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Fine Antigenic Specificity and Cooperative Bactericidal Activity of Monoclonal Antibodies Directed at the Meningococcal Vaccine Candidate Factor H-Binding Protein▿

机译:针对脑膜炎球菌疫苗候选因子H结合蛋白的单克隆抗体的优良抗原特异性和协同杀菌活性

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摘要

No broadly protective vaccine is available for the prevention of group B meningococcal disease. One promising candidate is factor H-binding protein (fHbp), which is present in all strains but often sparsely expressed. We prepared seven murine immunoglobulin G monoclonal antibodies (MAbs) against fHbp from antigenic variant group 2 (v.2) or v.3 (∼40% of group B strains). Although none of the MAbs individually elicited bactericidal activity with human complement, all had activity in different combinations. We used MAb reactivity with strains expressing fHbp polymorphisms and site-specific mutagenesis to identify residues that are important for epitopes recognized by six of the v.2 or v.3 MAbs and by two v.1 MAbs that were previously characterized. Residues affecting v.2 or v.3 epitopes resided between amino acids 174 and 216, which formed an eight-stranded beta-barrel in the C domain, while residues affecting the v.1 epitopes included amino acids 121 and 122 of the B domain. Pairs of MAbs were bactericidal when their respective epitopes involved residues separated by 16 to 20 Å and when at least one of the MAbs inhibited the binding of fH, a downregulatory complement protein. In contrast, there was no cooperative bactericidal activity when the distance between residues was ≥27 Å or ≤14 Å, which correlated with the inhibition of the binding of one MAb by the other MAb. Thus, a model for anti-fH MAb bactericidal activity against strains expressing low levels of fHbp requires the binding of two MAbs directed at nonoverlapping epitopes, which activates the classical complement pathway as well as inhibits fH binding. The latter increases the susceptibility of the organism to complement-mediated bacteriolysis.
机译:没有可用于预防B组脑膜炎球菌疾病的广泛保护性疫苗。一种有希望的候选物是因子H结合蛋白(fHbp),它存在于所有菌株中,但通常稀疏表达。我们从抗原变体第2组(v.2)或v.3(约40%的B组菌株)中制备了7种针对fHbp的鼠免疫球蛋白G单克隆抗体(MAb)。尽管没有一个单克隆抗体能引起人类补体的杀菌活性,但它们均具有不同的结合活性。我们将MAb反应性与表达fHbp多态性和位点特异性诱变的菌株一起使用,以鉴定对于由v.2或v.3 MAb中的六个以及先前表征的两个v.1 MAb识别的表位重要的残基。影响v.2或v.3表位的残基位于氨基酸174和216之间,在C结构域中形成八链β-桶,而影响v.1表位的残基包括B结构域的氨基酸121和122。 。当一对MAb各自的表位包含16至20Å间隔的残基且至少一个MAb抑制下调补体蛋白fH的结合时,即具有杀菌作用。相反,当残基之间的距离≥27Å或≤14Å时,则没有协同的杀菌活性,这与一种单克隆抗体被另一种单克隆抗体的结合抑制有关。因此,针对表达低水平fHbp的菌株的抗fH MAb杀菌活性的模型需要结合两个针对非重叠表位的MAb,从而激活经典的补体途径并抑制fH结合。后者增加了生物体对补体介导的溶菌作用的敏感性。

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