Department of Cell Biology and Molecular Genetics, University of Maryland College Park, College Park, MD 20742, USA.
Silvec Biologics, Rockville, MD 20850, USA.
Viruses. 2021 Apr 9;13(4):646. doi: 10.3390/v13040646.
We report the biological and structural characterization of umbravirus-like associated RNAs (ulaRNAs), a new category of coat-protein dependent subviral RNA replicons that infect plants. These RNAs encode an RNA-dependent RNA polymerase (RdRp) following a -1 ribosomal frameshift event, are 2.7-4.6 kb in length, and are related to umbraviruses, unlike similar RNA replicons that are related to tombusviruses. Three classes of ulaRNAs are proposed, with citrus yellow vein associated virus (CYVaV) placed in Class 2. With the exception of CYVaV, Class 2 and Class 3 ulaRNAs encode an additional open reading frame (ORF) with movement protein-like motifs made possible by additional sequences just past the RdRp termination codon. The full-length secondary structure of CYVaV was determined using Selective 2' Hydroxyl Acylation analyzed by Primer Extension (SHAPE) structure probing and phylogenic comparisons, which was used as a template for determining the putative structures of the other Class 2 ulaRNAs, revealing a number of distinctive structural features. The ribosome recoding sites of nearly all ulaRNAs, which differ significantly from those of umbraviruses, may exist in two conformations and are highly efficient. The 3' regions of Class 2 and Class 3 ulaRNAs have structural elements similar to those of nearly all umbraviruses, and all Class 2 ulaRNAs have a unique, conserved 3' cap-independent translation enhancer. CYVaV replicates independently in protoplasts, demonstrating that the reported sequence is full-length. Additionally, CYVaV contains a sequence in its 3' UTR that confers protection to nonsense mediated decay (NMD), thus likely obviating the need for umbravirus ORF3, a known suppressor of NMD. This initial characterization lays down a road map for future investigations into these novel virus-like RNAs.
我们报告了 Umbravirus-like associated RNAs(ulaRNAs)的生物学和结构特征,这是一类新的依赖外壳蛋白的亚病毒 RNA 复制子,能够感染植物。这些 RNA 通过 -1 核糖体移码事件编码 RNA 依赖性 RNA 聚合酶(RdRp),长度为 2.7-4.6kb,与 Umbraviruses 相关,而与类似的与 Tombusviruses 相关的 RNA 复制子不同。提出了三类 ulaRNAs,将柑橘黄脉伴随病毒(CYVaV)置于第二类。除了 CYVaV 之外,第二类和第三类 ulaRNAs 还编码一个额外的开放阅读框(ORF),其移动蛋白样基序是由 RdRp 终止密码子后面的额外序列产生的。使用选择性 2'羟乙酰基分析引物延伸(SHAPE)结构探测和系统发育比较来确定 CYVaV 的全长二级结构,该结构被用作确定其他第二类 ulaRNAs 的可能结构的模板,揭示了许多独特的结构特征。几乎所有 ulaRNAs 的核糖体重编码位点与 Umbraviruses 显著不同,可能存在两种构象,且效率很高。第二类和第三类 ulaRNAs 的 3' 区域具有与几乎所有 Umbraviruses 相似的结构元件,并且所有第二类 ulaRNAs 都具有独特的、保守的 3' 帽非依赖性翻译增强子。CYVaV 在原生质体中独立复制,证明报告的序列是全长的。此外,CYVaV 在其 3'UTR 中包含一个序列,赋予其对无意义介导的降解(NMD)的保护,因此可能不需要 Umbravirus ORF3,这是一种已知的 NMD 抑制剂。这项初步特征描述为研究这些新型病毒样 RNA 奠定了基础。