López de Quinto S, Martínez-Salas E
Centro de Biología Molecular Severo Ochoa, CSIC-UAM, Madrid, Spain.
RNA. 2000 Oct;6(10):1380-92. doi: 10.1017/s1355838200000753.
The strategies developed by internal ribosome entry site (IRES) elements to recruit the translational machinery are poorly understood. In this study we show that protein-RNA interaction of the eIF4G translation initiation factor with sequences of the foot-and-mouth disease virus (FMDV) IRES is a key determinant of internal translation initiation in living cells. Moreover, we have identified the nucleotides required for eIF4G-RNA functional interaction, using native proteins from FMDV-susceptible cell extracts. Substitutions in the conserved internal AA loop of the base of domain 4 led to strong impairment of both eIF4G-RNA interaction in vitro and IRES-dependent translation initiation in vivo. Conversely, substitutions in the vicinity of the internal AA loop that did not impair IRES activity retained their ability to interact with eIF4G. Direct UV-crosslinking as well as competition assays indicated that domains 1-2, 3, and 5 of the IRES did not contribute to this interaction. In agreement with this, binding to domain 4 alone was as efficient as to the full-length IRES. The C-terminal fragment of eIF4G, proteolytically processed by the FMDV Lb protease, was sufficient to interact with the IRES or to its domain 4 alone. Additionally, we show here that binding of the eIF4B initiation factor to the IRES required domain 5 sequences. Moreover, eIF4G-IRES interaction was detected in the absence of eIF4B-IRES binding, suggesting that both initiation factors interact with the 3' region of the IRES but use different residues. The strong correlation found between eIF4G-RNA interaction and IRES activity in transfected cells suggests that eIF4G acts as a linker to recruit the translational machinery in IRES-dependent initiation.
内部核糖体进入位点(IRES)元件用于招募翻译机制的策略目前还知之甚少。在本研究中,我们表明真核起始因子4G(eIF4G)与口蹄疫病毒(FMDV)IRES序列的蛋白质 - RNA相互作用是活细胞中内部翻译起始的关键决定因素。此外,我们利用FMDV易感细胞提取物中的天然蛋白质,确定了eIF4G - RNA功能相互作用所需的核苷酸。结构域4底部保守的内部AA环中的取代导致体外eIF4G - RNA相互作用以及体内IRES依赖性翻译起始的强烈受损。相反,在内部AA环附近未损害IRES活性的取代保留了它们与eIF4G相互作用的能力。直接紫外光交联以及竞争试验表明,IRES的结构域1 - 2、3和5对这种相互作用没有贡献。与此一致的是,单独与结构域4结合的效率与与全长IRES结合的效率相同。被FMDV Lb蛋白酶进行蛋白水解处理的eIF4G的C末端片段足以与IRES或仅与其结构域4相互作用。此外,我们在此表明,起始因子eIF4B与IRES的结合需要结构域5序列。而且,在没有eIF4B - IRES结合的情况下检测到eIF4G - IRES相互作用,这表明这两种起始因子都与IRES的3'区域相互作用,但使用不同的残基。在转染细胞中发现的eIF4G - RNA相互作用与IRES活性之间的强相关性表明,eIF4G在IRES依赖性起始中作为招募翻译机制的连接物发挥作用。