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非洲猪瘟病毒调节内质网应激-ATF6-钙轴以促进病毒复制。

African swine fever virus modulates the endoplasmic reticulum stress-ATF6-calcium axis to facilitate viral replication.

机构信息

State Key Laboratory for Animal Disease Prevention and Control, National African Swine Fever Para-Reference Laboratory, National High Containment Facilities for Animal Disease Control and Prevention, Harbin Veterinary Research Institute, Chinese Academy of Agricultural Sciences, Harbin, People's Republic of China.

Department of Preventive Veterinary Medicine, College of Veterinary Medicine, Northeast Agricultural University, Harbin, People's Republic of China.

出版信息

Emerg Microbes Infect. 2024 Dec;13(1):2399945. doi: 10.1080/22221751.2024.2399945. Epub 2024 Sep 27.

Abstract

African swine fever (ASF), caused by African swine fever virus (ASFV), is a devastating infectious disease of domestic pigs and wild boar, which threatens the global pig industry. Endoplasmic reticulum (ER) is a multifunctional signaling organelle in eukaryotic cells that is involved in protein synthesis, processing, posttranslational modification and quality control. As intracellular parasitic organisms, viruses have evolved several strategies to modulate ER functions to favor their life cycles. We have previously demonstrated that the differentially expressed genes associated with unfolded protein response (UPR), which represents a response to ER stress, are significantly enriched upon ASFV infection. However, the correlation between the ER stress or UPR and ASFV replication has not been illuminated yet. Here, we demonstrated that ASFV infection induces ER stress both in target cells and , and subsequently activates the activating transcription factor 6 (ATF6) branch of the UPR to facilitate viral replication. Mechanistically, ASFV infection disrupts intracellular calcium (Ca) homeostasis, while the ATF6 pathway facilitates ASFV replication by increasing the cytoplasmic Ca level. More specifically, we demonstrated that ASFV infection triggers ER-dependent Ca release the inositol triphosphate receptor (IP3R) channel. Notably, we showed that the ASFV B117L protein plays crucial roles in ER stress and the downstream activation of the ATF6 branch, as well as the disruption of Ca homeostasis. Taken together, our findings reveal for the first time that ASFV modulates the ER stress-ATF6-Ca axis to facilitate viral replication, which provides novel insights into the development of antiviral strategies for ASFV.

摘要

非洲猪瘟(ASF)由非洲猪瘟病毒(ASFV)引起,是一种严重危害家猪和野猪的传染病,威胁着全球的养猪业。内质网(ER)是真核细胞中一种多功能的信号细胞器,参与蛋白质的合成、加工、翻译后修饰和质量控制。作为细胞内寄生生物,病毒已经进化出几种策略来调节 ER 功能,以促进其生命周期。我们之前的研究表明,与未折叠蛋白反应(UPR)相关的差异表达基因在 ASFV 感染时显著富集,UPR 是 ER 应激的一种反应。然而,ER 应激或 UPR 与 ASFV 复制之间的相关性尚未阐明。在这里,我们证明 ASFV 感染不仅在靶细胞中,而且在感染细胞中诱导 ER 应激,随后激活 UPR 的激活转录因子 6(ATF6)分支,以促进病毒复制。在机制上,ASFV 感染破坏了细胞内钙(Ca)稳态,而 ATF6 途径通过增加细胞质 Ca 水平来促进 ASFV 复制。更具体地说,我们证明 ASFV 感染触发 ER 依赖性 Ca 释放通过肌醇三磷酸受体(IP3R)通道。值得注意的是,我们表明 ASFV B117L 蛋白在 ER 应激和 ATF6 分支的下游激活以及 Ca 稳态的破坏中起着关键作用。总之,我们的研究结果首次揭示了 ASFV 调节 ER 应激-ATF6-Ca 轴以促进病毒复制,这为开发针对 ASFV 的抗病毒策略提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5879/11441038/a0122f96ede7/TEMI_A_2399945_F0001_OC.jpg

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