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裂谷热病毒非结构蛋白2和核衣壳蛋白将G3BP1招募至病毒复制位点,但感染并未诱导应激颗粒的形成。

The SHFV nsp2 and nucleocapsid proteins recruit G3BP1 to sites of viral replication, but stress granules are not induced by the infection.

作者信息

Lavender Ayisha A, Solanke Oreoluwa, Tang Hsin-Yao, Peck Hannah E, Vanover Daryll, Santangelo Philip J, Brinton Margo A

机构信息

Department of Biology, Georgia State University, Atlanta, Georgia, USA.

Ellen and Ronald Caplan Cancer Center, The Wistar Institute, Philadelphia, Pennsylvania, USA.

出版信息

J Virol. 2025 Jun 23:e0079425. doi: 10.1128/jvi.00794-25.

Abstract

Stress granules (SGs) are dynamic, cytoplasmic foci that form in response to environmental stresses, including viral infections, and function to restore cellular homeostasis by regulating mRNA translation, storage, and decay. To inhibit SG formation and subvert their antiviral effects, viruses from diverse families sequester or cleave G3BP1, the key SG nucleating protein. We found that an infection with simian hemorrhagic fever virus (SHFV), a member of the family , does not induce the formation of SGs despite inducing phosphorylation of PKR and eIF2α. The SG proteins, G3BP1, G3BP2, TIA-1, Caprin-1, and USP10, but not the translation initiation proteins, eIF3A, eIF4G, and small ribosomal protein S6 (rpS6), were redistributed into foci located in the same intracellular region as the viral dsRNA foci. However, SGs could be induced in infected cells by exogenous inducers. LC-MS/MS analysis of the proteins co-immunoprecipitating with endogenous G3BP1 from SHFV-infected cell lysates detected multiple viral replication/transcription complex proteins. Interaction between G3BP1 and the nsp2 and N proteins of SHFV was observed in reciprocal co-immunoprecipitation assays, and colocalization was detected by IFA. A conserved FGAP motif in nsp2 and a FAEP motif in the N protein were shown to be required for interaction with G3BP1. We also detected G3BP cleavage products in the SHFV-infected cell lysates and hypothesize that cleavage is mediated by a viral protease. These findings suggest that SG formation is not induced by an SHFV infection due to recruitment of G3BP to sites of viral replication and cleavage of G3BP by viral proteins.IMPORTANCEEukaryotic cells shut down translation by assembling stress granules (SGs) in response to environmental stresses, including viral infections. Viruses require cellular translation machinery for protein synthesis and have developed mechanisms to subvert SG assembly. Simian hemorrhagic fever virus (SHFV), a simian arterivirus, causes asymptomatic infections in African cercopithecoid monkeys but fatal hemorrhagic fever disease in Asian macaques. Even though intracellular production of SHFV RNA activates the stress sensor, PKR, SGs are not induced. G3BP1, the main nucleating protein of SGs, is recruited to foci located near viral replication complexes through interaction with the viral proteins nsp2 and N. An FGAP motif in nsp2 and an FAEP motif in the N protein are required for interaction with G3BP1. Cleavage of G3BP1 was identified as an additional mechanism of viral counteraction of SG formation.

摘要

应激颗粒(SGs)是动态的细胞质聚集物,在包括病毒感染在内的环境应激反应中形成,并通过调节mRNA翻译、储存和降解来恢复细胞内稳态。为了抑制SG形成并颠覆其抗病毒作用,来自不同病毒家族的病毒会隔离或切割关键的SG成核蛋白G3BP1。我们发现,感染猴出血热病毒(SHFV,动脉炎病毒科的一个成员),尽管会诱导PKR和eIF2α磷酸化,但不会诱导SG形成。SG蛋白G3BP1、G3BP2、TIA-1、Caprin-1和USP10,而非翻译起始蛋白eIF3A、eIF4G和小核糖体蛋白S6(rpS6),会重新分布到与病毒双链RNA聚集物位于同一细胞内区域的聚集物中。然而,外源性诱导剂可在感染细胞中诱导SG形成。对来自SHFV感染细胞裂解物中与内源性G3BP1共免疫沉淀的蛋白质进行的液相色谱-串联质谱(LC-MS/MS)分析检测到多种病毒复制/转录复合体蛋白。在相互免疫沉淀试验中观察到G3BP1与SHFV的nsp2和N蛋白之间的相互作用,并通过免疫荧光分析(IFA)检测到共定位。结果表明,nsp2中保守的FGAP基序和N蛋白中的FAEP基序是与G3BP1相互作用所必需的。我们还在SHFV感染的细胞裂解物中检测到G3BP裂解产物,并推测裂解是由病毒蛋白酶介导的。这些发现表明,由于G3BP被招募到病毒复制位点以及G3BP被病毒蛋白切割,SHFV感染不会诱导SG形成。

重要性

真核细胞在包括病毒感染在内的环境应激反应中通过组装应激颗粒(SGs)来关闭翻译。病毒需要细胞翻译机制来进行蛋白质合成,并已开发出颠覆SG组装的机制。猴出血热病毒(SHFV)是一种猴动脉炎病毒,在非洲猕猴中引起无症状感染,但在亚洲猕猴中引起致命的出血热疾病。尽管SHFV RNA在细胞内的产生会激活应激传感器PKR,但不会诱导SG形成。SG的主要成核蛋白G3BP1通过与病毒蛋白nsp2和N相互作用,被招募到靠近病毒复制复合体的聚集物中。nsp2中的FGAP基序和N蛋白中的FAEP基序是与G3BP1相互作用所必需的。G3BP1的切割被确定为病毒对抗SG形成的另一种机制。

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