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A Mutant Library Approach to Identify Improved Meningococcal Factor H Binding Protein Vaccine Antigens

机译:鉴定改进的脑膜炎球菌因子H结合蛋白疫苗抗原的突变库方法

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Factor H binding protein (FHbp) is a virulence factor used by meningococci to evade the host complement system. FHbp elicits bactericidal antibodies in humans and is part of two recently licensed vaccines. Using human complement Factor H (FH) transgenic mice, we previously showed that binding of FH decreased the protective antibody responses to FHbp vaccination. Therefore, in the present study we devised a library-based method to identify mutant FHbp antigens with very low binding of FH. Using an FHbp sequence variant in one of the two licensed vaccines, we displayed an error-prone PCR mutant FHbp library on the surface of Escherichia coli. We used fluorescence-activated cell sorting to isolate FHbp mutants with very low binding of human FH and preserved binding of control anti-FHbp monoclonal antibodies. We sequenced the gene encoding FHbp from selected clones and introduced the mutations into a soluble FHbp construct. Using this approach, we identified several new mutant FHbp vaccine antigens that had very low binding of FH as measured by ELISA and surface plasmon resonance. The new mutant FHbp antigens elicited protective antibody responses in human FH transgenic mice that were up to 20-fold higher than those elicited by the wild-type FHbp antigen. This approach offers the potential to discover mutant antigens that might not be predictable even with protein structural information and potentially can be applied to other microbial vaccine antigens that bind host proteins.
机译:H因子结合蛋白(FHbp)是脑膜炎球菌用来逃避宿主补体系统的一种致病因子。 FHbp会在人体内引发杀菌抗体,并且是最近获得许可的两种疫苗的一部分。使用人类补体因子H(FH)转基因小鼠,我们以前表明FH的结合降低了对FHbp疫苗的保护性抗体反应。因此,在本研究中,我们设计了一种基于文库的方法来鉴定具有非常低的FH结合力的突变FHbp抗原。在两种许可疫苗之一中使用FHbp序列变异体,我们在大肠杆菌表面展示了一个容易出错的PCR突变FHbp文库。我们使用荧光激活的细胞分选方法,以分离出具有极低的人FH结合力并保持对照抗FHbp单克隆抗体结合力的FHbp突变体。我们对来自选定克隆的编码FHbp的基因进行了测序,并将突变引入了可溶性FHbp构建体。使用这种方法,我们鉴定了几种新的突变FHbp疫苗抗原,通过ELISA和表面等离振子共振检测,它们具有非常低的FH结合力。新的突变FHbp抗原在人FH转基因小鼠中引起保护性抗体应答,该应答比野生型FHbp抗原引起的应答高多达20倍。这种方法提供了发现即使具有蛋白质结构信息也可能无法预测的突变抗原的潜力,并且可以应用于结合宿主蛋白的其他微生物疫苗抗原。

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