转录因子NbTFIISL通过线粒体定位促进竹花叶病毒积累的作用

IF 4.8 1区 农林科学 Q1 PLANT SCIENCES
Ying-Ping Huang, Jun-Wei Zhang, Ching-Ing Huang, I-Hsuan Chen, Ying-Wen Huang, Chi-Ping Cheng, Ching-Hsiu Tsai
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引用次数: 0

摘要

转录因子NbTFIISL是本烟中tfiis样蛋白,在促进竹花叶病毒(BaMV)感染中起关键作用。BaMV感染显著下调NbTFIISL的表达,接种后7天转录水平降低至38%。病毒诱导的NbTFIISL基因沉默破坏了BaMV的积累,将外壳蛋白水平降低至45%,导致gfp标记的感染灶变小。基于原生质体的分析进一步证实了它参与病毒复制,在nbtfiis沉默的细胞中,BaMV RNA水平下降到12%。亚细胞定位分析表明,NbTFIISL主要是核的,由一个经典的核定位信号(NLS)和一个LW基序引导。突变体构建缺乏这些信号-NbTFIISL/ΔNLS和NbTFIISL/ΔNLS/ΔLW-lost核靶向,而是定位于线粒体,双突变体形成明显的斑点状聚体。过表达实验揭示了NbTFIISL的双重作用:核定位的野生型蛋白诱导坏死,而线粒体定位的NbTFIISL/ΔNLS显著增强BaMV积累(~148%)。相反,NbTFIISL/ΔNLS/ΔLW突变体中的蛋白质聚集部分地破坏了这种增强。酵母双杂交实验揭示了NbTFIISL和BaMV蛋白之间的特异性相互作用,包括复制酶RdRp结构域和运动蛋白TGBp1。这些发现表明NbTFIISL通过线粒体重定位和与病毒蛋白的相互作用促进BaMV复制,而其核存在可能引发坏死,潜在地限制病毒传播。这项研究突出了NbTFIISL的多功能作用,并促进了我们对宿主因子在植物与病毒相互作用和病毒发病机制中的理解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Role of the Transcription Factor NbTFIISL in Enhancing Bamboo Mosaic Virus Accumulation via Mitochondria Localisation.

The transcription factor NbTFIISL, a TFIIS-like protein in Nicotiana benthamiana, plays a critical role in facilitating bamboo mosaic virus (BaMV) infection. BaMV infections significantly downregulate NbTFIISL expression, with transcript levels reduced to 38% by 7 days post-inoculation. Virus-induced gene silencing of NbTFIISL impaired BaMV accumulation, reducing coat protein levels to ~45% and leading to smaller GFP-labelled infection foci. Protoplast-based assays further confirmed its involvement in viral replication, with BaMV RNA levels dropping to 12% in NbTFIISL-silenced cells. Subcellular localisation analysis revealed that NbTFIISL is primarily nuclear, directed by a classical nuclear localisation signal (NLS) and an LW motif. Mutant constructs lacking these signals-NbTFIISL/ΔNLS and NbTFIISL/ΔNLS/ΔLW-lost nuclear targeting and instead localised to mitochondria, with the double mutant forming distinct speckle-like aggregates. Overexpression experiments uncovered a dual role for NbTFIISL: nuclear-localised wild-type protein induced necrosis, whereas mitochondria-localised NbTFIISL/ΔNLS significantly enhanced BaMV accumulation (~148%). In contrast, protein aggregation in the NbTFIISL/ΔNLS/ΔLW mutant partially impaired this enhancement. Yeast two-hybrid assays revealed specific interactions between NbTFIISL and BaMV proteins, including the replicase RdRp domain and movement protein TGBp1. These findings suggest that NbTFIISL promotes BaMV replication through mitochondrial relocalisation and interaction with viral proteins, whereas its nuclear presence may trigger necrosis, potentially limiting viral spread. This study highlights the multifunctional roles of NbTFIISL and advances our understanding of host factors in plant-virus interactions and viral pathogenesis.

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来源期刊
Molecular plant pathology
Molecular plant pathology 生物-植物科学
CiteScore
9.40
自引率
4.10%
发文量
120
审稿时长
6-12 weeks
期刊介绍: Molecular Plant Pathology is now an open access journal. Authors pay an article processing charge to publish in the journal and all articles will be freely available to anyone. BSPP members will be granted a 20% discount on article charges. The Editorial focus and policy of the journal has not be changed and the editorial team will continue to apply the same rigorous standards of peer review and acceptance criteria.
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