首页> 外文期刊>Immunome Research >Human immunome, bioinformatic analyses using HLA supermotifs and the parasite genome, binding assays, studies of human T cell responses, and immunization of HLA-A*1101 transgenic mice including novel adjuvants provide a foundation for HLA-A03 restricted CD8+T cell epitope based, adjuvanted vaccine protective against Toxoplasma gondii
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Human immunome, bioinformatic analyses using HLA supermotifs and the parasite genome, binding assays, studies of human T cell responses, and immunization of HLA-A*1101 transgenic mice including novel adjuvants provide a foundation for HLA-A03 restricted CD8+T cell epitope based, adjuvanted vaccine protective against Toxoplasma gondii

机译:人类免疫组学,使用HLA超基元和寄生虫基因组的生物信息学分析,结合测定,人类T细胞反应的研究以及HLA-A * 1101转基因小鼠的免疫接种,包括新型佐剂,为基于HLA-A03限制CD8 + T细胞表位的研究奠定了基础,弓形虫保护性辅助疫苗

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Background Toxoplasmosis causes loss of life, cognitive and motor function, and sight. A vaccine is greatly needed to prevent this disease. The purpose of this study was to use an immmunosense approach to develop a foundation for development of vaccines to protect humans with the HLA-A03 supertype. Three peptides had been identified with high binding scores for HLA-A03 supertypes using bioinformatic algorhythms, high measured binding affinity for HLA-A03 supertype molecules, and ability to elicit IFN-γ production by human HLA-A03 supertype peripheral blood CD8+ T cells from seropositive but not seronegative persons. Results Herein, when these peptides were administered with the universal CD4+T cell epitope PADRE (AKFVAAWTLKAAA) and formulated as lipopeptides, or administered with GLA-SE either alone, or with Pam2Cys added, we found we successfully created preparations that induced IFN-γ and reduced parasite burden in HLA-A*1101(an HLA-A03 supertype allele) transgenic mice. GLA-SE is a novel emulsified synthetic TLR4 ligand that is known to facilitate development of T Helper 1 cell (TH1) responses. Then, so our peptides would include those expressed in tachyzoites, bradyzoites and sporozoites from both Type I and II parasites, we used our approaches which had identified the initial peptides. We identified additional peptides using bioinformatics, binding affinity assays, and study of responses of HLA-A03 human cells. Lastly, we found that immunization of HLA-A*1101 transgenic mice with all the pooled peptides administered with PADRE, GLA-SE, and Pam2Cys is an effective way to elicit IFN-γ producing CD8+ splenic T cells and protection. Immunizations included the following peptides together: KSFKDILPK (SAG1224-232); AMLTAFFLR (GRA6164-172); RSFKDLLKK (GRA7134-142); STFWPCLLR (SAG2C13-21); SSAYVFSVK(SPA250-258); and AVVSLLRLLK(SPA89-98). This immunization elicited robust protection, measured as reduced parasite burden using a luciferase transfected parasite, luciferin, this novel, HLA transgenic mouse model, and imaging with a Xenogen camera. Conclusions Toxoplasma gondii peptides elicit HLA-A03 restricted, IFN-γ producing, CD8+ T cells in humans and mice. These peptides administered with adjuvants reduce parasite burden in HLA-A*1101 transgenic mice. This work provides a foundation for immunosense based vaccines. It also defines novel adjuvants for newly identified peptides for vaccines to prevent toxoplasmosis in those with HLA-A03 supertype alleles.
机译:背景弓形虫病会导致生命,认知和运动功能以及视力丧失。预防这种疾病非常需要疫苗。这项研究的目的是使用一种免疫感觉方法来开发疫苗的基础,以保护具有HLA-A03超型的人类。使用生物信息学算法已鉴定出三种肽,它们与HLA-A03超型的结合得分高,对HLA-A03超型分子的结合亲和力测量值高,并且能够通过人HLA-A03超型外周血CD8引起IFN-γ产生。来自血清反应阳性但不是血清反应阴性的人的“ a + plus“> + T细胞。结果在本文中,当这些肽与通用CD4 + T细胞表位PADRE(AKFVAAWTLKAAA)一起给药并配制成脂肽时,或单独与GLA-SE一起给药时,或添加Pam 2 Cys,我们发现我们成功创建了诱导HLA-A * 1101(HLA-A03超型)中的IFN-γ和降低寄生虫负担的制剂等位基因)转基因小鼠。 GLA-SE是一种新型的乳化合成TLR4配体,已知可促进T辅助1细胞(TH1)反应的发展。然后,因此我们的肽应包括在I型和II型寄生虫的速殖子,缓殖子和子孢子中表达的肽,因此我们使用了鉴定初始肽的方法。我们使用生物信息学,结合亲和力测定和HLA-A03人类细胞反应的研究确定了其他肽。最后,我们发现,用PADRE,GLA-SE和Pam 2 Cys施用的所有合并肽对HLA-A * 1101转基因小鼠进行免疫接种是有效的诱导产生IFN-γ的CD8 + 脾脏T细胞的方法及保护。免疫包括以下肽:KSFKDILPK(SAG1 224-232 ); AMLTAFFLR(GRA6 164-172 ); RSFKDLLKK(GRA7 134-142 ); STFWPCLLR(SAG2C 13-21 ); SSAYVFSVK( SPA250-258 );和AVVSLLRLLK(SPA 89-98 )。通过使用萤光素酶转染的寄生虫萤光素,这种新颖的HLA转基因小鼠模型并用Xenogen相机成像,这种免疫引发了强大的保护作用,以降低的寄生虫负担衡量。结论弓形虫肽在人和小鼠中诱导HLA-A03受限制,产生IFN-γ,CD8 + T细胞。这些与佐剂一起施用的肽减少了HLA-A * 1101转基因小鼠的寄生虫负担。这项工作为基于免疫检测的疫苗奠定了基础。它还定义了新鉴定的疫苗佐剂,用于预防具有HLA-A03超型等位基因的人的弓形虫病疫苗。

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