首页> 外文OA文献 >Processing of the VP1/2A Junction Is Not Necessary for Production of Foot-and-Mouth Disease Virus Empty Capsids and Infectious Viruses: Characterization of “Self-Tagged” Particles
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Processing of the VP1/2A Junction Is Not Necessary for Production of Foot-and-Mouth Disease Virus Empty Capsids and Infectious Viruses: Characterization of “Self-Tagged” Particles

机译:Vp1 / 2a连接的处理对于产生口蹄疫病毒空衣壳和传染病毒不是必需的:“自标记”颗粒的表征

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摘要

The foot-and-mouth disease virus (FMDV) capsid protein precursor, P1-2A, is cleaved by 3Cpro to generate VP0, VP3, VP1, and the peptide 2A. The capsid proteins self-assemble into empty capsid particles or viruses which do not contain 2A. In a cell culture-adapted strain of FMDV (O1 Manisa [Lindholm]), three different amino acid substitutions (E83K, S134C, and K210E) were identified within the VP1 region of the P1-2A precursor compared to the field strain (wild type [wt]). Expression of the O1 Manisa P1-2A (wt or with the S134C substitution in VP1) plus 3Cpro, using a transient expression system, resulted in efficient capsid protein production and self-assembly of empty capsid particles. Removal of the 2A peptide from the capsid protein precursor had no effect on capsid protein processing or particle assembly. However, modification of E83K alone abrogated particle assembly with no apparent effect on protein processing. Interestingly, the K210E substitution, close to the VP1/2A junction, completely blocked processing by 3Cpro at this cleavage site, but efficient assembly of “self-tagged” empty capsid particles, containing the uncleaved VP1-2A, was observed. These self-tagged particles behaved like the unmodified empty capsids in antigen enzyme-linked immunosorbent assays and integrin receptor binding assays. Furthermore, mutant viruses with uncleaved VP1-2A could be rescued in cells from full-length FMDV RNA transcripts encoding the K210E substitution in VP1. Thus, cleavage of the VP1/2A junction is not essential for virus viability. The production of such engineered self-tagged empty capsid particles may facilitate their purification for use as diagnostic reagents and vaccines.
机译:口蹄疫病毒(FMDV)衣壳蛋白前体P1-2A被3Cpro裂解,生成VP0,VP3,VP1和肽2A。衣壳蛋白自组装成空的衣壳颗粒或不包含2A的病毒。在适应于细胞培养的FMDV菌株(O1 Manisa [Lindholm])中,与现场菌株(野生型)相比,在P1-2A前体的VP1区域内鉴定出三个不同的氨基酸取代(E83K,S134C和K210E) [wt])。使用瞬时表达系统表达O1 Manisa P1-2A(wt或在VP1中用S134C取代)或3Cpro,可有效产生衣壳蛋白并自组装空衣壳颗粒。从衣壳蛋白前体中除去2A肽对衣壳蛋白加工或颗粒组装没有影响。但是,单独E83K的修饰废除了颗粒装配,对蛋白质加工没有明显影响。有趣的是,靠近VP1 / 2A交界处的K210E取代完全阻断了3Cpro在该裂解位点的加工,但是观察到有效的组装了包含未裂解VP1-2A的“自标记”空衣壳颗粒。这些自标记的颗粒在抗原酶联免疫吸附测定和整联蛋白受体结合测定中的行为类似于未修饰的空衣壳。此外,具有未切割的VP1-2A的突变病毒可以从编码VP1中K210E替代的全长FMDV RNA转录本中挽救。因此,VP1 / 2A连接的裂解不是病毒生存力所必需的。此类工程化的自标记的空衣壳颗粒的生产可以促进其纯化以用作诊断试剂和疫苗。

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