Division of Plant Sciences, National Institute of Agrobiological Sciences, Tsukuba, Ibaraki, Japan.
PLoS Pathog. 2011 Dec;7(12):e1002409. doi: 10.1371/journal.ppat.1002409. Epub 2011 Dec 8.
Tomato mosaic virus (ToMV), like other eukaryotic positive-strand RNA viruses, replicates its genomic RNA in replication complexes formed on intracellular membranes. Previous studies showed that a host seven-pass transmembrane protein TOM1 is necessary for efficient ToMV multiplication. Here, we show that a small GTP-binding protein ARL8, along with TOM1, is co-purified with a FLAG epitope-tagged ToMV 180K replication protein from solubilized membranes of ToMV-infected tobacco (Nicotiana tabacum) cells. When solubilized membranes of ToMV-infected tobacco cells that expressed FLAG-tagged ARL8 were subjected to immunopurification with anti-FLAG antibody, ToMV 130K and 180K replication proteins and TOM1 were co-purified and the purified fraction showed RNA-dependent RNA polymerase activity that transcribed ToMV RNA. From uninfected cells, TOM1 co-purified with FLAG-tagged ARL8 less efficiently, suggesting that a complex containing ToMV replication proteins, TOM1, and ARL8 are formed on membranes in infected cells. In Arabidopsis thaliana, ARL8 consists of four family members. Simultaneous mutations in two specific ARL8 genes completely inhibited tobamovirus multiplication. In an in vitro ToMV RNA translation-replication system, the lack of either TOM1 or ARL8 proteins inhibited the production of replicative-form RNA, indicating that TOM1 and ARL8 are required for efficient negative-strand RNA synthesis. When ToMV 130K protein was co-expressed with TOM1 and ARL8 in yeast, RNA 5'-capping activity was detected in the membrane fraction. This activity was undetectable or very weak when the 130K protein was expressed alone or with either TOM1 or ARL8. Taken together, these results suggest that TOM1 and ARL8 are components of ToMV RNA replication complexes and play crucial roles in a process toward activation of the replication proteins' RNA synthesizing and capping functions.
番茄花叶病毒(ToMV)与其他真核正链 RNA 病毒一样,在细胞内膜上形成的复制复合物中复制其基因组 RNA。先前的研究表明,一种宿主七跨膜蛋白 TOM1 是 ToMV 高效繁殖所必需的。在这里,我们表明,一种小 GTP 结合蛋白 ARL8,与 TOM1 一起,与从感染烟草(Nicotiana tabacum)细胞的 ToMV 感染细胞的溶解膜中纯化的 FLAG 表位标记的 ToMV 180K 复制蛋白共纯化。当用抗 FLAG 抗体对表达 FLAG 标记的 ARL8 的 ToMV 感染烟草细胞的溶解膜进行免疫纯化时,ToMV 130K 和 180K 复制蛋白和 TOM1 被共纯化,并且纯化的部分显示依赖 RNA 的 RNA 聚合酶活性,该活性转录 ToMV RNA。从未感染的细胞中,TOM1 与 FLAG 标记的 ARL8 的共纯化效率较低,这表明在感染细胞的膜上形成了包含 ToMV 复制蛋白、TOM1 和 ARL8 的复合物。在拟南芥中,ARL8 由四个家族成员组成。两个特定 ARL8 基因的同时突变完全抑制了烟草花叶病毒的繁殖。在体外 ToMV RNA 翻译-复制系统中,缺乏 TOM1 或 ARL8 蛋白抑制了复制型 RNA 的产生,表明 TOM1 和 ARL8 是有效负链 RNA 合成所必需的。当 ToMV 130K 蛋白与 TOM1 和 ARL8 在酵母中共表达时,在膜部分中检测到 RNA 5'-加帽活性。当 130K 蛋白单独表达或与 TOM1 或 ARL8 中的任何一个表达时,该活性无法检测到或非常弱。综上所述,这些结果表明,TOM1 和 ARL8 是 ToMV RNA 复制复合物的组成部分,并在激活复制蛋白的 RNA 合成和加帽功能的过程中发挥关键作用。