉴定出1300多种不同的氨基酸序列。基于这种变异性,fHbp已被分为三个变体、两个亚家族或九个模块组,交叉保护活性较低。在此,我们报告了一种天然fHbp交叉变体嵌合体(名为variant1-2,3.x)的晶体结构,该嵌合体由MenB临床分离株NL096表达,分辨率为1.2 Å,是迄今为止报道的任何fHbp结构的最高分辨率。我们结合生化、定点诱变和计算生物物理学研究,对这种罕见的嵌合体进行了深入表征。我们确定该结构由来自三个变体的两个相邻结构域组成,并确定了其稳定性、结合因子H的能力以及采用典型三维fHbp结构的分子基础。这些研究指导了具有更大免疫原性潜力的功能丧失突变的设计。此外,这项研究代表了在理解fHbp在自然界中的生物学和免疫学进化方面又迈出了一步。嵌合变体1-2,3.x fHbp蛋白成为一种引人关注的交叉保护免疫原,表明在寻求设计和开发针对高度可变病原体的疫苗时,鉴定这种天然存在的杂合蛋白可能会产生稳定且具有交叉保护作用的免疫原。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2de0/9079162/f9021c9ca29c/ga1.jpg

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