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Understanding the potential of hepatitis C virus internal ribosome entry site domains to modulate translation initiation via their structure and function

机译:了解丙型肝炎病毒内部核糖体进入位点域通过其结构和功能调节翻译起始的潜力

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摘要

Translation initiation in the hepatitis C virus (HCV) occurs through a cap-independent mechanism that involves an internal ribosome entry site (IRES) capable of interacting with and utilizing the eukaryotic translational machinery. In this review, we focus on the structural configuration of the different HCV IRES domains and the impact of IRES primary sequence variations on secondary structure conservation and function. In some cases, multiple mutations, even those scattered across different domains, led to restoration of the translational activity of the HCV IRES, although the individual occurrences of these mutations were found to be deleterious. We propose that such observation may be attributed to probable long-range inter- and/or intra-domain functional interactions. The precise functioning of the HCV IRES requires the specific interaction of its domains with ribosomal subunits and a subset of eukaryotic translation initiation factors (eIFs). The structural conformation, sequence preservation and variability, and translational machinery association with the HCV IRES regions are also thoroughly discussed, along with other factors that can affect and influence the formation of translation initiation complexes. WIREs RNA 2015, 6:211–224. doi: 10.1002/wrna.1268
机译:丙型肝炎病毒(HCV)的翻译起始是通过不依赖帽的机制发生的,该机制涉及内部核糖体进入位点(IRES),该位点能够与真核翻译机制相互作用并利用其。在这篇综述中,我们关注于不同HCV IRES结构域的结构配置以及IRES一级序列变异对二级结构保守性和功能的影响。在某些情况下,即使发现多个突变,即使是分散在不同域的突变,也可以恢复HCV IRES的翻译活性,尽管发现这些突变的个别发生是有害的。我们建议这种观察可能归因于可能的远程域间和/或域内功能相互作用。 HCV IRES的精确功能需要其结构域与核糖体亚基和真核翻译起始因子(eIFs)的特定相互作用。还对结构构象,序列保留和变异性以及与HCV IRES区域的翻译机制关联以及可能影响和影响翻译起始复合物形成的其他因素进行了详尽的讨论。电线RNA 2015,6:211–224。 doi:10.1002 / wrna.1268

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