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黄热病毒3'非翻译区的二级结构:对毒力、减毒及疫苗开发的影响

Secondary structure of the 3'-untranslated region of yellow fever virus: implications for virulence, attenuation and vaccine development.

作者信息

Proutski V, Gaunt M W, Gould E A, Holmes E C

机构信息

Wellcome Trust Centre for the Epidemiology of Infectious Disease, Department of Zoology, University of Oxford, UK.

出版信息

J Gen Virol. 1997 Jul;78 ( Pt 7):1543-9. doi: 10.1099/0022-1317-78-7-1543.

Abstract

A genetic algorithm-based RNA secondary structure prediction was combined with comparative sequence analysis to construct models of folding for the distal 380 nucleotides of the 3'-untranslated region (3'-UTR) of yellow fever virus (YFV). A number of structural elements that are thermodynamically stable, conserved in shape, and confirmed by compensatory mutations were revealed. At the same time structural polymorphisms were observed among strains of YFV. These polymorphisms showed an association with virulence: all wild and pathogenic strains were likely to be folded in a significantly different way from vaccine strains with reduced virulence. Structural divergence was also found among vaccine strains, with 17DD, the most virulent in the mouse model, exhibiting an intermediate pattern of folding, combining structural features of both wild and vaccine strains. The observation of a strong association between secondary structure of the 3'-UTR and virulence of YFV may help elucidate the molecular mechanisms of virus attenuation and lead to new strategies of vaccine development directed towards rational modification of secondary structure of the 3'-UTR.

摘要

基于遗传算法的RNA二级结构预测与比较序列分析相结合,构建了黄热病毒(YFV)3'-非翻译区(3'-UTR)远端380个核苷酸的折叠模型。揭示了一些热力学稳定、形状保守且经补偿性突变证实的结构元件。同时,在YFV毒株中观察到结构多态性。这些多态性与毒力相关:所有野生和致病毒株的折叠方式可能与毒力降低的疫苗毒株有显著差异。在疫苗毒株中也发现了结构差异,在小鼠模型中最具毒力的17DD呈现出一种中间折叠模式,结合了野生毒株和疫苗毒株的结构特征。观察到3'-UTR二级结构与YFV毒力之间的强关联可能有助于阐明病毒减毒的分子机制,并导致针对3'-UTR二级结构进行合理修饰的新疫苗开发策略。

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