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A base-specific recognition signal in the 5′ consensus sequence of rotavirus plus-strand RNAs promotes replication of the double-stranded RNA genome segments

机译:轮状病毒正链RNAs 5共有序列中的碱基特异性识别信号促进双链RNA基因组片段的复制

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摘要

Replication of the segmented double-stranded (ds)RNA genome of rotavirus requires the viral RNA-dependent RNA polymerase (RdRP) to use 11 different (+)RNAs as templates for (−) strand synthesis. Complementary sequences proximal to the 5′ and 3′ termini are predicted to direct cyclization of the (+)RNAs by forming panhandle structures from which short highly conserved terminal sequences protrude as single-stranded tails. Cell-free replication assays indicate that such structural organization of the 5′- and 3′-ends is required for efficient dsRNA synthesis. Multiple specifically recognized elements exist at the 3′-end that promote dsRNA synthesis including RdRP-recruitment signals and a (−) strand initiation sequence. In contrast to the 3′-end, the role of the 5′-end has been less well defined. In this study, we determined that the 5′-end contains a base-specific recognition signal that plays an important role in the assembly of the RdRP and cofactors into a stable initiation complex for (−) strand synthesis. The 5′ recognition signal is associated with the G2 residue of the 5′-consensus sequence, a residue that shows absolute conservation among all rotavirus groups (A, B, and C) examined to date. From our results, we suggest that rotavirus (+)RNA cyclization, although likely initiated by 5′- 3′ nucleotide complementarity, may be stabilized by RdRP-dependent bridging. Given that synthesis of the (−) strand on the (+)RNA template will disrupt 5′–3′ nucleotide interactions, RdRP-dependent bridging may be the sole mechanism by which the dsRNA product can be held in the necessary cyclized conformation required for efficient multiple rounds of transcription.
机译:轮状病毒的分段双链(ds)RNA基因组的复制需要病毒依赖RNA的RNA聚合酶(RdRP)使用11种不同(+)RNA作为(-)链合成的模板。预测5'和3'末端附近的互补序列可通过形成泛柄结构来指导(+)RNA的环化,该泛柄结构将从其短的高度保守的末端序列突出为单链尾巴。无细胞复制测定法表明有效的dsRNA合成需要5'-端和3'-端的这种结构组织。在3'端存在多个特异性识别的元素,这些元素可促进dsRNA合成,包括RdRP募集信号和(-)链起始序列。与3'末端相反,5'末端的作用没有得到很好的定义。在这项研究中,我们确定5'端包含一个碱基特异性识别信号,该信号在RdRP和辅因子组装成稳定的起始复合物以形成(-)链时起着重要作用。 5'识别信号与5'-共有序列的G2残基相关,该残基显示迄今为止已检查的所有轮状病毒组(A,B和C)中的绝对保守性。根据我们的结果,我们认为轮状病毒(+)RNA环化虽然可能是由5'-3'核苷酸互补性引发的,但可以通过RdRP依赖性桥接来稳定。鉴于(+)RNA模板上(-)链的合成将破坏5'–3'核苷酸相互作用,RdRP依赖性桥接可能是dsRNA产物可以保持必需的环化构象的唯一机制。高效的多轮转录。

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