首页> 美国卫生研究院文献>RNA >The Brome mosaic virus subgenomic promoter hairpin is structurally similar to the iron-responsive element and functionally equivalent to the minus-strand core promoter stem-loop C.
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The Brome mosaic virus subgenomic promoter hairpin is structurally similar to the iron-responsive element and functionally equivalent to the minus-strand core promoter stem-loop C.

机译:Brome花叶病毒亚基因组启动子发夹在结构上类似于铁应答元件并且在功能上等同于负链核心启动子茎环C。

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摘要

In the Bromoviridae family of plant viruses, trinucleotide hairpin loops play an important role in RNA transcription. Recently, we reported that Brome mosaic virus (BMV) subgenomic (sg) transcription depended on the formation of an unusual triloop hairpin. By native gel electrophoresis, enzymatic structure probing, and NMR spectroscopy it is shown here that in the absence of viral replicase the hexanucleotide loop 5'C1AUAG5A3' of this RNA structure can adopt a pseudo trinucleotide loop conformation by transloop base pairing between C1 and G5. By means of in vitro replication assays using partially purified BMV RNA-dependent RNA polymerase (RdRp) it was found that other base pairs contribute to sg transcription, probably by stabilizing the formation of this pseudo triloop, which is proposed to be the primary element recognized by the viral replicase. The BMV pseudo triloop structure strongly resembles iron-responsive elements (IREs) in cellular messenger RNAs and may represent a general protein-binding motif. In addition, in vitro replication assays showed that the BMV sg hairpin is functionally equivalent to the minus-strand core promoter hairpin stem-loop C at the 3' end of BMV RNAs. Replacement of the sg hairpin by stem-loop C yielded increased sg promoter activity whereas replacement of stem-loop C by the sg hairpin resulted in reduced minus-strand promoter activity. We conclude that AUA triloops represent the common motif in the BMV sg and minus-strand promoters required for recruitment of the viral replicase. Additional sequence elements of the minus-strand promoter are proposed to direct the RdRp to the initiation site at the 3' end of the genomic RNA.
机译:在植物病毒的Bromoviridae家族中,三核苷酸发夹环在RNA转录中起重要作用。最近,我们报道了Brome花叶病毒(BMV)亚基因组(sg)转录取决于异常三环发夹的形成。通过天然凝胶电泳,酶促结构探测和NMR光谱表明,在不存在病毒复制酶的情况下,该RNA结构的六核苷酸环5'C1AUAG5A3'可以通过C1和G5之间的反式环碱基配对采用伪三核苷酸环构象。通过使用部分纯化的BMV RNA依赖性RNA聚合酶(RdRp)进行的体外复制测定,发现其他碱基对可能会稳定该假三环的形成,从而有助于sg转录,这被认为是公认的主要元素通过病毒复制酶。 BMV假三环结构非常类似于细胞信使RNA中的铁反应元件(IREs),可能代表一般的蛋白质结合基序。此外,体外复制试验表明BMV sg发夹在功能上等同于BMV RNA 3'端的负链核心启动子发夹茎环C。用茎环C替代sg发夹可增加sg启动子活性,而用sg发夹替代茎环C则可减少负链启动子活性。我们得出结论,AUA三环代表BMV sg和负链启动子中募集病毒复制酶所需的共同基序。提出了负链启动子的其他序列元件,以将RdRp引导至基因组RNA 3'末端的起始位点。

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