UP1结构域对于HnRNP A1对PRRSV-2复制的促进作用至关重要。

Huiyuan Jing, Ying Liu, Zhifeng Peng, Erzhen Duan, Jie Liu, Yujin Lv, Yanting Sun, Wang Dong, Xianghui Li, Jinhe Wang, Sufang Cao, Haihua Wang, Yan Zhang, Huawei Li
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引用次数: 0

摘要

猪繁殖与呼吸综合征病毒(PRRSV)感染会导致繁殖衰竭和呼吸窘迫,并对养猪业造成严重威胁,因为它的持续和快速出现。了解病毒与宿主的相互作用可以促进抗prrsv药物的开发。HnRNP A1是一种与RNA代谢过程相关的高表达蛋白,在多种病毒的繁殖周期中发挥着多种作用。然而,猪HnRNP A1在PRRSV-2复制中的作用尚不清楚。在此,HnRNP A1被鉴定为PRRSV-2的核衣壳(N)结合蛋白。猪HnRNP A1的过表达促进了病毒RNA和病毒蛋白的表达,对应于病毒滴度的增强。而UP1结构域的缺失则消除了HnRNP a1介导的PRRSV-2复制增强。此外,HnRNP a1沉默证实了其对猪肺泡巨噬细胞(PAMs) PRRSV-2感染的前病毒作用。RNA pull-down和RNA免疫沉淀验证证实,UP1结构域对PRRSV-2阴性RNA中富鸟嘌呤序列(GRS)的识别很重要。最终,补充TMPyP4(一种G4配体)可以有效地刺激GRS释放HnRNP A1,从而限制PRRSV-2的复制。总之,这些发现有助于了解HnRNP A1加速PRRSV-2复制的机制,并促进抗病毒药物的设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The UP1 domain is essential for the facilitation effect of HnRNP A1 on PRRSV-2 replication.

Porcine reproductive and respiratory syndrome virus (PRRSV) infection causes reproductive failure and respiratory distress and is a serious threat to the swine industry, given its continuous and rapid emergence. The knowledge of viral-host interaction could facilitate anti-PRRSV drug development. HnRNP A1 is an abundantly expressed protein which associates with RNA metabolic processes and plays multifarious roles during the reproduction cycle of multiple viruses. However, the function of porcine HnRNP A1 in PRRSV-2 replication is still unknown. Herein, HnRNP A1 was identified as a nucleocapsid (N)-binding protein for PRRSV-2. Overexpression of porcine HnRNP A1 promoted the expression of viral RNA, and viral proteins, corresponding to enhanced virus titers. While deletion of the UP1 domain abolished the HnRNP A1-mediated enhancement of PRRSV-2 replication. In addition, HnRNP A1-silencing confirmed its pro-viral effect on PRRSV-2 infectivity in porcine alveolar macrophages (PAMs). RNA pull-down and RNA immunoprecipitation verification confirmed that the UP1 domain is important for the recognition of the guanine-rich sequence (GRS) in PRRSV-2 negative RNA. Eventually, supplementation with TMPyP4, a G4 ligand, efficiently provokes the release of HnRNP A1 from GRS, thereby limiting PRRSV-2 replication. Together, these findings help to inform the mechanism by which HnRNP A1 accelerates PRRSV-2 replication, and facilitate antiviral drug design.

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