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Interaction of TIA-1/TIAR with West Nile and dengue virus products in infected cells interferes with stress granule formation and processing body assembly

机译:TIA-1 / TIAR与西尼罗河和登革热病毒产物在感染细胞中的相互作用会干扰应激颗粒的形成和加工体的组装

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摘要

The West Nile virus minus-strand 3′ terminal stem loop (SL) RNA was previously shown to bind specifically to cellular stress granule (SG) components, T cell intracellular antigen-1 (TIA-1) and the related protein TIAR. In vitro TIAR binding was 10 times more efficient than TIA-1. The 3′(−)SL functions as the promoter for genomic RNA synthesis. Colocalization of TIAR and TIA-1 with the viral replication complex components dsRNA and NS3 was observed in the perinuclear regions of West Nile virus- and dengue virus-infected cells. The kinetics of accumulation of TIAR in the perinuclear region was similar to those of genomic RNA synthesis. In contrast, relocation of TIA-1 to the perinuclear region began only after maximal levels of RNA synthesis had been achieved, except when TIAR was absent. Virus infection did not induce SGs and progressive resistance to SG induction by arsenite developed coincident with TIAR relocation. A progressive decrease in the number of processing bodies was secondarily observed in infected cells. These data suggest that the interaction of TIAR with viral components facilitates flavivirus genome RNA synthesis and inhibits SG formation, which prevents the shutoff of host translation.
机译:先前显示,西尼罗河病毒负链3'末端茎环(SL)RNA与细胞应激颗粒(SG)成分,T细胞细胞内抗原1(TIA-1)和相关蛋白TIAR特异性结合。体外TIAR结合的效率是TIA-1的10倍。 3'(-)SL充当基因组RNA合成的启动子。在西尼罗河病毒和登革热病毒感染的细胞的核周区域中观察到TIAR和TIA-1与病毒复制复合物组分dsRNA和NS3的共定位。 TIAR在核周区域中积累的动力学与基因组RNA合成的相似。相反,只有在达到最大水平的RNA合成后,TIA-1才能重新定位到核周区域,除非没有TIAR。病毒感染不会诱导SGs,并且与TIAR迁移同时发生的亚砷酸盐对SG诱导的抗性逐渐增强。其次在感染细胞中观察到加工体数量的逐渐减少。这些数据表明TIAR与病毒成分的相互作用促进了黄病毒基因组RNA的合成并抑制了SG的形成,从而阻止了宿主翻译的关闭。

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