Tolbert Michele, Morgan Christopher E, Pollum Marvin, Crespo-Hernández Carlos E, Li Mei-Ling, Brewer Gary, Tolbert Blanton S
Department of Chemistry, Case Western Reserve University, Cleveland, OH, 44106-7078 USA.
Department of Biochemistry and Molecular Biology, Rutgers Robert Wood Johnson Medical School, Piscataway, NJ, 08854 USA.
J Mol Biol. 2017 Sep 15;429(19):2841-2858. doi: 10.1016/j.jmb.2017.06.007. Epub 2017 Jun 15.
Enteroviruses use a type I Internal Ribosome Entry Site (IRES) structure to facilitate protein synthesis and promote genome replication. Type I IRES elements require auxiliary host proteins to organize RNA structure for 40S ribosomal subunit assembly. Heterogeneous nuclear ribonucleoprotein A1 stimulates enterovirus 71 (EV71) translation in part through specific interactions with its stem loop II (SLII) IRES domain. Here, we determined a conjoined NMR-small angle x-ray scattering structure of the EV71 SLII domain and a mutant that significantly attenuates viral replication by abrogating hnRNP A1 interactions. Native SLII adopts a locally compact structure wherein stacking interactions in a conserved 5'-AUAGC-3' bulge preorganize the adjacent helices at nearly orthogonal orientations. Mutating the bulge sequence to 5'-ACCCC-3' ablates base stacking in the loop and globally reorients the SLII structure. Biophysical titrations reveal that the 5'-AUAGC-3' bulge undergoes a conformational change to assemble a functional hnRNP A1-RNA complex. Importantly, IRES mutations that delete the bulge impair viral translation and completely inhibit replication. Thus, this work provides key details into how an EV71 IRES structure adapts to hijack a cellular protein, and it suggests that the SLII domain is a potential target for antiviral therapy.
肠道病毒利用I型内部核糖体进入位点(IRES)结构来促进蛋白质合成并推动基因组复制。I型IRES元件需要辅助宿主蛋白来组织RNA结构以进行40S核糖体亚基组装。不均一核核糖核蛋白A1(hnRNP A1)部分通过与其茎环II(SLII)IRES结构域的特异性相互作用来刺激肠道病毒71型(EV71)的翻译。在此,我们确定了EV71 SLII结构域以及一个通过消除hnRNP A1相互作用而显著减弱病毒复制的突变体的联合核磁共振-小角X射线散射结构。天然的SLII采用局部紧密结构,其中保守的5'-AUAGC-3'凸起中的堆积相互作用以近乎正交的方向预组织相邻的螺旋。将凸起序列突变为5'-ACCCC-3'会消除环中的碱基堆积并使SLII结构整体重新定向。生物物理滴定表明,5'-AUAGC-3'凸起会发生构象变化以组装功能性的hnRNP A1-RNA复合物。重要的是,缺失凸起的IRES突变会损害病毒翻译并完全抑制复制。因此,这项工作提供了关于EV71 IRES结构如何适应劫持一种细胞蛋白的关键细节,并表明SLII结构域是抗病毒治疗的一个潜在靶点。