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A conserved hairpin structure in Alfamovirus and Bromovirus subgenomic promoters is required for efficient RNA synthesis in vitro.

机译:Alfamovirus和Bromovirus亚基因组启动子中的保守发夹结构是体外有效RNA合成所必需的。

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摘要

The coat protein gene in RNA 3 of alfalfa mosaic virus (AMV; genus Alfamovirus, family Bromoviridae) is translated from the subgenomic RNA 4. Analysis of the subgenomic promoter (sgp) in minus-strand RNA 3 showed that a sequence of 37 nt upstream of the RNA 4 start site (nt +1) was sufficient for full sgp activity in an in vitro assay with the purified viral RNA-dependent RNA-polymerase (RdRp). The sequence of nt -6 to -29 could be folded into a potential hairpin structure with a loop represented by nt -16, -17, and -18, and a bulge involving nt -23. By introducing mutations that disrupted base pairing and compensatory mutations that restored base pairing, it was shown that base pairing in the top half of the putative stem (between the loop and bulge) was essential for sgp activity, whereas base pairing in the bottom half of the stem was less stringently required. Deletion of the bulged residue A-23 or mutation of this residue into a C strongly reduced sgp activity, but mutation of A-23 into U or G had little effect on sgp activity. Mutation of loop residues A-16 and A-17 affected sgp activity, whereas mutation of U-18 did not. Using RNA templates corresponding to the sgp of brome mosaic virus (BMV; genus Bromovirus, family Bromoviridae) and purified BMV RdRp, evidence was obtained indicating that also in BMV RNA a triloop hairpin structure is required for sgp activity.
机译:苜蓿花叶病毒(AMV;苜蓿病毒属,Bromoviridae家族)RNA 3中的外壳蛋白基因是从亚基因组RNA 4中翻译得到的。分析负链RNA 3中的亚基因组启动子(sgp)显示上游37 nt序列在纯化的病毒依赖RNA的RNA聚合酶(RdRp)进行的体外测定中,RNA 4起始位点(nt +1)的片段足以实现全部sgp活性。核苷酸-6至-29的序列可以折叠成潜在的发夹结构,具有由核苷酸-16,-17和-18表示的环和涉及核苷酸-23的凸起。通过引入破坏碱基配对的突变和恢复碱基配对的补偿突变,可以证明推定茎的上半部分((和凸出之间)的碱基配对对于sgp活性是必不可少的,而下半部分的碱基配对则对sgp活性至关重要。茎的要求不那么严格。删除突出的残基A-23或将该残基突变为C会大大降低sgp活性,但是A-23突变为U或G对sgp活性几乎没有影响。环残基A-16和A-17的突变会影响sgp活性,而U-18的突变则不会。使用与溴化花叶病毒(BMV;溴病毒属,Bromoviridae家族)的sgp对应的RNA模板和纯化的BMV RdRp,获得的证据表明,在BMV RNA中,sgp活性也需要三环发夹结构。

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