Martínez-Salas E, Regalado M P, Domingo E
Centro de Biología Molecular Severo Ochoa, Consejo Superior de Investigaciones Cientificas-Universidad Autónoma de Madrid, Spain.
J Virol. 1996 Feb;70(2):992-8. doi: 10.1128/JVI.70.2.992-998.1996.
Translation of aphthovirus RNA is initiated at an internal ribosome entry site (IRES) element, preceding the first functional AUG initiation codon. The effect of mutations at the base of domain 3 of the aphthovirus IRES on translation activity has been analyzed by site-directed mutagenesis and expression of bicistronic RNAs in transfected cells. The results have shown that the enhanced IRES activity associated with a single pyrimidine transition fixed in a persistent aphthovirus variant (E. Martínez-Salas, J. C. Sáiz, M. Dávila, G. J. Belsham, and E. Domingo, J. Virol. 67:3748-3755, 1993) is base specific. Mutations predicted to destabilize the base of domain 3 were detrimental to IRES function, but subsequent restoration of the RNA structure gave rise to fully competent IRES. In contrast, single or multiple mutations that did not affect predicted helical structures modified the relative efficiency of translation by at most 10-fold, suggesting that primary sequence also plays a role in IRES activity. A correlation between the energy of stabilization of the IRES structure and the efficiency of translation has been noted. None of the 15 mutations studied reached a level of initiation of translation comparable to that of the IRES from the persistent variant. The results indicate a critical participation of the base of domain 3 in the activity of the aphthovirus IRES, with a strong effect of secondary or higher-order structures and minor effects of primary structure.
口蹄疫病毒RNA的翻译起始于第一个功能性AUG起始密码子之前的一个内部核糖体进入位点(IRES)元件。通过定点诱变和在转染细胞中表达双顺反子RNA,分析了口蹄疫病毒IRES结构域3底部的突变对翻译活性的影响。结果表明,在一个持续性口蹄疫病毒变体中固定的单个嘧啶转换所关联的增强IRES活性是碱基特异性的(E. Martínez-Salas、J. C. Sáiz、M. Dávila、G. J. Belsham和E. Domingo,《病毒学杂志》67:3748 - 3755,1993年)。预测会破坏结构域3底部结构的突变对IRES功能有害,但随后RNA结构的恢复产生了完全有功能的IRES。相比之下,不影响预测螺旋结构的单个或多个突变最多使翻译的相对效率改变10倍,这表明一级序列在IRES活性中也起作用。已注意到IRES结构的稳定能量与翻译效率之间的相关性。所研究的15个突变中没有一个达到与持续性变体的IRES相当的翻译起始水平。结果表明结构域3的底部在口蹄疫病毒IRES的活性中起关键作用,二级或更高级结构有强烈影响,一级结构影响较小。