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3'-Terminal RNA secondary structures are important for accumulation of tomato bushy stunt virus D1 RNAs

机译:3'-末端RNA二级结构对于番茄浓密特技病毒D1 RNA的积累很重要

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The plus-strand RNA genome of tomato bushy stunt virus (TBSV) contains a 351-nucleotide (nt)-long 3'-untranslated region. We investigated the role of the 3'-proximal 130 nt of this sequence in viral RNA accumulation within the context of a TBSV defective interfering (DI) RNA. Sequence comparisons between different tombusviruses revealed that the 3' portion of the 130-nt sequence is highly conserved and deletion analysis confirmed that this segment is required for accumulation of DI RNAs in protoplasts. Computer-aided sequence analysis and in vitro solution structure probing indicated that the conserved sequence consists of three stem-loop (SL) structures (5'-SL3-SL2-SL1-3'). The existence of SLs 1 and 3 was also supported by comparative secondary structure analysis of sequenced tombusivrus genomes. Formation of the stem regions in all three SLs was found to be very important, and modification fo the terminal loop sequences of SL1 and SL2, but not SL3, decreased DI RNA accumulation in vivo. For SL3, alterations to an internal loop resulted in significantly reduced DI RNA levels. Collectively, these data indicate that all three SLs are functionally relevant and contribute substantially to DI RNA accumulation. In addition, secondary structure analysis of other tombusivrus replicaons and related virus genera revealed that a TBSV satellite RNA and members of the closely related genus Aureusvirus (family Tombusviridae) share fundamental elements of this general structural arrangement. Thus, this secondary structure model appears to extend beyond tombusivrus genomes. These conserved 3'-terminal RNA elements likely function in vivo by promoting and/or regulating minus-strand synthesis.
机译:番茄丛状特技病毒(TBSV)的正链RNA基因组包含一个351个核苷酸(nt)长的3'非翻译区。我们在TBSV缺陷干扰(DI)RNA的背景下调查了此序列的3'-近130 nt在病毒RNA积累中的作用。不同线粒体病毒之间的序列比较显示130-nt序列的3'部分是高度保守的,缺失分析证实了该片段是原生质体中DI RNA积累所必需的。计算机辅助序列分析和体外溶液结构探测表明,保守序列由三个茎环(SL)结构(5'-SL3-SL2-SL1-3')组成。 SLs 1和3的存在也得到了测序的弓形虫基因组的比较二级结构分析的支持。发现在所有三个SL中茎区域的形成非常重要,并且对SL1和SL2而不是SL3的末端环序列的修饰降低了体内DI RNA的积累。对于SL3,内部环的改变导致DI RNA水平大大降低。总体而言,这些数据表明所有三个SL都在功能上相关,并且对DI RNA的积累有重要贡献。此外,对其他肺炎病毒复制子和相关病毒属的二级结构分析表明,TBSV卫星RNA和密切相关的金黄色葡萄球菌属(Tombusviridae家族)的成员具有这种总体结构安排的基本要素。因此,这种二级结构模型似乎扩展到了弓形病毒基因组之外。这些保守的3'末端RNA元件可能通过促进和/或调节负链合成而在体内起作用。

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