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首页> 外文期刊>PLOS Neglected Tropical Diseases >Structural Analysis of the Synthetic Duffy Binding Protein (DBP) Antigen DEKnull Relevant for Plasmodium vivax Malaria Vaccine Design
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Structural Analysis of the Synthetic Duffy Binding Protein (DBP) Antigen DEKnull Relevant for Plasmodium vivax Malaria Vaccine Design

机译:与间日疟原虫疟疾疫苗设计有关的合成达菲结合蛋白(DBP)抗原DEKnull的结构分析。

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The Plasmodium vivax vaccine candidate Duffy Binding Protein (DBP) is a protein necessary for P. vivax invasion of reticulocytes. The polymorphic nature of DBP induces strain-specific immune responses that pose unique challenges for vaccine development. DEKnull is a synthetic DBP based antigen that has been engineered through mutation to enhance induction of blocking inhibitory antibodies. We determined the x-ray crystal structure of DEKnull to identify if any conformational changes had occurred upon mutation. Computational and experimental analyses assessed immunogenicity differences between DBP and DEKnull epitopes. Functional binding assays with monoclonal antibodies were used to interrogate the available epitopes in DEKnull. We demonstrate that DEKnull is structurally similar to the parental Sal1 DBP. The DEKnull mutations do not cause peptide backbone shifts within the polymorphic loop, or at either the DBP dimerization interface or DARC receptor binding pockets, two important structurally conserved protective epitope motifs. All B-cell epitopes, except for the mutated DEK motif, are conserved between DEKnull and DBP. The DEKnull protein retains binding to conformationally dependent inhibitory antibodies. DEKnull is an iterative improvement of DBP as a vaccine candidate. DEKnull has reduced immunogenicity to polymorphic regions responsible for strain-specific immunity while retaining conserved protein folds necessary for induction of strain-transcending blocking inhibitory antibodies.
机译:间日疟原虫疫苗候选物达菲结合蛋白(DBP)是间日疟原虫侵袭网状细胞所必需的蛋白。 DBP的多态性诱导了菌株特异性免疫反应,这对疫苗开发提出了独特的挑战。 DEKnull是一种基于DBP的合成抗原,已通过突变工程改造以增强对阻断性抑制抗体的诱导。我们确定了DEKnull的X射线晶体结构,以识别突变后是否发生了任何构象变化。计算和实验分析评估了DBP和DEKnull表位之间的免疫原性差异。具有单克隆抗体的功能结合测定被用于询问DEKnull中可用的表位。我们证明DEKnull在结构上类似于父母Sal1 DBP。 DEKnull突变不会在多态环内或两个重要的结构保守的保护性抗原决定基基元DBP二聚化界面或DARC受体结合口袋处引起肽主链移位。除突变的DEK基序外,所有B细胞表位均在DEKnull和DBP之间保守。 DEKnull蛋白保留与构象依赖性抑制抗体的结合。 DEKnull是DBP候选疫苗的迭代改进。 DEKnull降低了对负责菌株特异性免疫的多态性区域的免疫原性,同时保留了诱导跨越菌株的阻断性抑制抗体所需的保守蛋白质折叠。

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