萝卜花叶病毒对拟南芥的适应涉及 VPg 与宿主蛋白质组相互作用的重构

IF 5.5 2区 医学 Q1 VIROLOGY
Virus Evolution Pub Date : 2024-07-16 DOI:10.1093/ve/veae055
José L Carrasco, Silvia Ambrós, Pablo A Gutiérrez, Santiago F Elena
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引用次数: 0

摘要

病毒感染的结果取决于宿主生理机能与病毒之间复杂的相互作用,并通过许多蛋白质之间的相互作用来介导。在之前的一项研究中,我们利用高通量酵母双杂交(HT-Y2H)鉴定了拟南芥中与芜菁花叶病毒(TuMV)基因组编码的蛋白质结合的蛋白质。此外,在防御相关基因或前导基因发生突变的植物中进行TuMV品系进化实验后,在进化病毒中观察到的大多数突变都影响了VPg cistron。在这些突变中,D113G 是一个在不同植物基因型的许多品系中被选择的趋同突变,包括具有系统获得性抗性组成型表达的 cpr5-2。相比之下,突变 R118H 专门出现在影响茉莉酸信号转导的 jin1 突变体中。我们利用 HT-Y2H 系统分析了这两个突变对 VPg 与植物蛋白相互作用的影响。有趣的是,这两个突变都严重影响了 VPg 与翻译起始因子 eIF(iso)4E 的相互作用,而 eIF(iso)4E 是壶状病毒感染的关键互作因子。此外,突变 D113G(而不是 R118H)对与 RHD1(一种参与调节 DNA 去甲基化的锌指同源转录因子)的相互作用产生了不利影响。我们的研究结果表明,RHD1 能增强植物对 TuMV 感染的耐受性。我们还在广泛的病毒进化背景下讨论了我们的发现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Adaptation of turnip mosaic virus to Arabidopsis thaliana involves rewiring of VPg - host proteome interactions
The outcome of a viral infection depends on a complex interplay between the host physiology and the virus, mediated through numerous protein-protein interactions. In a previous study, we used high-throughput yeast two-hybrid (HT-Y2H) to identify proteins in Arabidopsis thaliana that bind to the proteins encoded by the turnip mosaic virus (TuMV) genome. Furthermore, after experimental evolution of TuMV lineages in plants with mutations in defense-related or proviral genes, most mutations observed in the evolved viruses affected the VPg cistron. Among these mutations, D113G was a convergent mutation selected in many lineages across different plant genotypes, including cpr5-2 with constitutive expression of systemic acquired resistance. In contrast, mutation R118H specifically emerged in the jin1 mutant with affected jasmonate signaling. Using the HT-Y2H system, we analyzed the impact of these two mutations on VPg’s interaction with plant proteins. Interestingly, both mutations severely compromised the interaction of VPg with the translation initiation factor eIF(iso)4E, a crucial interactor for potyvirus infection. Moreover, mutation D113G, but not R118H, adversely affected the interaction with RHD1, a zinc-finger homeodomain transcription factor involved in regulating DNA demethylation. Our results suggest that RHD1 enhances plant tolerance to TuMV infection. We also discuss our findings in a broad virus evolution context.
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来源期刊
Virus Evolution
Virus Evolution Immunology and Microbiology-Microbiology
CiteScore
10.50
自引率
5.70%
发文量
108
审稿时长
14 weeks
期刊介绍: Virus Evolution is a new Open Access journal focusing on the long-term evolution of viruses, viruses as a model system for studying evolutionary processes, viral molecular epidemiology and environmental virology. The aim of the journal is to provide a forum for original research papers, reviews, commentaries and a venue for in-depth discussion on the topics relevant to virus evolution.
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