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首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >DNA Vaccination by Electroporation Amplifies Broadly Cross-Restricted Public TCR Clonotypes Shared with HIV Controllers
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DNA Vaccination by Electroporation Amplifies Broadly Cross-Restricted Public TCR Clonotypes Shared with HIV Controllers

机译:通过电穿孔的DNA疫苗接种广泛地与HIV控制器共享的广泛交叉限制的公共TCR Clonotypes

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摘要

Rare patients who spontaneously control HIV replication provide a useful model to inform HIV vaccine development. HIV controllers develop particularly efficient antiviral CD4(+) T cell responses mediated by shared high-affinity TCRs. To determine whether the candidate DNA vaccine ADVAX could induce similar responses, we analyzed Gag-specific primary CD4(+) T cells from healthy volunteers who received ADVAX DNA by electroporation. Vaccinated volunteers had an immunodominant response to the Gag293 epitope with a functional avidity intermediate between that of controllers and treated patients. The TCR repertoire of Gag293-specific CD4(+) T cells proved highly biased, with a predominant usage of the TCR beta variable gene 2 (TRBV2) in vaccinees as well as controllers. TCR alpha variable gene (TRAV) gene usage was more diverse, with the dominance of TRAV29 over TRAV24 genes in vaccinees, whereas TRAV24 predominated in controllers. Sequence analysis revealed an unexpected degree of overlap between the specific repertoires of vaccinees and controllers, with the sharing of TRAV24 and TRBV2 public motifs (> 30%) and of public clonotypes characteristic of high-affinity TCRs. MHC class II tetramer binding revealed a broad HLA-DR cross-restriction, explaining how Gag293-specific public clonotypes could be selected in individuals with diverse genetic backgrounds. TRAV29 clonotypes also proved cross-restricted, but conferred responses of lower functional avidity upon TCR transfer. In conclusion, DNAvaccination by electroporation primed for TCR clonotypes that were associated with HIV control, highlighting the potential of this vaccine delivery method. To our knowledge, this study provides the first proof-of-concept that clonotypic analysis may be used as a tool to monitor the quality of vaccine-induced responses and modulate these toward "controller-like" responses.
机译:自发地控制HIV复制的罕见患者提供了一种可通知HIV疫苗开发的有用模型。 HIV控制器产生特别有效的抗病毒CD4(+)T细胞应答,由共享高亲和力TCR介导。为了确定候选DNA疫苗促进是否可以诱导类似的反应,我们通过电穿孔分析来自接受Advax DNA的健康志愿者的GAG特异性初级CD4(+)T细胞。接种疫苗的志愿者对GAG293表位具有免疫致响应,其具有控制器和治疗患者之间的功能性亲密的中间体。 GAG293特异性CD4(+)T细胞的TCR曲目高度偏置,具有TCRβ可变基因2(TRBV2)在疫苗中的主要用法以及控制器。 TCRα变量基因(TRAV)基因使用更加多样化,TRAV29在TRAV24基因中的优势在疫苗中,而TRAV24占主导地位。序列分析在疫苗和控制器的特定曲目之间显示出意外的重叠程度,分享TRAV24和TRBV2公共主题(> 30%)和高亲和力TCR的公共Clonotypes特征。 MHC类II Tetramer结合揭示了宽的HLA-DR交叉限制,解释了如何在具有不同遗传背景的个体中选择GAG293特异性公共克隆型。 Trav29 Clonotypes还证明了交叉限制,但在TCR转移时赋予较低功能性亲密的反应。总之,通过电穿孔的DNAVAVINTION突出与HIV控制相关的TCR Clonotype,突出了该疫苗递送方法的潜力。据我们所知,本研究提供了第一种概念证据,即Clonotypic分析可以用作监测疫苗诱导的响应质量的工具,并调节这些朝向“控制器状”反应。

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