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腺病毒转移载体的修饰增强了汉坦病毒融合蛋白 GnS0.7 的表达,并在 C57BL/6 小鼠中诱导强烈的免疫反应。

Modification of the adenoviral transfer vector enhances expression of the Hantavirus fusion protein GnS0.7 and induces a strong immune response in C57BL/6 mice.

机构信息

Department of Microbiology, Fourth Military Medical University, Xi'an 710032, China.

出版信息

J Virol Methods. 2012 Jan;179(1):90-6. doi: 10.1016/j.jviromet.2011.10.005. Epub 2011 Oct 12.

Abstract

Hantavirus glycoproteins (Gn and Gc) are significant components of vaccines for haemorrhagic fever with renal syndrome (HFRS); however, they are not effective due to weak immunogenicity and low levels of production in expression systems. To circumvent this problem, a 0.7-kb fragment of the S segment was fused to Gn, and a hybrid CAG promoter/enhancer in conjunction with (or without) the WPRE (Woodchuck hepatitis virus post-transcriptional regulatory element) was used to improve the expression of fusion protein GnS0.7 in the adenoviral expression system. The expression level of the fusion protein as well as the response of mice immunized with recombinant adenoviruses containing GnS0.7 was investigated. In addition, a series of immunological assays were conducted to determine the immunogenicity of the recombinant adenoviruses. The results showed that the recombinant adenovirus with the CAG promoter/enhancer (rAd-GnS0.7-pCAG) expressed approximately 2.1-fold more GnS0.7 than the unmodified recombinant adenovirus containing GnS0.7 (rAd-GnS0.7-pShuttle). This enhanced expression level was also higher than for other modified recombinant adenoviruses studied. Animal experiments showed that rAd-GnS0.7-pCAG induced a stronger Hantaan virus (HTNV)-specific humoral and cellular immune response in mice, with the cellular immune response to the GnS0.7 being stronger than the HFRS vaccine control. These results demonstrate that the CAG promoter/enhancer improved significantly the expression of the chimeric gene GnS0.7 in the adenovirus expression system. These findings may have significant implications for the development of genetically engineered vaccines for HFRS.

摘要

汉坦病毒糖蛋白(Gn 和 Gc)是肾综合征出血热(HFRS)疫苗的重要组成部分;然而,由于其免疫原性较弱和在表达系统中产量较低,它们的效果并不理想。为了解决这个问题,将 S 片段的 0.7kb 片段融合到 Gn 上,并使用 CAG 启动子/增强子(或不使用)与 WPRE(土拨鼠肝炎病毒转录后调节元件)结合,以提高融合蛋白 GnS0.7 在腺病毒表达系统中的表达水平。研究了融合蛋白的表达水平以及用含有 GnS0.7 的重组腺病毒免疫的小鼠的反应。此外,还进行了一系列免疫测定来确定重组腺病毒的免疫原性。结果表明,含有 CAG 启动子/增强子的重组腺病毒(rAd-GnS0.7-pCAG)表达的 GnS0.7 约比含有 GnS0.7 的未修饰重组腺病毒(rAd-GnS0.7-pShuttle)高 2.1 倍。该表达水平也高于其他研究的修饰重组腺病毒。动物实验表明,rAd-GnS0.7-pCAG 在小鼠中诱导了更强的汉坦病毒(HTNV)特异性体液和细胞免疫反应,GnS0.7 的细胞免疫反应比 HFRS 疫苗对照更强。这些结果表明,CAG 启动子/增强子显著提高了嵌合基因 GnS0.7 在腺病毒表达系统中的表达。这些发现可能对 HFRS 基因工程疫苗的开发具有重要意义。

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