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The porcine circovirus type 1 capsid gene promoter improves antigen expression and immunogenicity in a HIV-1 plasmid vaccine

机译:猪圆环病毒1型衣壳基因启动子可改善HIV-1质粒疫苗中的抗原表达和免疫原性

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摘要

BACKGROUND:One of the promising avenues for development of vaccines against Human immunodeficiency virus type 1 (HIV-1) and other human pathogens is the use of plasmid-based DNA vaccines. However, relatively large doses of plasmid must be injected for a relatively weak response. We investigated whether genome elements from Porcine circovirus type 1 (PCV-1), an apathogenic small ssDNA-containing virus, had useful expression-enhancing properties that could allow dose-sparing in a plasmid vaccine. RESULTS: The linearised PCV-1 genome inserted 5' of the CMV promoter in the well-characterised HIV-1 plasmid vaccine pTHgrttnC increased expression of the polyantigen up to 2-fold, and elicited 3-fold higher CTL responses in mice at 10-fold lower doses than unmodified pTHgrttnC. The PCV-1 capsid gene promoter (Pcap) alone was equally effective. Enhancing activity was traced to a putative composite host transcription factor binding site and a "Conserved Late Element" transcription-enhancing sequence previously unidentified in circoviruses. CONCLUSIONS: We identified a novel PCV-1 genome-derived enhancer sequence that significantly increased antigen expression from plasmids in in vitro assays, and improved immunogenicity in mice of the HIV-1 subtype C vaccine plasmid, pTHgrttnC. This should allow significant dose sparing of, or increased responses to, this and other plasmid-based vaccines. We also report investigations of the potential of other circovirus-derived sequences to be similarly used.
机译:背景:针对人类1型免疫缺陷病毒(HIV-1)和其他人类病原体的疫苗开发的有前途的途径之一是使用基于质粒的DNA疫苗。然而,必须注射相对大剂量的质粒以产生相对弱的应答。我们调查了来自猪圆环病毒1型(PCV-1)(一种无源性小ssDNA的病毒)的基因组元素是否具有有用的表达增强特性,可以在质粒疫苗中节省剂量。结果:线性化的PCV-1基因组在特征明确的HIV-1质粒疫苗pTHgrttnC中插入了CMV启动子的5'端,使多抗原的表达增加了2倍,并在10-比未修饰的pTHgrttnC低三倍。单独的PCV-1衣壳基因启动子(Pcap)同样有效。增强活性可追溯到推定的复合宿主转录因子结合位点和先前在圆环病毒中未发现的“保守晚期元件”转录增强序列。结论:我们鉴定了一种新的PCV-1基因组增强子序列,该序列在体外测定中显着提高了质粒中的抗原表达,并改善了HIV-1 C型疫苗质粒pTHgrttnC在小鼠中的免疫原性。这应允许该疫苗和其他基于质粒的疫苗的大量剂量节约或增加的反应。我们还报告了对其他圆环病毒衍生序列被类似使用的潜力的调查。

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