College of Veterinary Medicine, Yangzhou University, Yangzhou, China.
Jiangsu Co-Innovation Center for Prevention and Control of Important Animal Infectious Diseases and Zoonoses, Yangzhou University, Yangzhou, China.
J Virol. 2024 Aug 20;98(8):e0022324. doi: 10.1128/jvi.00223-24. Epub 2024 Jul 24.
Porcine circovirus type 3 (PCV3) is closely associated with various diseases, such as the porcine dermatitis, nephropathy syndrome, and multisystemic clinicopathological diseases. PCV3-associated diseases are increasingly recognized as severe diseases in the global swine industry. Ring finger protein 2 (RNF2), an E3 ubiquitin ligase exclusively located in the nucleus, contributes to various biological processes. This ligase interacts with the PCV3 Cap. However, its role in PCV3 replication remains unclear. This study confirmed that the nuclear localization signal domain of the Cap and the RNF2 N-terminal RING domain facilitate the interaction between the Cap and RNF2. Furthermore, RNF2 promoted the binding of K48-linked polyubiquitination chains to lysine at positions 139 and 140 (K139 and K140) of the PCV3 Cap, thereby degrading the Cap. RNF2 knockdown and overexpression increased or decreased PCV3 replication, respectively. Moreover, the RING domain-deleted RNF2 mutant eliminated the RNF2-induced degradation of the PCV3 Cap and RNF2-mediated inhibition of viral replication. This indicates that both processes were associated with its E3 ligase activity. Our findings demonstrate that RNF2 can interact with and degrade the PCV3 Cap via its N-terminal RING domain in a ubiquitination-dependent manner, thereby inhibiting PCV3 replication.IMPORTANCEPorcine circovirus type 3 is a recently described pathogen that is prevalent worldwide, causing substantial economic losses to the swine industry. However, the mechanisms through which host proteins regulate its replication remain unclear. Here, we demonstrate that ring finger protein 2 inhibits porcine circovirus type 3 replication by interacting with and degrading the Cap of this pathogen in a ubiquitination-dependent manner, requiring its N-terminal RING domain. Ring finger protein 2-mediated degradation of the Cap relies on its E3 ligase activity and the simultaneous existence of K139 and K140 within the Cap. These findings reveal the mechanism by which this protein interacts with and degrades the Cap to inhibit porcine circovirus type 3 replication. This consequently provides novel insights into porcine circovirus type 3 pathogenesis and facilitates the development of preventative measures against this pathogen.
猪圆环病毒 3 型(PCV3)与多种疾病密切相关,例如猪皮炎、肾病综合征和多系统临床病理疾病。PCV3 相关疾病在全球养猪业中日益被认为是严重疾病。环指蛋白 2(RNF2)是一种专门位于核内的 E3 泛素连接酶,参与多种生物学过程。这种连接酶与 PCV3 Cap 相互作用。然而,其在 PCV3 复制中的作用尚不清楚。本研究证实,Cap 的核定位信号结构域和 RNF2 N 端 RING 结构域促进了 Cap 和 RNF2 之间的相互作用。此外,RNF2 促进了 K48 连接的多泛素化链与 PCV3 Cap 第 139 和 140 位赖氨酸(K139 和 K140)的结合,从而降解 Cap。RNF2 的敲低和过表达分别增加和减少了 PCV3 的复制。此外,RING 结构域缺失的 RNF2 突变体消除了 RNF2 诱导的 PCV3 Cap 降解和 RNF2 介导的病毒复制抑制。这表明这两个过程都与其 E3 连接酶活性有关。我们的研究结果表明,RNF2 可以通过其 N 端 RING 结构域与 PCV3 Cap 相互作用并通过泛素化依赖性方式降解它,从而抑制 PCV3 复制。
重要性猪圆环病毒 3 型是一种新描述的病原体,在全球范围内广泛流行,给养猪业造成了巨大的经济损失。然而,宿主蛋白调节其复制的机制尚不清楚。在这里,我们证明环指蛋白 2 通过与该病原体的 Cap 相互作用并依赖泛素化将其降解,从而抑制猪圆环病毒 3 型的复制。这种 Cap 的降解依赖于其 E3 连接酶活性和 Cap 内同时存在的 K139 和 K140。RNF2 介导的 Cap 降解依赖于其 E3 连接酶活性和 Cap 内同时存在的 K139 和 K140。这些发现揭示了该蛋白与 Cap 相互作用并将其降解以抑制猪圆环病毒 3 型复制的机制。这为猪圆环病毒 3 型的发病机制提供了新的见解,并促进了针对该病原体的预防措施的发展。