Institute for Clinical and Molecular Virology, Friedrich Alexander Universität Erlangen-Nürnberg, Erlangen, Germany.
Institute of Virology, Ulm University Medical Center, Ulm, Germany.
J Virol. 2018 Jun 29;92(14). doi: 10.1128/JVI.00342-18. Print 2018 Jul 15.
The cellular protein SPOC1 (survival time-associated PHD [plant homeodomain] finger protein in ovarian cancer 1) acts as a regulator of chromatin structure and the DNA damage response. It binds H3K4me2/3-containing chromatin and promotes DNA condensation by recruiting corepressors such as KAP-1 and H3K9 methyltransferases. Previous studies identified SPOC1 as a restriction factor against human adenovirus (HAdV) infection that is antagonized by E1B-55K/E4-orf6-dependent proteasomal degradation. Here, we demonstrate that, in contrast to HAdV-infected cells, SPOC1 is transiently upregulated during the early phase of human cytomegalovirus (HCMV) replication. We show that the expression of immediate early protein 1 (IE1) is sufficient and necessary to induce SPOC1. Additionally, we discovered that during later stages of infection, SPOC1 is downregulated in a glycogen synthase kinase 3β (GSK-3β)-dependent manner. We provide evidence that SPOC1 overexpression severely impairs HCMV replication by repressing the initiation of viral immediate early (IE) gene expression. Consistently, we observed that SPOC1-depleted primary human fibroblasts displayed an augmented initiation of viral IE gene expression. This occurs in a multiplicity of infection (MOI)-dependent manner, a defining hallmark of intrinsic immunity. Interestingly, repression requires the presence of high SPOC1 levels at the start of infection, while later upregulation had no negative impact, suggesting distinct temporal roles of SPOC1 during the HCMV replicative cycle. Mechanistically, we observed a highly specific association of SPOC1 with the major immediate early promoter (MIEP), strongly suggesting that SPOC1 inhibits HCMV replication by MIEP binding and the subsequent recruitment of heterochromatin-building factors. Thus, our data add SPOC1 as a novel factor to the endowment of a host cell to restrict cytomegalovirus infections. Accumulating evidence indicates that during millennia of coevolution, host cells have developed a sophisticated compilation of cellular factors to restrict cytomegalovirus infections. Defining this equipment is important to understand cellular barriers against viral infection and to develop strategies to utilize these factors for antiviral approaches. So far, constituents of PML nuclear bodies and interferon gamma-inducible protein 16 (IFI16) were known to mediate intrinsic immunity against HCMV. In this study, we identify the chromatin modulator SPOC1 as a novel restriction factor against HCMV. We show that preexisting high SPOC1 protein levels mediate a silencing of HCMV gene expression via a specific association with an important viral -regulatory element, the major immediate early promoter. Since SPOC1 expression varies between cell types, this factor may play an important role in tissue-specific defense against HCMV.
细胞蛋白 SPOC1(卵巢癌中与生存时间相关的 PHD [植物同源域]指蛋白)作为染色质结构和 DNA 损伤反应的调节剂。它结合含有 H3K4me2/3 的染色质,并通过招募核心抑制剂如 KAP-1 和 H3K9 甲基转移酶来促进 DNA 凝聚。先前的研究表明 SPOC1 是一种限制因子,可以对抗人类腺病毒(HAdV)的感染,但会被 E1B-55K/E4-orf6 依赖性蛋白酶体降解所拮抗。在这里,我们证明与 HAdV 感染的细胞相反,在人巨细胞病毒(HCMV)复制的早期阶段,SPOC1 会短暂上调。我们表明,早期蛋白 1(IE1)的表达足以并需要诱导 SPOC1。此外,我们发现,在感染的后期阶段,SPOC1 以糖原合酶激酶 3β(GSK-3β)依赖性方式下调。我们提供的证据表明,通过抑制病毒早期基因的起始表达,SPOC1 的过表达严重损害了 HCMV 的复制。一致地,我们观察到 SPOC1 耗尽的原代人成纤维细胞显示出病毒早期基因表达的起始增强。这以感染复数(MOI)依赖性方式发生,这是固有免疫的一个定义特征。有趣的是,抑制作用需要在感染开始时存在高 SPOC1 水平,而后期上调则没有负面影响,这表明 SPOC1 在 HCMV 复制周期中具有不同的时间作用。从机制上讲,我们观察到 SPOC1 与主要早期启动子(MIEP)的高度特异性结合,这强烈表明 SPOC1 通过 MIEP 结合和随后募集异染色质形成因子来抑制 HCMV 复制。因此,我们的数据将 SPOC1 添加为宿主细胞限制巨细胞病毒感染的新因子。越来越多的证据表明,在数千年的共同进化过程中,宿主细胞已经发展出了一套复杂的细胞因子来限制巨细胞病毒的感染。定义这些设备对于了解细胞对病毒感染的屏障以及开发利用这些因子进行抗病毒方法的策略非常重要。到目前为止,已经知道 PML 核体的成分和干扰素 γ诱导的蛋白 16(IFI16)是介导对 HCMV 固有免疫的因子。在这项研究中,我们确定染色质调节剂 SPOC1 是一种针对 HCMV 的新限制因子。我们表明,通过与一个重要的病毒调节元件,即主要早期启动子,特异性结合,预先存在的高 SPOC1 蛋白水平介导 HCMV 基因表达的沉默。由于 SPOC1 在细胞类型之间的表达不同,因此该因子可能在组织特异性防御 HCMV 方面发挥重要作用。