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The subgenomic promoter of brome mosaic virus folds into a stem-loop structure capped by a pseudo-triloop that is structurally similar to the triloop of the genomic promoter

机译:溴化花叶病毒的亚基因组启动子折叠成茎环结构,并被假三环封端,该假三环的结构与基因组启动子的三环相似

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摘要

In brome mosaic virus, both the replication of the genomic (+)-RNA strands and the transcription of the subgenomic RNA are carried out by the viral replicase. The production of (-)-RNA strands is dependent on the formation of an AUA triloop in the stem-loop C (SLC) hairpin in the 3'-untranslated region of the (+)-RNA strands. Two alternate hypotheses have been put forward for the mechanism of subgenomic RNA transcription. One posits that transcription commences by recognition of at least four key nucleotides in the subgenomic promoter by the replicase. The other posits that subgenomic transcription starts by binding of the replicase to a hairpin formed by the subgenomic promoter that resembles the minus strand promoter hairpin SLC. In this study, we have determined the three-dimensional structure of the subgenomic promoter hairpin using NMR spectroscopy. The data show that the hairpin is stable at 30 degrees C and that it forms a pseudo-triloop structure with a transloop base pair and a nucleotide completely excluded from the helix. The transloop base pair is capped by an AUA triloop that possesses an extremely well packed structure very similar to that of the AUA triloop of SLC, including the formation of a so-called clamped-adenine motif. The similarities of the NMR structures of the hairpins required for genomic RNA and subgenomic RNA synthesis show that the replicase recognizes structure rather than sequence-specific motifs in both promoters.
机译:在溴化花叶病毒中,基因组(+)-RNA链的复制和亚基因组RNA的转录均通过病毒复制酶进行。 (-)-RNA链的产生取决于(+)-RNA链3'-非翻译区中茎环C(SLC)发夹中AUA三环的形成。对于亚基因组RNA转录的机制,提出了两个备选假设。一个前提是转录是通过复制酶识别亚基因组启动子中的至少四个关键核苷酸而开始的。其他假定通过复制酶与由亚基因组启动子形成的发夹的结合开始亚基因组转录,所述亚基因组启动子类似于负链启动子发夹SLC。在这项研究中,我们使用NMR光谱法确定了亚基因组启动子发夹的三维结构。数据显示,发夹在30摄氏度时稳定,并且形成带有反式环碱基对和完全从螺旋中排除的核苷酸的假三环结构。跨环碱基对被一个AUA三环封端,该AUA三环的结构非常好,非常类似于SLC的AUA三环,包括所谓的“夹紧的腺嘌呤”基序的形成。基因组RNA和亚基因组RNA合成所需的发夹的NMR结构的相似性表明,复制酶在两个启动子中均识别结构而不是序列特异性基序。

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