首页> 外文期刊>The Journal of General Virology: A Federation of European Miorobiological Societies Journal >Aquareovirus NS31 protein serves as a specific inducer for host heat shock 70-kDa protein
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Aquareovirus NS31 protein serves as a specific inducer for host heat shock 70-kDa protein

机译:Aquareovirus NS31 蛋白是宿主热休克 70-kDa 蛋白的特异性诱导剂

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摘要

Elevation of heat-shock protein expression, known as cellular heat-shock responses, occurs during infection of many viruses. which is involved in viral replication through various mechanisms. Herein, transcriptome analysis revealed that over-expression of non-structural protein NS31 of grass carp reovirus (GCRV) in grass carp Ctenopharyngodon idellus kidney (CIK) cells specifically induced expression of heat-shock response (HSR) genes HSP30 and HSP70. We further found that, among the HSR genes, only HSP70 protein were shown to be efficiently induced in fish cells following NS31 over-expression or GCRV infection. Employing a luciferase assay, we were able to show that the promoter of the HSP70 gene can be specifically activated by NS31. In addition, over-expressing HSP70 in grass carp CIK cells resulted in enhanced replication efficiency of GCRV, and an inhibitor for HSP70 resulted in the inhibition of GCRV replication, indicating that HSP70 should serve as a pro-viral factor. We also found that NS31 could activate HSP70 expression in cells of other vertebrate animals. Similar inducing effect on HSP70 expression was demonstrated for NS31-homologue proteins of other aquareoviruses including American grass carp reovirus (AGCRV) and GRCV (green river chinook virus). All these results indicated NS31 proteins in the Aquareovirus genus should play a key role for up-regulating specific HSP70 gene during viral replication.
机译:热休克蛋白表达的升高,称为细胞热休克反应,发生在许多病毒感染期间。它通过各种机制参与病毒复制。转录组分析显示,草鱼呼肠孤病毒(GCRV)非结构蛋白NS31在草鱼Ctenopharyngodon idellus肾(CIK)细胞中特异性诱导热休克反应(HSR)基因HSP30和HSP70的表达。我们进一步发现,在HSR基因中,只有HSP70蛋白在NS31过表达或GCRV感染后被有效诱导在鱼细胞中。采用荧光素酶测定,我们能够证明 HSP70 基因的启动子可以被 NS31 特异性激活。此外,HSP70在草鱼CIK细胞中过表达导致GCRV的复制效率提高,HSP70抑制剂导致GCRV复制受到抑制,表明HSP70应作为促病毒因子。我们还发现NS31可以激活其他脊椎动物细胞中HSP70的表达。对其他水生病毒(包括美洲草鱼呼肠孤病毒 (AGCRV) 和 GRCV(绿河奇努克病毒)的 NS31 同源蛋白具有类似的诱导作用,对 HSP70 表达也有类似的诱导作用。所有这些结果表明,水瓶病毒属的NS31蛋白在病毒复制过程中对特异性HSP70基因的上调起着关键作用。

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