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Seneca Valley Virus 3Cpro Cleaves PABPC1 to Promote Viral Replication

机译:塞内卡山谷病毒3Cpro删除PABPC1促进病毒复制

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摘要

Seneca Valley Virus (SVV) is an oncolytic virus of the Picornaviridae family, which has emerged in recent years. The impact of SVV on host cell translation remains unknown. Here, we showed, for the first time, that SVV infection cleaved poly(A) binding protein cytoplasmic 1 (PABPC1). In SVV-infected cells, 50 kDa of the N terminal cleaved band and 25 kDa of the C terminal cleaved band of PABPC1 were detected. Further study showed that the viral protease, 3C induced the cleavage of PABPC1 by its protease activity. The SVV strains with inactive point mutants of 3C (H48A, C160A or H48A/C160A) can not be rescued by reverse genetics, suggesting that sites 48 and 160 of 3C were essential for SVV replication. SVV 3C induced the cleavage of PABPC1 at residue 437. A detailed data analysis showed that SVV infection and the overexpression of 3C decreased the protein synthesis rates. The protease activity of 3C was essential for inhibiting the protein synthesis. Our results also indicated that PABPC1 inhibited SVV replication. These data reveal a novel antagonistic mechanism and pathogenesis mediated by SVV and highlight the importance of 3C on SVV replication.
机译:Seneca Valley病毒(SVV)是Picornaviridae家族的溶瘤病毒,这种病毒已在最近几年出现。 SVV对宿主细胞翻译的影响仍然未知。在这里,我们首次显示SVV感染切割了poly(A)结合蛋白胞质1(PABPC1)。在被SVV感染的细胞中,检测到PABPC1的N末端切割带为50kDa,C末端切割带为25kDa。进一步的研究表明,病毒蛋白酶3C通过其蛋白酶活性诱导了PABPC1的裂解。带有3C无效点突变体(H48A,C160A或H48A / C160A)的SVV菌株不能通过逆向遗传挽救,这表明3C的48和160位对于SVV复制至关重要。 SVV 3C诱导了残基437处PABPC1的裂解。详细的数据分析表明,SVV感染和3C的过表达降低了蛋白质合成速率。 3C的蛋白酶活性对于抑制蛋白质合成至关重要。我们的结果还表明,PABPC1抑制了SVV复制。这些数据揭示了由SVV介导的新型拮抗机制和发病机理,并突出了3C对SVV复制的重要性。

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