Center for Medical Parasitology, Department of International Health, Immunology and Microbiology, University of Copenhagen, 2200 Copenhagen, Denmark; and
Center for Medical Parasitology, Department of International Health, Immunology and Microbiology, University of Copenhagen, 2200 Copenhagen, Denmark; and.
J Immunol. 2019 Apr 15;202(8):2320-2331. doi: 10.4049/jimmunol.1801210. Epub 2019 Mar 4.
Adenoviral vectors can induce T and B cell immune responses to Ags encoded in the recombinant vector. The MHC class II invariant chain (Ii) has been used as an adjuvant to enhance T cell responses to tethered Ag encoded in adenoviral vectors. In this study, we modified the Ii adjuvant by insertion of a furin recognition site (Ii-fur) to obtain a secreted version of the Ii. To test the capacity of this adjuvant to enhance immune responses, we recombined vectors to encode virulence factors: two cysteine-rich interdomain regions (CIDR) α1 ( and genes), expressed as a dimeric Ag. These domains are members of a highly polymorphic protein family involved in the vascular sequestration and immune evasion of parasites in malaria. The Ii-fur molecule directed secretion of both Ags in African green monkey cells and functioned as an adjuvant for MHC class I and II presentation in T cell hybridomas. In mice, the Ii-fur adjuvant induced a similar T cell response, as previously demonstrated with Ii, accelerated and enhanced the specific Ab response against both CIDR Ags, with an increased binding capacity to the cognate endothelial protein C receptor, and enhanced the breadth of the response toward different CIDRs. We also demonstrate that the endosomal sorting signal, secretion, and the C-terminal part of Ii were needed for the full adjuvant effect for Ab responses. We conclude that engineered secretion of Ii adjuvant-tethered Ags establishes a single adjuvant and delivery vehicle platform for potent T and B cell-dependent immunity.
腺病毒载体可以诱导 T 和 B 细胞对重组载体中编码的抗原产生免疫应答。MHC Ⅱ类不变链(Ii)已被用作佐剂,以增强对腺病毒载体中编码的锚定抗原的 T 细胞应答。在这项研究中,我们通过插入一个弗林蛋白酶识别位点(Ii-fur)对 Ii 佐剂进行了修饰,以获得 Ii 的分泌形式。为了测试该佐剂增强免疫应答的能力,我们重组了载体来编码毒力因子:两个富含半胱氨酸的结构域(CIDR)α1(和基因),作为二聚体抗原表达。这些结构域是参与疟疾寄生虫血管隔离和免疫逃逸的高度多态蛋白家族的成员。Ii-fur 分子指导两个抗原在非洲绿猴细胞中的分泌,并作为 MHC I 和 II 呈递在 T 细胞杂交瘤中的佐剂发挥作用。在小鼠中,Ii-fur 佐剂诱导了类似于以前用 Ii 证明的 T 细胞应答,加速并增强了针对两个 CIDR 抗原的特异性 Ab 应答,增加了与同源内皮蛋白 C 受体的结合能力,并增强了对不同 CIDR 的应答广度。我们还证明了内体分选信号、分泌和 Ii 的 C 末端对于 Ab 反应的完全佐剂效应是必需的。我们得出结论,工程化分泌的 Ii 佐剂 - 连接抗原建立了一个单一的佐剂和递送载体平台,用于强大的 T 和 B 细胞依赖性免疫。