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Efficient polyadenylation of Rous sarcoma virus RNA requires the negative regulator of splicing element

机译:劳斯肉瘤病毒RNA的高效聚腺苷酸化需要剪接元件的负调控子

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Rous sarcoma virus pre-mRNA contains an element known as the negative regulator of splicing (NRS) that acts to inhibit viral RNA splicing. The NRS binds serine/arginine-rich (SR) proteins, hnRNP H and the U1/U11 snRNPs, and appears to inhibit splicing by acting as a decoy 5′ splice site. Deletions within the gag gene that encompass the NRS also lead to increased read-through past the viral polyadenylation site, suggesting a role for the NRS in promoting polyadenylation. Using NRS-specific deletions and mutations, we show here that a polyadenylation stimulatory activity maps directly to the NRS and is most likely dependent upon SR proteins and U1 and/or U11 snRNP. hnRNP H does not appear to mediate splicing control or stimulate RSV polyadenylation, since viral RNAs containing hnRNP H-specific mutations were spliced and polyadenylated normally. However, the ability of hnRNP H mutations to suppress the read-through caused by an SR protein mutation suggests the potential for hnRNP H to antagonize polyadenylation. Interestingly, disruption of splicing control closely correlated with increased read-through, indicating that a functional NRS is necessary for efficient RSV polyadenylation rather than binding of an individual factor. We propose a model in which the NRS serves to enhance polyadenylation of RSV unspliced RNA in a process analogous to the stimulation of cellular pre-mRNA polyadenylation by splicing complexes.
机译:劳斯肉瘤病毒前mRNA包含一种称为负剪接调节器(NRS)的元件,可抑制病毒RNA剪接。 NRS与富含丝氨酸/精氨酸(SR)的蛋白hnRNP H和U1 / U11 snRNPs结合,并且似乎通过充当诱饵5'剪接位点来抑制剪接。包含NRS的gag基因内的缺失也导致通过病毒聚腺苷酸化位点的通读增加,这提示NRS在促进聚腺苷酸化中的作用。使用NRS特定的删除和突变,我们在这里显示,聚腺苷酸刺激活性直接映射到NRS,最有可能依赖于SR蛋白和U1和/或U11 snRNP。 hnRNP H似乎不介导剪接控制或刺激RSV聚腺苷酸化,因为含有hnRNP H特异性突变的病毒RNA已被剪接并正常聚腺苷酸化。但是,hnRNP H突变抑制由SR蛋白突变引起的通读的能力表明hnRNP H拮抗聚腺苷酸化的潜力。有趣的是,剪接控制的中断与增加的通读紧密相关,表明功能性NRS对于有效的RSV聚腺苷酸化而不是单个因子的结合是必需的。我们提出了一个模型,其中NRS用于增强RSV未剪接RNA的聚腺苷酸化过程,该过程类似于通过剪接复合物刺激细胞前mRNA聚腺苷酸化过程。

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