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A mutant viral RNA promoter with an altered conformation retains efficient recognition by a viral RNA replicase through a solution-exposed adenine.

机译:具有改变的构象的突变病毒RNA启动子保留了通过溶液暴露的腺嘌呤的病毒RNA复制酶的有效识别。

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Brome mosaic virus (BMV) genomic minus-strand RNA synthesis requires an RNA motif named stem-loop C (SLC). An NMR-derived solution structure of SLC was reported by Kim et al. (Nature Struc Biol, 2000, 7:415-423) to contain three replicase-recognition elements, the most important of which is a stable stem with a terminal trinucleotide loop, 5'AUA3'. The 5'-most adenine of the triloop is rigidly fixed to the stem helix by interactions that require the 3'-most adenine, which is called a clamped adenine motif. However, a change of the 3' adenine to guanine (5'AUG3') unexpectedly directed RNA synthesis at 130% of wild type (Kim et al., Nature Struc Biol, 2000, 7:415-423). To understand how RNA with the AUG mutation maintains interaction with the BMV replicase, we used NMR and other biophysical techniques to elucidate the solution conformation of a 13-nt RNA containing the AUG triloop, called S-AUG. We found that S-AUG has a drastically different loop conformation in comparison to the wild type, as evidenced by an unusual C x G loop-closing base pair. Despite the conformational change, S-AUG maintains a solution-exposed adenine similar to the clamped adenine motif found in the wild type. Biochemical studies of the 5'AUG3' loop with various substitutions in the context of the whole SLC construct confirm that the clamped adenine motif exists in S-AUG remains a primary structural feature required for RNA synthesis by the BMV replicase.
机译:凤梨花叶病毒(BMV)基因组负链RNA合成需要一个名为茎环C(SLC)的RNA基序。 Kim等报道了SLC的NMR衍生溶液结构。 (Nature Struc Biol,2000,7:415-423)包含三个复制酶识别元件,其中最重要的是具有末端三核苷酸环5'AUA3'的稳定茎。三环的5'-最末端腺嘌呤通过需要3'-最末端腺嘌呤的相互作用而被牢固地固定在茎螺旋上,这称为夹紧的腺嘌呤基序。然而,将3'腺嘌呤变为鸟嘌呤(5'AUG3')出乎意料地指导了130%野生型的RNA合成(Kim等人,Nature Struc Biol,2000,7:415-423)。为了了解具有AUG突变的RNA如何保持与BMV复制酶的相互作用,我们使用了NMR和其他生物物理技术来阐明含有AUG三环的13-nt RNA(称为S-AUG)的溶液构象。我们发现,与野生型相比,S-AUG具有完全不同的环构象,这是由一个不寻常的C x G闭环碱基对所证明的。尽管构象发生了变化,但S-AUG仍保持了溶液暴露的腺嘌呤,类似于在野生型中发现的被夹紧的腺嘌呤基序。在整个SLC构建体中对5'AUG3'环进行各种取代的生化研究证实,在S-AUG中存在被夹紧的腺嘌呤基序仍然是BMV复制酶合成RNA所需的主要结构特征。

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