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Identification and localization of minimal MHC-restricted CD8+ T cell epitopes within the Plasmodium falciparum AMA1 protein

机译:恶性疟原虫AMA1蛋白内最小的MHC限制的CD8 + T细胞表位的鉴定和定位

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摘要

Background: Plasmodium falciparum apical membrane antigen-1 (AMA1) is a leading malaria vaccine candidate antigen that is expressed by sporozoite, liver and blood stage parasites. Since CD8+ T cell responses have been implicated in protection against pre-erythrocytic stage malaria, this study was designed to identify MHC class I-restricted epitopes within AMA1.\ud\udMethods: A recombinant adenovirus serotype 5 vector expressing P. falciparum AMA1 was highly immunogenic when administered to healthy, malaria-naive adult volunteers as determined by IFN-γ ELISpot responses to peptide pools containing overlapping 15-mer peptides spanning full-length AMA1. Computerized algorithms (NetMHC software) were used to predict minimal MHC-restricted 8-10-mer epitope sequences within AMA1 15-mer peptides active in ELISpot. A subset of epitopes was synthesized and tested for induction of CD8+ T cell IFN-γ responses by ELISpot depletion and ICS assays. A 3-dimensional model combining Domains I + II of P. falciparum AMA1 and Domain III of P. vivax AMA1 was used to map these epitopes.\ud\udResults: Fourteen 8-10-mer epitopes were predicted to bind to HLA supertypes A01 (3 epitopes), A02 (4 epitopes), B08 (2 epitopes) and B44 (5 epitopes). Nine of the 14 predicted epitopes were recognized in ELISpot or ELISpot and ICS assays by one or more volunteers. Depletion of T cell subsets confirmed that these epitopes were CD8+ T cell-dependent. A mixture of the 14 minimal epitopes was capable of recalling CD8+ T cell IFN-γ responses from PBMC of immunized volunteers. Thirteen of the 14 predicted epitopes were polymorphic and the majority localized to the more conserved front surface of the AMA1 model structure.\ud\udConclusions: This study predicted 14 and confirmed nine MHC class I-restricted CD8+ T cell epitopes on AMA1 recognized in the context of seven HLA alleles. These HLA alleles belong to four HLA supertypes that have a phenotypic frequency between 23% - 100% in different human populations.\ud
机译:背景:恶性疟原虫顶端膜抗原1(AMA1)是主要的疟疾疫苗候选抗原,由子孢子,肝脏和血液阶段的寄生虫表达。由于CD8 + T细胞应答与抗红细胞生成前阶段的疟疾有关,因此本研究旨在鉴定AMA1中受MHC I类限制的抗原决定簇。当对健康,没有疟疾的成年志愿者给药时具有免疫原性,这是通过对包含跨越全长AMA1的15个重叠肽段的肽库的IFN-γELISpot反应确定的。使用计算机算法(NetMHC软件)预测在ELISpot中具有活性的AMA1 15-mer肽中最小的MHC限制的8-10-mer表位序列。合成了一部分表位,并通过ELISpot耗竭和ICS分析测试了诱导CD8 + T细胞IFN-γ反应的能力。使用恶性疟原虫AMA1的结构域I + II和间日疟原虫AMA1的结构域III组合而成的三维模型来绘制这些表位。\ ud \ ud结果:预测有14个8-10-mer表位与HLA超型A01结合(3个表位),A02(4个表位),B08(2个表位)和B44(5个表位)。一个或多个志愿者在ELISpot或ELISpot和ICS分析中识别出14个预测表位中的9个。 T细胞亚群的耗竭证实这些表位是CD8 + T细胞依赖的。 14个最小表位的混合物能够从免疫志愿者的PBMC回忆起CD8 + T细胞IFN-γ反应。 14个预测表位中有13个是多态性,大多数位于AMA1模型结构更保守的前表面。\ ud \ ud结论:这项研究预测了14个并​​确认了AMA1上识别的9个MHC I类限制性CD8 + T细胞表位。七个HLA等位基因的背景。这些HLA等位基因属于四种HLA超型,在不同的人群中其表型频率在23%-100%之间。

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