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Brome mosaic virus RNA replication protein 1a dramatically increases in vivo stability but not translation of viral genomic RNA3

机译:Brome花叶病毒RNA复制蛋白1a大大提高了体内稳定性但没有病毒基因组RNA3的翻译

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摘要

Brome mosaic virus (BMV), a positive-strand RNA virus in the alphavirus-like superfamily, encodes two RNA replication proteins: 1a, which contains a helicase-like domain and a domain implicated in RNA capping, and 2a, which contains a polymerase-like domain. To further explore their functions, we expressed 1a and 2a individually and together in yeast also expressing replicatable transcripts of BMV genomic RNA3. Complementing prior results that 1a and 2a are required jointly for positive-strand RNA synthesis, both also were required for negative-strand RNA synthesis. Nevertheless, in the absence of 2a, 1a expression increased the accumulation of DNA-derived RNA3 transcripts 8-fold. Increased accumulation was specific for RNA3: none of a diverse set of yeast mRNAs tested showed increased accumulation in the presence of 1a. Increased RNA3 accumulation was not due to increased DNA transcription, but to a 20- to 40-fold increase in the in vivo half-life of RNA3 from 5–10 min in the absence of 1a to more than 3 hr in the presence of 1a. Although (1a+2a)-dependent RNA replication selectively amplified the natural viral 5′ end from among multiple transcription starts of DNA-derived RNA3 transcripts, 1a-induced stabilization affected all RNA3 transcripts, without specificity for the precise viral 5′ end. Increased RNA3 accumulation did not increase expression of a directly translatable, 5′-proximal gene in RNA3, implying that 1a-induced stabilization blocked rather than facilitated RNA3 translation. These and other results suggest that the striking, 1a-induced stabilization of RNA3 may reflect an interaction involved in recruiting viral RNA templates into RNA replication while diverting them from the competing processes of translation and degradation.
机译:Brome花叶病毒(BMV)是一种类似于alphavirus的超家族中的正链RNA病毒,它编码两种RNA复制蛋白:1a,其包含解旋酶样结构域和一个涉及RNA封端的结构域; 2a,其包含聚合酶。类域。为了进一步探索其功能,我们分别在酵母中表达了1a和2a并一起表达了BMV基因组RNA3的可复制转录本。与先前的结果相辅相成,正链RNA合成共同需要1a和2a,负链RNA合成也都需要1a和2a。但是,在没有2a的情况下,1a表达使DNA衍生的RNA3转录物的积累增加了8倍。增加的积累对RNA3具有特异性:在1a存在下,测试的多种酵母mRNA均未显示出增加的积累。 RNA3积累的增加不是由于DNA转录的增加,而是RNA3的体内半衰期从不存在1a的5-10分钟增加到存在1a的3小时以上的20至40倍。 。尽管(1a + 2a)依赖性RNA复制从DNA衍生的RNA3转录物的多个转录起点中选择性扩增了天然病毒5'末端,但1a诱导的稳定化影响了所有RNA3转录物,而对精确的病毒5'末端没有特异性。 RNA3积累的增加不会增加RNA3中可直接翻译的5'-近端基因的表达,这意味着1a诱导的稳定作用被阻断而不是促进RNA3翻译。这些和其他结果表明,惊人的1a诱导的RNA3稳定化可能反映了将病毒RNA模板募集到RNA复制中所涉及的相互作用,同时使它们脱离了竞争性的翻译和降解过程。

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