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首页> 外文期刊>Scientific reports. >Nucleocapsid Interacts with NPM1 and Protects it from Proteolytic Cleavage, Enhancing Cell Survival, and is Involved in PEDV Growth
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Nucleocapsid Interacts with NPM1 and Protects it from Proteolytic Cleavage, Enhancing Cell Survival, and is Involved in PEDV Growth

机译:Nucleocapsid与NPM1相互作用并保护其免受蛋白水解切割,提高细胞存活率,并参与PEDV的生长

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Porcine epidemic diarrhea virus (PEDV) replicates in the cytoplasm of infected cells, but its nucleocapsid (N) protein localizes specifically to the nucleolus. The mechanism of nuclear translocation, and whether N protein associates with particular nucleolar components, is unknown. In this study, we confirm that a nucleolar phosphoprotein nucleophosmin (NPM1) interacts and co-localizes with the N protein in the nucleolus. In vitro binding studies indicated that aa 148–294 of N and aa 118–188 of NPM1 were required for binding. Interestingly, N protein importation into the nucleolus is independent of the ability of NPM1 to shuttle between the nucleus and the cytoplasm. Furthermore, overexpression of NPM1 promoted PEDV growth, while knockdown of NPM1 suppressed PEDV growth. In addition, binding of N protein to NPM1 protects it from proteolytic degradation by caspase-3, leading to increased cell survival. Taken together, our studies demonstrate a specific interaction of the N protein with the host cell protein NPM1 in the nucleolus. The results suggest potential linkages among viral strategies for the regulation of cell survival activities, possibly through an interaction of N protein with NPM1 which prevents its proteolytic cleavage and enhances cell survival, thus ultimately promoting the replication of PEDV.
机译:猪流行性腹泻病毒(PEDV)在感染细胞的细胞质中复制,但其核衣壳(N)蛋白专门定位于核仁。核转运的机制,以及N蛋白是否与特定的核仁成分相关,是未知的。在这项研究中,我们确认核仁磷蛋白核磷素(NPM1)与核仁中的N蛋白相互作用并共定位。体外结合研究表明,结合需要N氨基酸148-294和NPM1氨基酸118-188。有趣的是,N蛋白导入核仁的过程与NPM1在核和细胞质之间穿梭的能力无关。此外,NPM1的过表达促进了PEDV的增长,而敲低NPM1则抑制了PEDV的增长。此外,N蛋白与NPM1的结合可保护其免受caspase-3的蛋白水解降解,从而提高细胞存活率。两者合计,我们的研究表明核仁中N蛋白与宿主细胞蛋白NPM1的特异性相互作用。结果表明,病毒策略之间可能存在联系,以调节细胞存活活性,可能是通过N蛋白与NPM1的相互作用来阻止其蛋白水解切割并增强细胞存活,从而最终促进PEDV的复制。

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