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Dicistroviridae 基因间内部核糖体进入位点的模块化结构域。

Modular domains of the Dicistroviridae intergenic internal ribosome entry site.

机构信息

Department of Biochemistry and Molecular Biology, University of British Columbia, Vancouver, British Columbia V6T 1Z3, Canada.

出版信息

RNA. 2010 Jun;16(6):1182-95. doi: 10.1261/rna.2044610. Epub 2010 Apr 27.

Abstract

The intergenic region internal ribosome entry site (IGR IRES) of the Dicistroviridae viral family can directly assemble 80S ribosomes and initiate translation at a non-AUG codon from the ribosomal A-site. These functions are directed by two independently folded domains of the IGR IRES. One domain, composed of overlapping pseudoknots II and III (PKII/III), mediates ribosome recruitment. The second domain, composed of PKI, mimics a tRNA anticodon-codon interaction to position the ribosome at the ribosomal A-site. Although adopting a common secondary structure, the dicistrovirus IGR IRESs can be grouped into two classes based on distinct features within each domain. In this study, we report on the modularity of the IGR IRESs and show that the ribosome-binding domain and the tRNA anticodon mimicry domain are functionally interchangeable between the Type I and the Type II IGR IRESs. Using structural probing, ribosome-binding assays, and ribosome positioning analysis by toeprinting assays, we show that the chimeric IRESs fold properly, assemble 80S ribosomes, and can mediate IRES translation in rabbit reticulocyte lysates. We also demonstrate that the chimeric IRESs can stimulate the ribosome-dependent GTPase activity of eEF2, which suggests that the ribosome is primed for a step downstream from IRES binding. Overall, the results demonstrate that the dicistrovirus IGR IRESs are composed of two modular domains that work in concert to manipulate the ribosome and direct translation initiation.

摘要

双顺反子病毒家族的基因间内部核糖体进入位点(IGR IRES)可以直接组装 80S 核糖体,并从核糖体 A 位起始非 AUG 密码子的翻译。这些功能由 IGR IRES 的两个独立折叠结构域指导。一个结构域由重叠的假结 II 和 III(PKII/III)组成,介导核糖体募集。第二个结构域由 PKI 组成,模拟 tRNA 反密码子-密码子相互作用,将核糖体定位在核糖体 A 位。尽管采用了常见的二级结构,但根据每个结构域内的不同特征,双顺反子病毒的 IGR IRES 可以分为两类。在这项研究中,我们报告了 IGR IRES 的模块性,并表明核糖体结合结构域和 tRNA 反密码子模拟结构域在 I 型和 II 型 IGR IRES 之间在功能上是可互换的。通过结构探测、核糖体结合测定以及核糖体定位分析的 toe-printing 测定,我们表明嵌合 IRES 折叠正确,组装 80S 核糖体,并能介导兔网织红细胞裂解物中的 IRES 翻译。我们还证明,嵌合 IRES 可以刺激核糖体依赖性 eEF2 的 GTP 酶活性,这表明核糖体在 IRES 结合的下游步骤中已被引发。总的来说,这些结果表明,双顺反子病毒的 IGR IRES 由两个协同作用的模块化结构域组成,用于操纵核糖体并指导翻译起始。

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