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首页> 外文期刊>Veterinary Microbiology >The immunogenicity of DNA constructs co-expressing GP5 and M proteins of porcine reproductive and respiratory syndrome virus conjugated by GPGP linker in pigs
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The immunogenicity of DNA constructs co-expressing GP5 and M proteins of porcine reproductive and respiratory syndrome virus conjugated by GPGP linker in pigs

机译:猪GPGP接头与猪生殖与呼吸综合征病毒共表达GP5和M蛋白的DNA构建体的免疫原性

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The heterodimer of glycoprotein 5 (GP5) and non-glycosylated matrix protein (M) is the leading target for the development of new generation of vaccines against porcine reproductive and respiratory syndrome virus (PRRSV) infection. It has been demonstrated that DNA vaccine co-expressing GP5 and M proteins as a fusion protein aroused better immunogenicity than that expressing GP5 or M alone, but it was no better than the DNA vaccine co-expressing GP5 and M proteins with two different promoters. Altered natural conformation of the co-expressed GP5 and M fusion protein was considered as the major cause. Glycine-proline-glycine-proline (GPGP) linker can minimize the conformational changes in tertiary structure and provide flexibility of the peptide chain. The objective of this study was to evaluate whether the immunogenicity of DNA constructs co-expressing GP5 and M proteins linked by GPGP could be enhanced in pigs. Three recombinant DNA constructs expressing GP5/M fusion protein without GPGP linker (pcDNA-56), GP5/M fusion protein conjugated by GPGP linker (pcDNA-5L6), and M/GP5 fusion protein conjugated by GPGP linker (pcDNA-6L5) were established. Sixteen PRRSV-free pigs were randomly assigned to four groups and inoculated intramuscularly with 3 consecutive doses of 500 p.,g of empty vector pcDNA3.1, pcDNA-56, pcDNA-5L6 or pcDNA-6L5 each at a 2-week interval followed by challenge with 5 x 10(5) TCID50 PRRSV at 3 weeks after the final inoculation. All pcDNA-56-, pcDNA-5L6-, and pcDNA-6L5- but not pcDNA-3.1-inoculated pigs developed neutralizing antibodies (NAs) 3 weeks after the final inoculation and a gradual increase in NA titers after PRRSV challenge, indicating that pigs inoculated with these DNA constructs could establish a sufficient immune memory. The pcDNA-5L6- and pcDNA-6L5-inoculated pigs displayed lower level and shorter period of viremia and lower tissue viral load following PRRSV challenge than did the pcDNA-56-inoculated pigs. The strategy of co-expressing GPGP-linked GP5 and M fusion protein may be a promising approach for future PRRSV vaccine development, possibly via the improvement of natural conformation of the target fusion protein
机译:糖蛋白5(GP5)和非糖基化基质蛋白(M)的异二聚体是开发针对猪繁殖与呼吸综合征病毒(PRRSV)感染的新一代疫苗的主要目标。已经证明,共表达GP5和M蛋白作为融合蛋白的DNA疫苗比单独表达GP5或M的DNA疫苗具有更好的免疫原性,但是它并不比共表达具有两种不同启动子的GP5和M蛋白的DNA疫苗更好。共表达的GP5和M融合蛋白的天然构象改变被认为是主要原因。甘氨酸-脯氨酸-甘氨酸-脯氨酸(GPGP)接头可以使三级结构的构象变化最小化,并提供肽链的柔性。这项研究的目的是评估在猪中共表达由GPGP连接的GP5和M蛋白的DNA构建体的免疫原性是否可以增强。表达三个没有GPGP接头的GP5 / M融合蛋白(pcDNA-56),通过GPGP接头偶联的GP5 / M融合蛋白(pcDNA-5L6)和通过GPGP接头偶联的M / GP5融合蛋白(pcDNA-6L5)的三种重组DNA构建体。成立。将16只无PRRSV的猪随机分为四组,每2周一次肌肉内连续接种3剂500 p.g空载体pcDNA3.1,pcDNA-56,pcDNA-5L6或pcDNA-6L5。在最终接种后3周用5 x 10(5)TCID50 PRRSV攻击。在最终接种后3周,所有接种pcDNA-56-,pcDNA-5L6-和pcDNA-6L5-,但未接种pcDNA-3.1的猪均形成中和抗体(NAs),并且PRRSV攻击后NA效价逐渐升高,表明该猪接种这些DNA构建体可以建立足够的免疫记忆。与接种pcDNA-56的猪相比,接种pcDNA-5L6-和pcDNA-6L5的猪在PRRSV攻击后显示出较低的水平,较短的病毒血症时间和较低的组织病毒载量。共表达GPGP连接的GP5和M融合蛋白的策略可能是未来PRRSV疫苗开发的有前途的方法,可能是通过改善靶融合蛋白的天然构象

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