State Key Laboratory for Animal Disease Control and Prevention, National Foot-and-Mouth Disease Reference Laboratory, Lanzhou Veterinary Research Institute, Chinese Academy of Agricultural Sciences , Lanzhou, Gansu, China.
State Key Laboratory for Animal Disease Control and Prevention, College of Veterinary Medicine, Lanzhou University , Lanzhou, Gansu, China.
J Virol. 2023 Aug 31;97(8):e0018123. doi: 10.1128/jvi.00181-23. Epub 2023 Aug 11.
Vacuolar protein sorting 28 (Vps28), a component of the ESCRT-I (endosomal sorting complex required for transport I), plays an important role in the pathogen life cycle. Here, we investigated the reciprocal regulation between Vps28 and the foot-and-mouth disease virus (FMDV). Overexpression of Vps28 decreased FMDV replication. On the contrary, the knockdown of Vps28 increased viral replication. Subsequently, the mechanistic study showed that Vps28 destabilized the replication complex (RC) by associating with 3A rather than 2C protein. In addition, Vps28 targeted FMDV VP0, VP1, and VP3 for degradation to inhibit viral replication. To counteract this, FMDV utilized tactics to restrict Vps28 to promote viral replication. FMDV degraded Vps28 mainly through the ubiquitin-proteasome pathway. Additional data demonstrated that 2B and 3A proteins recruited E3 ubiquitin ligase tripartite motif-containing protein 21 to degrade Vps28 at Lys58 and Lys25, respectively, and FMDV 3C degraded Vps28 through autophagy and its protease activity. Meantime, the 3C-mediated Vps28 degradation principally alleviated the ability to inhibit viral propagation. Intriguingly, we also demonstrated that the N-terminal and C-terminal domains of Vps28 were responsible for the suppression of FMDV replication, which suggested the elaborated counteraction between FMDV and Vps28. Collectively, our results first investigate the role of ESCRTs in host defense against picornavirus and unveil underlying strategies utilized by FMDV to evade degradation machinery for triumphant propagation. IMPORTANCE ESCRT machinery plays positive roles in virus entry, replication, and budding. However, little has been reported on its negative regulation effects during viral infection. Here, we uncovered the novel roles of ESCRT-I subunit Vps28 on FMDV replication. The data indicated that Vps28 destabilized the RC and impaired viral structural proteins VP0, VP1, and VP3 to inhibit viral replication. To counteract this, FMDV hijacked intracellular protein degradation pathways to downregulate Vps28 expression and thus promoted viral replication. Our findings provide insights into how ESCRT regulates pathogen life cycles and elucidate additional information regarding FMDV counteraction of host antiviral activity.
液泡分选蛋白 28(Vps28)是内体分选复合物必需的运输 I(ESCRT-I)的一个组成部分,在病原体生命周期中发挥着重要作用。在这里,我们研究了 Vps28 与口蹄疫病毒(FMDV)之间的相互调节作用。Vps28 的过表达降低了 FMDV 的复制。相反,Vps28 的敲低增加了病毒的复制。随后,机制研究表明,Vps28 通过与 3A 而不是 2C 蛋白结合来破坏复制复合物(RC)。此外,Vps28 靶向 FMDV VP0、VP1 和 VP3 进行降解以抑制病毒复制。为了对抗这一点,FMDV 利用策略将 Vps28 限制在促进病毒复制上。FMDV 通过泛素-蛋白酶体途径主要降解 Vps28。额外的数据表明,2B 和 3A 蛋白分别招募三肽重复含 E3 泛素连接酶 21 以在 Lys58 和 Lys25 处降解 Vps28,并且 FMDV 3C 通过自噬及其蛋白酶活性降解 Vps28。同时,3C 介导的 Vps28 降解主要减轻了抑制病毒增殖的能力。有趣的是,我们还证明了 Vps28 的 N 端和 C 端结构域负责抑制 FMDV 复制,这表明 FMDV 和 Vps28 之间存在着精细的相互作用。总的来说,我们的研究结果首次调查了 ESCRTs 在宿主防御小核糖核酸病毒中的作用,并揭示了 FMDV 逃避降解机制以成功繁殖的潜在策略。
重要性 ESCRT 机制在病毒进入、复制和出芽中发挥积极作用。然而,在病毒感染过程中,关于其负调控作用的报道很少。在这里,我们揭示了 ESCRT-I 亚基 Vps28 在 FMDV 复制中的新作用。数据表明,Vps28 破坏了 RC,并损害了病毒结构蛋白 VP0、VP1 和 VP3,从而抑制了病毒复制。为了对抗这一点,FMDV 劫持了细胞内蛋白降解途径来下调 Vps28 的表达,从而促进了病毒的复制。我们的研究结果提供了关于 ESCRT 如何调节病原体生命周期的新见解,并阐明了关于 FMDV 对抗宿主抗病毒活性的更多信息。