首页> 美国卫生研究院文献>Molecular Plant Pathology >AtHVA22a a plant‐specific homologue of Reep/DP1/Yop1 family proteins is involved in turnip mosaic virus propagation
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AtHVA22a a plant‐specific homologue of Reep/DP1/Yop1 family proteins is involved in turnip mosaic virus propagation

机译:AtHVA22a 是 Reep/DP1/Yop1 家族蛋白的植物特异性同源物参与萝卜花叶病毒的繁殖

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摘要

The movement of potyviruses, the largest genus of single‐stranded, positive‐sense RNA viruses responsible for serious diseases in crops, is very complex. As potyviruses developed strategies to hijack the host secretory pathway and plasmodesmata (PD) for their transport, the goal of this study was to identify membrane and/or PD‐proteins that interact with the 6K2 protein, a potyviral protein involved in replication and cell‐to‐cell movement of turnip mosaic virus (TuMV). Using split‐ubiquitin membrane yeast two‐hybrid assays, we screened an Arabidopsis cDNA library for interactors of TuMV6K2. We isolated AtHVA22a (Hordeum vulgare abscisic acid responsive gene 22), which belongs to a multigenic family of transmembrane proteins, homologous to Receptor expression‐enhancing protein (Reep)/Deleted in polyposis (DP1)/Yop1 family proteins in animal and yeast. HVA22/DP1/Yop1 family genes are widely distributed in eukaryotes, but the role of HVA22 proteins in plants is still not well known, although proteomics analysis of PD fractions purified from Arabidopsis suspension cells showed that AtHVA22a is highly enriched in a PD proteome. We confirmed the interaction between TuMV6K2 and AtHVA22a in yeast, as well as in planta by using bimolecular fluorescence complementation and showed that TuMV6K2/AtHVA22a interaction occurs at the level of the viral replication compartment during TuMV infection. Finally, we showed that the propagation of TuMV is increased when AtHVA22a is overexpressed in planta but slowed down upon mutagenesis of AtHVA22a by CRISPR‐Cas9. Altogether, our results indicate that AtHVA22a plays an agonistic effect on TuMV propagation and that the C‐terminal tail of the protein is important in this process.
机译:potyvirus 是导致农作物严重疾病的最大单链正义 RNA 病毒属,其移动非常复杂。随着马铃薯病毒开发出劫持宿主分泌途径和胞间连丝 (PD) 进行运输的策略,本研究的目标是鉴定与 6K2 蛋白相互作用的膜和/或 PD 蛋白,6K2 蛋白是一种参与萝卜花叶病毒 (TuMV) 复制和细胞间移动的马铃薯病毒蛋白。使用分裂泛素膜酵母双杂交测定,我们筛选了拟南芥 cDNA 文库的 TuMV6K2 相互作用物。我们分离了 AtHVA22a (Hordeum vulgare 脱落酸反应基因 22),它属于跨膜蛋白的多基因家族,与动物和酵母中的受体表达增强蛋白 (Reep)/息肉病中缺失 (DP1)/Yop1 家族蛋白同源。HVA22/DP1/Yop1 家族基因广泛分布在真核生物中,但 HVA22 蛋白在植物中的作用仍不为人知,尽管对从拟南芥悬浮细胞中纯化的 PD 组分的蛋白质组学分析表明 AtHVA22a 在 PD 蛋白质组中高度富集。我们通过使用双分子荧光互补证实了酵母中 TuMV6K2 和 AtHVA22a 之间的相互作用,以及植物中的作用,并表明 TuMV6K2/AtHVA22a 相互作用发生在 TuMV 感染期间病毒复制室的水平。最后,我们表明,当 AtHVA22a 在植物中过表达时,TuMV 的传播增加,但在 CRISPR-Cas9 诱变 AtHVA22a 时减慢。总而言之,我们的结果表明 AtHVA22a 对 TuMV 传播起激动作用,并且蛋白质的 C 末端尾部在此过程中很重要。

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