Everett Roger D, Boutell Chris, Pheasant Kathleen, Cuchet-Lourenço Delphine, Orr Anne
MRC-University of Glasgow Centre for Virus Research, Glasgow, Scotland, United Kingdom.
J Virol. 2014 Mar;88(5):2763-74. doi: 10.1128/JVI.03417-13. Epub 2013 Dec 18.
Herpes simplex virus type 1 immediate-early protein ICP0 is an E3 ubiquitin ligase of the RING finger class that degrades several cellular proteins during infection. This activity is essential for its functions in stimulating efficient lytic infection and productive reactivation from latency. ICP0 targets a number of proteins that are modified by the small ubiquitin-like SUMO family of proteins, and it includes a number of short sequences that are related to SUMO interaction motifs (SIMs). Therefore, ICP0 has characteristics that are related to those of cellular SUMO-targeted ubiquitin ligase enzymes. Here, we analyze the impact of mutation of a number of SIM-like sequences (SLSs) within ICP0 on HSV-1 replication and gene expression and their requirement for ICP0-mediated degradation of both sumoylated and unmodified promyelocytic leukemia (PML) and other sumoylated cellular proteins. One SLS in the central portion of the ICP0 sequence (SLS4) was found to be absolutely required for targeting cellular sumoylated species in general and sumoylated forms of PML other than those of PML isoform I. Mutation of a group of SLSs in the C-terminal quarter of ICP0 also reduced ICP0-mediated degradation of sumoylated PML in a cooperative manner. Although mutation of individual SLSs caused only modest decreases in viral replication, combined mutation of SLS4 with SLS sequences in the C-terminal quarter of the protein reduced plaque formation efficiency by up to two orders of magnitude. These results provide further evidence that the biological activities of ICP0 are connected with host cell sumoylation events.
Herpes simplex virus type 1 protein ICP0 plays important roles in regulating the initial stages of lytic infection and productive reactivation from latency. ICP0 mediates its effects through inducing the degradation of cellular proteins that have repressive effects on viral gene expression. An increasing number of cellular proteins are known to be sensitive to ICP0-mediated degradation; therefore, it is important to understand how ICP0 selects its substrates for degradation. This study identifies sequence motifs within ICP0 that are involved in targeting cellular proteins that are modified by the SUMO family of ubiquitin-like proteins and describes how mutation of combinations of these motifs causes a 100-fold defect in viral infectivity.
单纯疱疹病毒1型即刻早期蛋白ICP0是一种环状结构域类E3泛素连接酶,在感染过程中可降解多种细胞蛋白。该活性对于其刺激高效裂解感染和从潜伏状态进行有效再激活的功能至关重要。ICP0靶向多种被小泛素样修饰物(SUMO)家族蛋白修饰的蛋白,并且包含一些与SUMO相互作用基序(SIM)相关的短序列。因此,ICP0具有与细胞SUMO靶向泛素连接酶相关的特征。在此,我们分析了ICP0内多个类SIM序列(SLS)的突变对HSV-1复制和基因表达的影响,以及它们对ICP0介导的SUMO化和未修饰的早幼粒细胞白血病(PML)及其他SUMO化细胞蛋白降解的需求。发现ICP0序列中部的一个SLS(SLS4)对于靶向一般细胞SUMO化物种以及除PML异构体I之外的PML SUMO化形式是绝对必需的。ICP0 C末端四分之一区域中一组SLS的突变也以协同方式降低了ICP0介导的SUMO化PML的降解。尽管单个SLS的突变仅导致病毒复制适度下降,但SLS4与该蛋白C末端四分之一区域中的SLS序列的联合突变使噬斑形成效率降低了多达两个数量级。这些结果进一步证明了ICP0的生物学活性与宿主细胞SUMO化事件相关。
单纯疱疹病毒1型蛋白ICP0在调节裂解感染的初始阶段和从潜伏状态进行有效再激活中起重要作用。ICP0通过诱导对病毒基因表达具有抑制作用的细胞蛋白降解来介导其作用。已知越来越多的细胞蛋白对ICP0介导的降解敏感;因此,了解ICP0如何选择其降解底物很重要。本研究确定了ICP0内参与靶向被泛素样蛋白SUMO家族修饰的细胞蛋白的序列基序,并描述了这些基序组合的突变如何导致病毒感染性出现100倍的缺陷。