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E3 连接酶 RAD18 介导的亨尼帕病毒基质蛋白泛素化促进其核质运输和病毒释放。

The E3 ligase RAD18-mediated ubiquitination of henipavirus matrix protein promotes its nuclear-cytoplasmic trafficking and viral egress.

作者信息

Jin Dongning, Zhang Linliang, Peng Cheng, He Mingbin, Wang Weiwei, Li Zhifei, Liu Cong, Du Jinhong, Zhou Jin, Yin Lei, Shan Chao, Qin Yali, Chen Mingzhou

机构信息

State Key Laboratory of Virology, College of Life Sciences, Wuhan University, Wuhan, People's Republic of China.

Shool of Life Sciences, Hubei University, Wuhan, People's Republic of China.

出版信息

Emerg Microbes Infect. 2025 Dec;14(1):2432344. doi: 10.1080/22221751.2024.2432344. Epub 2024 Dec 9.

Abstract

The nuclear-cytoplasmic trafficking of matrix proteins (M) is essential for henipavirus budding, with M protein ubiquitination playing a pivotal role in this dynamic process. Despite its importance, the intricacies of the M ubiquitination cascade have remained elusive. In this study, we elucidate a novel mechanism by which Nipah virus (NiV), a highly pathogenic henipavirus, utilizes a ubiquitination complex involving the E2 ubiquitin-conjugating enzyme RAD6A and the E3 ubiquitin ligase RAD18 to ubiquitinate the virus's M protein, thereby facilitating its nuclear-cytoplasmic trafficking. We demonstrate that RAD18 interacts with RAD6A, enabling the latter to supply ubiquitins for the RAD18-mediated transfer of ubiquitin to M through RAD18-M interactions. Specifically, M is ubiquitinated by the RAD6A-RAD18 complex at lysine (K) 258 through a K63-linked ubiquitination, a modification crucial for M's function. This ubiquitination drives M's relocation to the cytoplasm, directing it to plasma membranes for effective viral egress. Conversely, disrupting the RAD6A-RAD18-M axis, mutating RAD18's E3 ligase activity, or inhibiting RAD6A activity with TZ9 (a RAD6-ubiquitin thioester formation inhibitor) impairs M ubiquitination, resulting in defective nuclear export and budding of NiV. Significantly, live NiV and Hendra virus infection is attenuated in RAD18 knockout cells or in cells treated with TZ9, highlighting the critical physiological role of RAD6A-RAD18-mediated M ubiquitination in the henipavirus life cycle. Our findings not only reveal how NiV manipulates a nucleus-localized ubiquitination complex to promote virus's M protein ubiquitination and nuclear export, but also suggest that the small molecule inhibitor TZ9 could serve as a potential therapeutic against henipavirus infection.

摘要

基质蛋白(M)的核质转运对于亨尼帕病毒出芽至关重要,M蛋白泛素化在这一动态过程中起关键作用。尽管其重要性,但M泛素化级联反应的复杂性仍不清楚。在本研究中,我们阐明了一种新机制,即高致病性亨尼帕病毒尼帕病毒(NiV)利用一种涉及E2泛素结合酶RAD6A和E3泛素连接酶RAD18的泛素化复合物对病毒的M蛋白进行泛素化,从而促进其核质转运。我们证明RAD18与RAD6A相互作用,使后者能够通过RAD18-M相互作用为RAD18介导的泛素转移至M提供泛素。具体而言,M通过K63连接的泛素化在赖氨酸(K)258处被RAD6A-RAD18复合物泛素化,这种修饰对M的功能至关重要。这种泛素化促使M重新定位到细胞质,将其导向质膜以实现有效的病毒释放。相反,破坏RAD6A-RAD18-M轴、突变RAD18的E3连接酶活性或用TZ9(一种RAD6-泛素硫酯形成抑制剂)抑制RAD6A活性会损害M泛素化,导致NiV的核输出和出芽缺陷。值得注意的是,在RAD18基因敲除细胞或用TZ9处理的细胞中,活NiV和亨德拉病毒感染减弱,突出了RAD6A-RAD18介导的M泛素化在亨尼帕病毒生命周期中的关键生理作用。我们的发现不仅揭示了NiV如何操纵一种定位于细胞核的泛素化复合物来促进病毒M蛋白的泛素化和核输出,还表明小分子抑制剂TZ9可作为一种潜在的抗亨尼帕病毒感染疗法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3f15/11632932/71705bb525ff/TEMI_A_2432344_F0001_OC.jpg

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