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首页> 外文期刊>Molecular and Cellular Biology >Yeast Lsm1p-7p/Pat1p Deadenylation-Dependent mRNA-Decapping Factors Are Required for Brome Mosaic Virus Genomic RNA Translation
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Yeast Lsm1p-7p/Pat1p Deadenylation-Dependent mRNA-Decapping Factors Are Required for Brome Mosaic Virus Genomic RNA Translation

机译:酵母Lsm1p-7p / Pat1p腺苷酸依赖性mRNA决定因素是凤梨花叶病毒基因组RNA翻译所必需的

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Previously, we used the ability of the higher eukaryotic positive-strand RNA virus brome mosaic virus (BMV) to replicate in yeast to show that the yeast LSM1 gene is required for recruiting BMV RNA from translation to replication. Here we extend this observation to show that Lsm1p and other components of the Lsm1p-Lsm7p/Pat1p deadenylation-dependent mRNA decapping complex were also required for translating BMV RNAs. Inhibition of BMV RNA translation was selective, with no effect on general cellular translation. We show that viral genomic RNAs suitable for RNA replication were already distinguished from nonreplication templates at translation, well before RNA recruitment to replication. Among mRNA turnover pathways, only factors specific for deadenylated mRNA decapping were required for BMV RNA translation. Dependence on these factors was not only a consequence of the nonpolyadenylated nature of BMV RNAs but also involved the combined effects of the viral 5′ and 3′ noncoding regions and 2a polymerase open reading frame. High-resolution sucrose density gradient analysis showed that, while mutating factors in the Lsm1p-7p/Pat1p complex completely inhibited viral RNA translation, the levels of viral RNA associated with ribosomes were only slightly reduced in mutant yeast. This polysome association was further verified by using a conditional allele of essential translation initiation factor PRT1, which markedly decreased polysome association of viral genomic RNA in the presence or absence of an LSM7 mutation. Together, these results show that a defective Lsm1p-7p/Pat1p complex inhibits BMV RNA translation primarily by stalling or slowing the elongation of ribosomes along the viral open reading frame. Thus, factors in the Lsm1p-7p/Pat1p complex function not only in mRNA decapping but also in translation, and both translation and recruitment of BMV RNAs to viral RNA replication are regulated by a cell pathway that transfers mRNAs from translation to degradation.
机译:以前,我们利用高等真核正链RNA病毒溴化花叶病毒(BMV)在酵母中复制的能力,表明酵母 LSM1 基因是从翻译到复制募集BMV RNA所必需的。在这里,我们扩展此观察结果,以显示Lsm1p和Lsm1p-Lsm7p / Pat1p腺苷酸依赖性mRNA脱盖复合物的其他组件也需要翻译BMV RNA。 BMV RNA翻译的抑制作用是选择性的,对一般细胞翻译没有影响。我们显示适用于RNA复制的病毒基因组RNA已在翻译时与非复制模板区分开,很早就从RNA募集到复制。在mRNA周转途径中,BMV RNA翻译仅需要特定于腺苷酸化mRNA脱盖的因子。对这些因素的依赖不仅是BMV RNA的非聚腺苷酸性质的结果,而且还涉及病毒5'和3'非编码区以及2a聚合酶开放阅读框的联合作用。高分辨率蔗糖密度梯度分析表明,尽管Lsm1p-7p / Pat1p复合物中的突变因子完全抑制了病毒RNA的翻译,但与核糖体相关的病毒RNA的水平在突变酵母中仅略有降低。通过使用必需翻译起始因子 PRT1 的条件等位基因进一步验证了这种多核糖体缔合,该条件等位基因在存在或不存在 LSM7 突变的情况下,明显降低了病毒基因组RNA的多核糖体缔合。 。总之,这些结果表明,有缺陷的Lsm1p-7p / Pat1p复合体主要通过阻止或减慢沿病毒开放阅读框的核糖体的延伸来抑制BMV RNA翻译。因此,Lsm1p-7p / Pat1p复合体中的因子不仅在mRNA脱盖中起作用,而且在翻译中起作用,并且BMV RNA的翻译和募集到病毒RNA复制中都受到将mRNA从翻译转移到降解的细胞途径的调节。

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