Escarmís Cristina, Perales Celia, Domingo Esteban
Centro de Biología Molecular Severo Ochoa, Universidad Autónoma de Madrid, Cantoblanco, C/Nicolás Cabrera 1, 28049 Madrid, Spain.
J Virol. 2009 Jul;83(13):6748-56. doi: 10.1128/JVI.00538-09. Epub 2009 Apr 29.
Repeated bottleneck passages of RNA viruses result in accumulation of mutations and fitness decrease. Here, we show that clones of foot-and-mouth disease virus (FMDV) subjected to bottleneck passages, in the form of plaque-to-plaque transfers in BHK-21 cells, increased the thermosensitivity of the viral clones. By constructing infectious FMDV clones, we have identified the amino acid substitution M54I in capsid protein VP1 as one of the lesions associated with thermosensitivity. M54I affects processing of precursor P1, as evidenced by decreased production of VP1 and accumulation of VP1 precursor proteins. The defect is enhanced at high temperatures. Residue M54 of VP1 is exposed on the virion surface, and it is close to the B-C loop where an antigenic site of FMDV is located. M54 is not in direct contact with the VP1-VP3 cleavage site, according to the three-dimensional structure of FMDV particles. Models to account for the effect of M54 in processing of the FMDV polyprotein are proposed. In addition to revealing a distance effect in polyprotein processing, these results underline the importance of pursuing at the biochemical level the biological defects that arise when viruses are subjected to multiple bottleneck events.
RNA病毒的多次瓶颈传代导致突变积累和适应性下降。在此,我们表明,在BHK - 21细胞中以噬斑到噬斑转移的形式经历瓶颈传代的口蹄疫病毒(FMDV)克隆,增加了病毒克隆的热敏感性。通过构建感染性FMDV克隆,我们已确定衣壳蛋白VP1中的氨基酸取代M54I是与热敏感性相关的损伤之一。M54I影响前体P1的加工,这表现为VP1产量降低和VP1前体蛋白积累。在高温下该缺陷会增强。VP1的M54残基暴露在病毒粒子表面,且靠近FMDV一个抗原位点所在的B - C环。根据FMDV颗粒的三维结构,M54不与VP1 - VP3切割位点直接接触。本文提出了关于M54在FMDV多聚蛋白加工中作用的模型。除了揭示多聚蛋白加工中的距离效应外,这些结果强调了在生化水平上探究病毒经历多次瓶颈事件时出现的生物学缺陷的重要性。