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The Multifunctional Long-Distance Movement Protein of Pea Enation Mosaic Virus 2 Protects Viral and Host Transcripts from Nonsense-Mediated Decay

机译:<斜斜体>豌豆陈类病毒病毒2的多功能长距离运动蛋白保护病毒和宿主转录物免受废话介导的衰变

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The nonsense-mediated decay (NMD) pathway presents a challenge for RNA viruses with termination codons that precede extended 3′ untranslated regions (UTRs). The umbravirus Pea enation mosaic virus 2 (PEMV2) is a nonsegmented, positive-sense RNA virus with an unusually long 3′ UTR that is susceptible to NMD. To establish a systemic infection, the PEMV2 long-distance movement protein p26 was previously shown to both stabilize viral RNAs and bind them for transport through the plant’s vascular system. The current study demonstrated that p26 protects both viral and nonviral messenger RNAs from NMD. Although p26 localizes to both the cytoplasm and nucleolus, p26 exerts its anti-NMD effects exclusively in the cytoplasm independently of long-distance movement. Using a transcriptome-wide approach in the model plant Nicotiana benthamiana , p26 protected a subset of cellular NMD target transcripts, particularly those containing long, structured, GC-rich 3′ UTRs. Furthermore, transcriptome sequencing (RNA-seq) revealed that the NMD pathway is highly dysfunctional during PEMV2 infection, with 1,820 (48%) of NMD targets increasing in abundance. Widespread changes in the host transcriptome are common during plant RNA virus infections, and these results suggest that, in at least some instances, virus-mediated NMD inhibition may be a major contributing factor.
机译:废话介导的衰变(NMD)途径对RNA病毒具有终止密码子的RNA病毒呈现,其在延伸3'未转换的区域(UTR)之前。伞形豆荚诱发马赛克病毒2(PEMV2)是一种非分段的正感RNA病毒,其具有易受NMD的异常长3'UTR。为了建立全身感染,PEMV2长距离运动蛋白P26以前显示为稳定病毒RNA并将其粘合通过植物血管系统的运输。目前的研究表明,P26保护来自NMD的病毒和非血管信使RNA。尽管P26定位于细胞质和核仁,但P26专门施加其抗NMD效应,其独立于细胞质,独立于长距离运动。使用在模型植物尼古利亚纳·宾南亚的转录组宽的方法,P26保护了细胞NMD靶转录物的子集,特别是那些含有长,结构的GC的3'UTR的细胞。此外,转录组测序(RNA-SEQ)揭示了NMD途径在PEMV2感染期间具有高度功能障碍,其中1,820(48%)的NMD靶标​​在丰度上增加。在植物RNA病毒感染期间,宿主转录组的广泛变化是常见的,这些结果表明,在至少一些情况下,病毒介导的NMD抑制可能是主要的贡献因子。

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