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评估表达轮状病毒VP6的重组卡介苗作为抗轮状病毒疫苗的效果。

Evaluation of recombinant BCG expressing rotavirus VP6 as an anti-rotavirus vaccine.

作者信息

Dennehy Maureen, Bourn William, Steele Duncan, Williamson Anna-Lise

机构信息

Division of Medical Virology, Department of Clinical Laboratory Sciences, Faculty of Health Sciences, University of Cape Town, and National Health Laboratory Service, Groote Schuur Hospital, Cape Town, South Africa.

出版信息

Vaccine. 2007 May 4;25(18):3646-57. doi: 10.1016/j.vaccine.2007.01.087. Epub 2007 Jan 31.

Abstract

Recombinant BCG expressing rotavirus VP6 was explored as an anti-rotavirus vaccine in a mouse model. Three promoters and five ribosome-binding sites were used in episomal and integrative E. coli-mycobacterium shuttle vectors to express VP6 in BCG. The VP6 gene was configured for accumulation within the BCG cytoplasm, secretion from the BCG cell or targeting to the BCG cell membrane. Vectors were assessed in terms of stability, levels of antigen production, immunogenicity and protection in mice. Gross instability occurred in episomal vectors utilizing the hsp60 promoter. However, three integrative vectors using the same expression system and two episomal vectors using inducible promoters were successfully recovered from BCG. Growth rates of the former were not detectably reduced. Growth rates of the latter were considerably reduced, implying the existence of a significant metabolic load. In the absence of selection, loss rate of these plasmids was high. VP6 production levels (0.04-1.78% of total cytoplasmic protein) were on the lower end of the range reported for other rBCG. One episomal and one integrated vaccine reduced viral shedding in intraperitoneally vaccinated mice challenged with rotavirus. Compared to controls, infection-associated faecal shedding of virus was reduced by 66% and 62%, respectively. These protective vectors differ in promoter, ribosome-binding site and antigen production level, but both link the VP6 protein to the 19kDa lipoprotein signal sequence, suggesting that transport of VP6 to the BCG membrane is important for induction of a protective immune response. Protection occurred in the absence of detectable anti-rotavirus antibody in serum or faeces, implicating cellular immunity in protection.

摘要

在小鼠模型中,对表达轮状病毒VP6的重组卡介苗作为抗轮状病毒疫苗进行了研究。在游离型和整合型大肠杆菌-分枝杆菌穿梭载体中使用了三种启动子和五个核糖体结合位点,以在卡介苗中表达VP6。VP6基因被构建用于在卡介苗细胞质内积累、从卡介苗细胞分泌或靶向卡介苗细胞膜。对载体在稳定性、抗原产生水平、免疫原性和对小鼠的保护作用方面进行了评估。利用hsp60启动子的游离型载体出现了严重的不稳定性。然而,从卡介苗中成功回收了三种使用相同表达系统的整合型载体和两种使用诱导型启动子的游离型载体。前者的生长速率未检测到降低。后者的生长速率显著降低,这意味着存在显著的代谢负荷。在没有选择压力的情况下,这些质粒的丢失率很高。VP6的产生水平(占总细胞质蛋白的0.04 - 1.78%)处于其他重组卡介苗报道范围的下限。一种游离型和一种整合型疫苗降低了经轮状病毒攻击的腹腔内接种小鼠的病毒排泄量。与对照组相比,与感染相关的粪便病毒排泄量分别减少了66%和62%。这些保护性载体在启动子、核糖体结合位点和抗原产生水平上有所不同,但两者都将VP6蛋白与19kDa脂蛋白信号序列相连,这表明VP6转运到卡介苗细胞膜对于诱导保护性免疫反应很重要。在血清或粪便中未检测到抗轮状病毒抗体的情况下仍出现了保护作用,这表明细胞免疫在保护中发挥了作用。

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