Andreev Dmitri E, Fernandez-Miragall Olga, Ramajo Jorge, Dmitriev Sergey E, Terenin Ilya M, Martinez-Salas Encarna, Shatsky Ivan N
Belozersky Institute of Physico-Chemical Biology, Moscow State University, Moscow, Russia.
RNA. 2007 Aug;13(8):1366-74. doi: 10.1261/rna.469707. Epub 2007 Jun 25.
The foot-and-mouth disease virus (FMDV) RNA contains two in-frame AUG codons separated by 84 nt that direct translation initiation of the viral polyprotein. The mechanism of initiation at the IRES-proximal AUG codon (AUG1) has been previously analyzed, whereas no data on factor requirements for AUG2 have been reported. Here, using the method of 48S translation initiation complex reconstitution, we show that eIF1 is indispensable in forming the 48S initiation complex at AUG2. In contrast, it reduces the assembly of this complex at AUG1. Stabilization of a stem-loop between the initiation triplets induces a small decrease in the toeprint intensity at AUG2, accompanied by an increase in the AUG1/AUG2 ratio as well as a moderate reduction of protein synthesis initiated at AUG2 in transfected cells. PTB and ITAF45 exerted an additive positive effect on the 48S complex at AUG2, although a substantial reconstitution on both AUGs occurs on omission of either of these proteins. Relative to the beta-globin mRNA, the 48S complex formation at AUG1 and AUG2 is slow and occurs with the same kinetics as revealed by the "kinetic" toeprint assay. Mutation of AUG1 to AUA does not abrogate protein synthesis in transfected cells, and has no effect on the rate of the 48S complex formation at AUG2. We conclude that the AUG2 initiation region is selected independently of 48S complex formation at the upstream AUG1. The kinetic toeprint assay also shows that cap-dependent assembly of the 48S complex in vitro occurs faster than the FMDV IRES-mediated complex assembly.
口蹄疫病毒(FMDV)RNA包含两个读框内的AUG密码子,它们相隔84个核苷酸,指导病毒多聚蛋白的翻译起始。先前已经分析了IRES近端AUG密码子(AUG1)处的起始机制,而关于AUG2的因子需求尚无数据报道。在这里,我们使用48S翻译起始复合物重构方法表明,eIF1在AUG2处形成48S起始复合物中是不可或缺的。相反,它会减少该复合物在AUG1处的组装。起始三联体之间茎环结构的稳定会导致AUG2处的足迹强度略有下降,同时AUG1/AUG2比值增加,以及转染细胞中在AUG2起始的蛋白质合成适度减少。PTB和ITAF45对AUG2处的48S复合物发挥累加的正向作用,尽管在缺失这两种蛋白质中的任何一种时,两个AUG处都会发生大量的重构。相对于β-珠蛋白mRNA,AUG1和AUG2处48S复合物的形成较慢,并且以与“动力学”足迹分析所揭示的相同动力学发生。将AUG1突变为AUA不会消除转染细胞中的蛋白质合成,并且对AUG2处48S复合物的形成速率没有影响。我们得出结论,AUG2起始区域的选择独立于上游AUG1处48S复合物的形成。动力学足迹分析还表明,体外48S复合物的帽依赖性组装比FMDV IRES介导的复合物组装更快。