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Structures and exoribonuclease activity fonctions in arenavirus and coronavirus

机译:Arenavirus和Coronavirus的结构和放电核酸酶活性丧失

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RNA viruses encode dedicated protein machinery required through the viral life cycle. Some enzymatic activities are generally associated with RNA viruses such as RNA- or DNA-dependent RNA polymerases, RNA helicases or proteases. Some viral enzyme activities are however unique to some viral families. This is the case of two 3'-5' exoribonuclease activities identified in arenavirus and coronavirus proteomes. Arenaviruses have a segmented ambisense single stranded RNA genome of negative polarity while coronaviruses have a positive single-stranded genomic RNA. Although both enzymes belong to the same exo(ribo)nuclease superfamily, available data indicate that they are involved in very different pathways. Indeed, the exoribonuclease activity carried by the arenavirus nucleoprotein seems to counteract the innate immunity antiviral response while the exoribonuclease activity carried by the coronavirus nsp14 protein is likely involved in a unique RNA repair mechanism. In this review, we present our current knowledge about these two viral enzymes and their functions in the viral life cycle.
机译:RNA病毒通过病毒生命周期编码所需的专用蛋白质机械。一些酶活性通常与RNA病毒如RNA或DNA依赖性RNA聚合酶,RNA螺旋酶或蛋白酶有关。然而,一些病毒族的病毒酶活性是独一无二的。这是在arenavirus和冠状病毒蛋白质组中鉴定的两种3'-5'放电酶活性的情况。胰岛素病毒具有阴性极性的分段的植状体单链RNA基因组,而冠状病毒具有正链基因组RNA。虽然两种酶属于同一EXO(RIBO)核酸酶超家族,但可用的数据表明它们涉及非常不同的途径。实际上,由胰岛核蛋白核蛋白蛋白携带的高级核酸酶活性似乎抵消了先天免疫抗病毒反应,而Coronavirus NSP14蛋白的放电酶活性可能参与独特的RNA修复机制。在这篇综述中,我们目前的关于这两种病毒酶的知识及其在病毒生命周期中的功能。

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