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Depurination within the intergenic region of Brome mosaic virus RNA3 inhibits viral replication in vitro and in vivo

机译:Brome花叶病毒RNA3的基因间区域内的嘌呤抑制在体外和体内抑制病毒复制

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摘要

Pokeweed antiviral protein (PAP) is a glycosidase of plant origin that has been shown to depurinate some viral RNAs in vitro. We have demonstrated previously that treatment of Brome mosaic virus (BMV) RNAs with PAP inhibited their translation in a cell-free system and decreased their accumulation in barley protoplasts. In the current study, we map the depurination sites on BMV RNA3 and describe the mechanism by which replication of the viral RNA is inhibited by depurination. Specifically, we demonstrate that the viral replicase exhibited reduced affinity for depurinated positive-strand RNA3 compared with intact RNA3, resulting in less negative-strand product. This decrease was due to depurination within the intergenic region of RNA3, between ORF3 and 4, and distant from the 3′ terminal core promoter required for initiation of negative-strand RNA synthesis. Depurination within the intergenic region alone inhibited the binding of the replicase to full-length RNA3, whereas depurination outside the intergenic region permitted the replicase to initiate negative-strand synthesis; however, elongation of the RNA product was stalled at the abasic nucleotide. These results support a role of the intergenic region in controlling negative-strand RNA synthesis and contribute new insight into the effect of depurination by PAP on BMV replication.
机译:商陆抗病毒蛋白(PAP)是一种植物来源的糖苷酶,已显示可在体外使一些病毒RNA脱嘌呤。以前我们已经证明,用PAP处理Brome花叶病毒(BMV)RNA会抑制其在无细胞系统中的翻译并减少其在大麦原生质体中的积累。在当前的研究中,我们绘制了BMV RNA3上的纯化位点,并描述了通过纯化来抑制病毒RNA复制的机制。具体来说,我们证明病毒复制酶与完整的RNA3相比,对嘌呤化的正链RNA3的亲和力降低,从而导致负链产物更少。该减少是由于在ORF3和4之间的RNA3的基因间区域内的去嘌呤化,并且与起始负链RNA合成所需的3'末端核心启动子相距很远。仅基因间区域内的嘌呤化抑制复制酶与全长RNA3的结合,而基因间区域外的嘌呤化使复制酶启动负链合成。然而,RNA产物的延伸停滞在无碱基的核苷酸上。这些结果支持了基因间区域在控制负链RNA合成中的作用,并为PAP对BMV复制的去纯化作用提供了新的见解。

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