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Frequency of factor H-binding protein modular groups and susceptibility to cross-reactive bactericidal activity in invasive meningococcal isolates

机译:侵袭性脑膜炎球菌分离株中因子H结合蛋白模块基团的频率和对交叉反应杀菌活性的敏感性

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Meningococcal factor H-binding protein (fHbp) is a promising vaccine candidate that elicits serum bactericidal antibodies in humans. Based on sequence variability of the entire protein, fHbp has been divided into three variant groups or two sub-families. We recently reported that the fHbp architecture was modular, consisting of five variable segments, each encoded by genes from one of two lineages. Based on combinations of segments from different lineages, all 70 known fHbp sequence variants could be classified into one of six modular groups. In this study, we analyzed sequences of 172 new fHbp variants that were available from public databases. All but three variants could be classified into one of the six previously described modular groups. Among systematically collected invasive group B isolates from the U.S. and Europe, modular group I overall was most common (60%) but group IV (natural chimeras) accounted for 23% of UK isolates and <1% of U.S. isolates (P<0.0001). Mouse antisera to recombinant fHbp from each of the modular groups showed modular group-specific bactericidal activity against strains with low fHbp expression but had broader activity against strains with higher fHbp expression. Thus both modular group and relative expression of fHbp affected strain susceptibility to anti-fHbp bactericidal activity. The results confirmed the modular architecture of fHbp and underscored its importance for the design of broadly protective group B vaccines in different regions
机译:脑膜炎球菌因子H结合蛋白(fHbp)是一种有望在人体内引发血清杀菌抗体的疫苗。根据整个蛋白质的序列变异性,fHbp已分为三个变异组或两个亚家族。我们最近报道,fHbp结构是模块化的,由五个可变片段组成,每个片段均由两个谱系之一的基因编码。基于来自不同谱系的片段的组合,可以将所有70个已知的fHbp序列变体分类为六个模块组之一。在这项研究中,我们分析了可从公共数据库获得的172个新的fHbp变体的序列。除了三个变体之外,所有其他变体都可以分为六个上述模块组之一。在来自美国和欧洲的系统收集的侵袭性B组分离株中,模块式I组总体上最常见(60%),但IV组(天然嵌合体)占英国分离株的23%,占美国分离株的<1%(P <0.0001) 。来自每个模块组的重组fHbp的小鼠抗血清显示了针对具有低fHbp表达的菌株的模块化组特异性杀菌活性,但具有针对具有较高fHbp表达的菌株的更广泛活性。因此,fHbp的模块组和相对表达都影响菌株对fhbp杀菌活性的敏感性。结果证实了fHbp的模块化体系结构,并强调了其对于设计不同区域的广泛保护性B组疫苗的重要性

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