Alshaikhahmed Kinda, Roy Polly
Faculty of Infectious and Tropical Diseases, London School of Hygiene and Tropical Medicine, United Kingdom.
Faculty of Infectious and Tropical Diseases, London School of Hygiene and Tropical Medicine, United Kingdom.
Vaccine. 2016 Feb 17;34(8):1103-8. doi: 10.1016/j.vaccine.2015.12.069. Epub 2016 Jan 21.
Epizootic haemorrhagic disease virus (EHDV) is an insect-transmitted pathogen which causes high mortality in deer populations and may also cause high morbidity in cattle. EHDV belongs to the Orbivirus genus and is closely related to the prototype Bluetongue virus (BTV). To date seven distinct serotypes have been recognized. However, a live-attenuated vaccine is commercially available against only one serotype namely EHDV-2, which has been responsible for multiple outbreaks in North America, Canada, Asia and Australia. Here we expressed four major capsid proteins (VP2, VP3, VP5 and VP7) of EHDV-1 using baculovirus multiple gene expression systems and demonstrated that three-layered VLPs were assembled mimicking the authentic EHDV particles but lacking the viral genomic RNA segments and the transcriptase complex (TC). Antibodies generated with VLPs not only neutralized EHDV-1 infection in cell culture but also showed cross neutralizing reactivity against two other serotypes, EHDV-2 and EHDV-6. For proof of concept, we demonstrated that EHDV-2 VLPs could be generated rapidly by expressing the EHDV-2 variable outer capsid proteins (VP2, VP5) together with EHDV-1 VP3 and VP7, the two inner capsid proteins, which are highly conserved among the 7 serotypes. Data presented in this study validate the VLPs as a potential vaccine and demonstrate that a vaccine could be developed rapidly in the event of an outbreak of a new serotype.
流行性出血病病毒(EHDV)是一种通过昆虫传播的病原体,可导致鹿群的高死亡率,也可能使牛群出现高发病率。EHDV属于环状病毒属,与原型蓝舌病病毒(BTV)密切相关。迄今为止,已识别出七种不同的血清型。然而,市售的减毒活疫苗仅针对一种血清型,即EHDV-2,该血清型已在北美、加拿大、亚洲和澳大利亚引发多次疫情。在此,我们利用杆状病毒多基因表达系统表达了EHDV-1的四种主要衣壳蛋白(VP2、VP3、VP5和VP7),并证明组装出了三层病毒样颗粒(VLPs),它们模仿了真实的EHDV颗粒,但缺少病毒基因组RNA片段和转录酶复合体(TC)。用VLPs产生的抗体不仅能在细胞培养中中和EHDV-1感染,还对另外两种血清型EHDV-2和EHDV-6表现出交叉中和反应性。为了验证概念,我们证明通过共同表达EHDV-2可变外衣壳蛋白(VP2、VP5)与EHDV-1的VP3和VP7(两种在内衣壳蛋白,在7种血清型中高度保守),可以快速产生EHDV-2 VLPs。本研究提供的数据验证了VLPs作为一种潜在疫苗的有效性,并表明在出现新血清型疫情时可以迅速开发出疫苗。