Department of Biological Sciences, Wayne State University, Detroit, MI 48202, USA.
Viruses. 2023 Apr 27;15(5):1070. doi: 10.3390/v15051070.
Upon viral entry, components of ND10 nuclear bodies converge with incoming DNA to repress viral expression. The infected cell protein 0 (ICP0) of herpes simplex virus 1 (HSV-1) contains a RING-type E3 ubiquitin ligase that targets the ND10 organizer, PML, for proteasomal degradation. Consequently, ND10 components are dispersed and viral genes are activated. Previously, we reported that ICP0 E3 differentiates two similar substrates, PML isoforms I and II, and demonstrated that SUMO-interaction has profound regulatory effects on PML II degradation. In the present study, we investigated elements that regulate the PML I degradation and found that: (i) two regions of ICP0 flanking the RING redundantly facilitate the degradation of PML I; (ii) downstream of the RING, the SUMO-interaction motif located at residues 362-364 (SIM) targets the SUMOylated PML I in the same manner as that of PML II; (iii) upstream of the RING, the N-terminal residues 1-83 mediate PML I degradation regardless of its SUMOylation status or subcellular localization; (iv) the reposition of residues 1-83 to downstream of the RING does not affect its function in PML I degradation; and (v) the deletion of 1-83 allows the resurgence of PML I and reformation of ND10-like structures late in HSV-1 infection. Taken together, we identified a novel substrate recognition specific for PML I, by which ICP0 E3 enforces a continuous PML I degradation throughout the infection to prevent the ND10 reformation.
病毒进入后,ND10 核体的成分与传入的 DNA 聚集在一起,抑制病毒表达。单纯疱疹病毒 1 (HSV-1) 的感染细胞蛋白 0 (ICP0) 含有一种 RING 型 E3 泛素连接酶,它靶向 ND10 组织者 PML,进行蛋白酶体降解。因此,ND10 成分被分散,病毒基因被激活。之前,我们报道 ICP0 E3 区分两种相似的底物,PML 异构体 I 和 II,并证明 SUMO 相互作用对 PML II 降解有深远的调节作用。在本研究中,我们研究了调节 PML I 降解的元件,发现:(i) ICP0 侧翼的两个区域围绕 RING 区域冗余地促进 PML I 的降解;(ii) 在 RING 下游,位于残基 362-364 的 SUMO 相互作用基序(SIM)以与 PML II 相同的方式靶向 SUMO 化的 PML I;(iii) 在 RING 上游,残基 1-83 介导 PML I 降解,无论其 SUMO 化状态或亚细胞定位如何;(iv) 将残基 1-83 重新定位到 RING 下游不影响其在 PML I 降解中的功能;(v) 删除 1-83 允许 PML I 的复苏和在 HSV-1 感染后期重新形成 ND10 样结构。总之,我们确定了一种针对 PML I 的新的底物识别,通过这种识别,ICP0 E3 在整个感染过程中强制持续降解 PML I,以防止 ND10 的重新形成。