首页> 外文期刊>Journal of microbiology and biotechnology >Yeast Surface Display of Capsid Protein VP7 of Grass Carp Reovirus: Fundamental Investigation for the Development of Vaccine Against Hemorrhagic Disease
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Yeast Surface Display of Capsid Protein VP7 of Grass Carp Reovirus: Fundamental Investigation for the Development of Vaccine Against Hemorrhagic Disease

机译:草鱼呼肠孤病毒衣壳蛋白VP7的酵母表面展示:出血病疫苗开发的基础研究。

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摘要

VP7, an outer capsid protein of grass carp reovirus (GCRV), was expressed and displayed on the surface of Saccharomyces cerevisiae for developing an efficient vaccine against hemorrhagic disease of grass carp. The result of flow cytometry analysis indicated that protein VP7 could be displayed on the surface of yeast cells after inducing with galactose. The expression of VP7 was confirmed by western blot analysis and further visualized with confocal microscopy. The specific antibodies against VP7 generated from mice were detectable from all immune groups except the control group, which was immunized with untransformed yeast cells. The displaying VP7 on glycosylation-deficient strain EBY Delta Mnn9 was detected to induce a relatively low level of specific antibody amongst the three strains. However, the antiserum of EBY Delta M9-VP7 showed relative high capacity to neutralize GCRV. Further neutralization testing assays indicated that the neutralizing ability of antiserum of the EBY Delta M9-VP7 group appeared concentration dependent, and could be up to 66.7% when the antiserum was diluted to 1:50. This result indicates that appropriate gene modification of glycosylation in a yeast strain has essential effect on the immunogenicity of a yeast-based vaccine.
机译:VP7是草鱼呼肠孤病毒(GCRV)的外衣壳蛋白,可在酿酒酵母表面表达并展示,以开发一种有效的抗草鱼出血性疾病的疫苗。流式细胞仪分析结果表明,半乳糖诱导后,VP7蛋白可以在酵母细胞表面显示。 VP7的表达通过蛋白质印迹分析得到证实,并通过共聚焦显微镜进一步观察。从小鼠产生的针对VP7的特异性抗体可从除未转化酵母细胞免疫的对照组以外的所有免疫组中检测到。检测到在糖基化缺陷菌株EBY Delta Mnn9上展示的VP7在这三株菌株中诱导了相对较低水平的特异性抗体。但是,EBY Delta M9-VP7的抗血清显示出中和GCRV的相对较高的能力。进一步的中和测试测定表明,EBY Delta M9-VP7组的抗血清中和能力表现出浓度依赖性,当将抗血清稀释至1:50时,其中和能力可能高达66.7%。该结果表明酵母菌株中糖基化的适当基因修饰对基于酵母的疫苗的免疫原性具有重要作用。

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