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淋巴细胞性脉络丛脑膜炎病毒需要细胞 COPI 和 AP-4 复合物来有效产生病毒粒子。

Lymphocytic choriomeningitis arenavirus requires cellular COPI and AP-4 complexes for efficient virion production.

机构信息

School of Molecular and Cellular Biology, Faculty of Biological Sciences, University of Leeds, Leeds, United Kingdom.

Astbury Centre for Structural Molecular Biology, University of Leeds, Leeds, United Kingdom.

出版信息

J Virol. 2024 Mar 19;98(3):e0200623. doi: 10.1128/jvi.02006-23. Epub 2024 Feb 9.

Abstract

UNLABELLED

Lymphocytic choriomeningitis virus (LCMV) is a bisegmented negative-sense RNA virus classified within the family of the order. LCMV is associated with fatal disease in immunocompromized populations, and as the prototypical arenavirus, acts as a model for the many serious human pathogens within this group. Here, we examined the dependence of LCMV multiplication on cellular trafficking components using a recombinant LCMV expressing enhanced green fluorescent protein in conjunction with a curated siRNA library. The screen revealed a requirement for subunits of both the coat protein 1 (COPI) coatomer and adapter protein 4 (AP-4) complexes. By rescuing a recombinant LCMV harboring a FLAG-tagged glycoprotein (GP-1) envelope spike (rLCMV-GP1-FLAG), we showed infection resulted in marked co-localization of individual COPI and AP-4 components with both LCMV nucleoprotein (NP) and GP-1, consistent with their involvement in viral processes. To further investigate the role of both COPI and AP-4 complexes during LCMV infection, we utilized the ARF-I inhibitor brefeldin A (BFA) that prevents complex formation. Within a single 12-h cycle of virus multiplication, BFA pre-treatment caused no significant change in LCMV-specific RNA synthesis, alongside no significant change in LCMV NP expression, as measured by BFA time-of-addition experiments. In contrast, BFA addition resulted in a significant drop in released virus titers, approaching 50-fold over the same 12-h period, rising to over 600-fold over 24 h. Taken together, these findings suggest COPI and AP-4 complexes are important host cell factors required for the formation and release of infectious LCMV.

IMPORTANCE

Arenaviruses are rodent-borne, segmented, negative-sense RNA viruses, with several members responsible for fatal human disease, with the prototypic member lymphocytic choriomeningitis virus (LCMV) being under-recognised as a pathogen capable of inflicting neurological infections with fatal outcome. A detailed understanding of how arenaviruses subvert host cell processes to complete their multiplication cycle is incomplete. Here, using a combination of gene ablation and pharmacological inhibition techniques, we showed that host cellular COPI and AP-4 complexes, with native roles in cellular vesicular transport, were required for efficient LCMV growth. We further showed these complexes acted on late stages of the multiplication cycle, post-gene expression, with a significant impact on infectious virus egress. Collectively, our findings improve the understanding of arenaviruses host-pathogen interactions and reveal critical cellular trafficking pathways required during infection.

摘要

未注明

淋巴细胞性脉络丛脑膜炎病毒(LCMV)是一种双片段负义 RNA 病毒,属于 科的 目。LCMV 与免疫功能低下人群的致命疾病有关,并且作为原型沙粒病毒,它是该组中许多严重人类病原体的模型。在这里,我们使用表达增强型绿色荧光蛋白的重组 LCMV 与经过精心筛选的 siRNA 文库一起,检查了 LCMV 增殖对细胞运输成分的依赖性。该筛选揭示了包膜蛋白 1(COPI)外套体和衔接蛋白 4(AP-4)复合物的亚基都需要。通过挽救携带 FLAG 标签糖蛋白(GP-1)包膜刺突(rLCMV-GP1-FLAG)的重组 LCMV,我们表明感染导致单个 COPI 和 AP-4 成分与 LCMV 核蛋白(NP)和 GP-1 的明显共定位,这与它们在病毒过程中的参与一致。为了进一步研究 COPI 和 AP-4 复合物在 LCMV 感染过程中的作用,我们利用 ARF-I 抑制剂布雷菲德菌素 A(BFA),该抑制剂可阻止复合物的形成。在病毒复制的单个 12 小时周期中,BFA 预处理对 LCMV 特异性 RNA 合成没有明显影响,同时通过 BFA 添加时间实验,LCMV NP 表达也没有明显变化。相比之下,BFA 添加导致释放的病毒滴度显着下降,在相同的 12 小时期间接近 50 倍,在 24 小时内超过 600 倍。总之,这些发现表明 COPI 和 AP-4 复合物是形成和释放感染性 LCMV 所必需的重要宿主细胞因子。

重要性

沙粒病毒是由啮齿动物传播的、分段的、负义 RNA 病毒,其中几个成员可导致致命的人类疾病,原型成员淋巴细胞性脉络丛脑膜炎病毒(LCMV)是一种被低估的病原体,可引起致命的神经感染。沙粒病毒如何颠覆宿主细胞过程以完成其复制周期尚不完全清楚。在这里,我们使用基因缺失和药理抑制技术的组合表明,宿主细胞 COPI 和 AP-4 复合物在细胞小泡运输中具有天然作用,是有效 LCMV 生长所必需的。我们进一步表明,这些复合物在基因表达后,在复制周期的晚期起作用,对感染性病毒的出芽有重大影响。总的来说,我们的研究结果提高了对沙粒病毒宿主-病原体相互作用的理解,并揭示了感染过程中所需的关键细胞运输途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a7a2/10949467/d8f870586c94/jvi.02006-23.f001.jpg

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