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昆虫细胞中 3C 蛋白酶活性下调后高效生产口蹄疫病毒空壳。

Efficient production of foot-and-mouth disease virus empty capsids in insect cells following down regulation of 3C protease activity.

机构信息

Institute for Animal Health, Ash Road, Pirbright, Woking GU24 0NF, UK.

出版信息

J Virol Methods. 2013 Feb;187(2):406-12. doi: 10.1016/j.jviromet.2012.11.011. Epub 2012 Nov 19.

Abstract

Foot-and-mouth disease virus (FMDV) is a significant economically and distributed globally pathogen of Artiodactyla. Current vaccines are chemically inactivated whole virus particles that require large-scale virus growth in strict bio-containment with the associated risks of accidental release or incomplete inactivation. Non-infectious empty capsids are structural mimics of authentic particles with no associated risk and constitute an alternate vaccine candidate. Capsids self-assemble from the processed virus structural proteins, VP0, VP3 and VP1, which are released from the structural protein precursor P1-2A by the action of the virus-encoded 3C protease. To date recombinant empty capsid assembly has been limited by poor expression levels, restricting the development of empty capsids as a viable vaccine. Here expression of the FMDV structural protein precursor P1-2A in insect cells is shown to be efficient but linkage of the cognate 3C protease to the C-terminus reduces expression significantly. Inactivation of the 3C enzyme in a P1-2A-3C cassette allows expression and intermediate levels of 3C activity resulted in efficient processing of the P1-2A precursor into the structural proteins which assembled into empty capsids. Expression was independent of the insect host cell background and leads to capsids that are recognised as authentic by a range of anti-FMDV bovine sera suggesting their feasibility as an alternate vaccine.

摘要

口蹄疫病毒(FMDV)是一种具有重要经济意义且分布广泛的偶蹄目动物病原体。目前的疫苗是化学灭活的全病毒颗粒,需要在严格的生物安全控制下大规模培养病毒,存在意外释放或不完全灭活的风险。无感染性的空衣壳是真实颗粒的结构模拟物,没有相关风险,是一种替代疫苗候选物。衣壳由经过加工的病毒结构蛋白 VP0、VP3 和 VP1 自组装而成,这些蛋白是由病毒编码的 3C 蛋白酶从结构蛋白前体 P1-2A 中释放出来的。迄今为止,重组空衣壳的组装受到表达水平低的限制,限制了空衣壳作为可行疫苗的发展。本研究表明,在昆虫细胞中表达 FMDV 结构蛋白前体 P1-2A 是有效的,但将同源 3C 蛋白酶连接到 C 末端会显著降低表达水平。在 P1-2A-3C 盒中使 3C 酶失活,可实现表达并产生中等水平的 3C 活性,从而有效将 P1-2A 前体加工成结构蛋白,这些结构蛋白组装成空衣壳。该表达不依赖于昆虫宿主细胞背景,并导致一系列抗 FMDV 牛血清识别为真实的衣壳,表明其作为替代疫苗的可行性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c780/3558679/8f51239bc186/gr1.jpg

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