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Impaired Binding of Standard Initiation Factors Mediates Poliovirus Translation Attenuation

机译:标准启动因子的结合受损介导脊髓灰质炎病毒翻译衰减。

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摘要

In the oral poliovirus vaccine, three attenuated virus strains generated by Albert Sabin are used. However, insufficient genetic stability of these strains causes major problems in poliovirus eradication. In infected cells, translation of the plus-strand poliovirus RNA genome is directed by the internal ribosome entry site (IRES), a cis-acting RNA element that facilitates the cap-independent binding of ribosomes to an internal site of the viral RNA. In each Sabin vaccine strain, a single point mutation in the IRES secondary-structure domain V is a major determinant of neurovirulence attenuation. Here we report how these decisive mutations in the IRES confer a reduction in poliovirus translation efficiency. These single-nucleotide exchanges impair the interaction of the standard translation initiation factor eIF4G with the IRES domain V. Moreover, binding of eIF4B and the polypyrimidine tract-binding protein and the association of ribosomes with the viral RNA are affected by these mutations. However, the negative effects of the IRES mutations are completely relieved by addition of purified eIF4F. This indicates that eIF4G is the crucial factor that initially binds to the poliovirus IRES and recruits the IRES to the other components of the translational apparatus, while impaired binding of eIF4G plays a key role in attenuation of poliovirus neurovirulence.
机译:在口服脊髓灰质炎病毒疫苗中,使用了由阿尔伯特·萨宾(Albert Sabin)产生的三种减毒病毒株。但是,这些菌株的遗传稳定性不足会在根除脊髓灰质炎病毒方面引起重大问题。在受感染的细胞中,正链脊髓灰质炎病毒RNA基因组的翻译受内部核糖体进入位点(IRES)的控制,IRES是一种顺式作用的RNA元件,有助于核糖体与帽的独立于病毒RNA的内部位点结合。在每个萨宾疫苗株中,IRES二级结构域V中的单点突变是神经毒力减弱的主要决定因素。在这里,我们报告了IRES中的这些决定性突变如何导致脊髓灰质炎病毒翻译效率的降低。这些单核苷酸交换削弱了标准翻译起始因子eIF4G与IRES结构域V的相互作用。此外,这些突变会影响eIF4B和聚嘧啶束结合蛋白的结合以及核糖体与病毒RNA的结合。但是,通过添加纯化的eIF4F可以完全缓解IRES突变的负面影响。这表明eIF4G是起初与脊髓灰质炎病毒IRES结合并将IRES募集到翻译装置其他组件的关键因素,而eIF4G的结合受损在脊髓灰质炎病毒神经毒性的减弱中起关键作用。

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