Institute of Virology, Ulm University Medical Center, 89081 Ulm, Germany.
Instituto de Medicina Molecular João Lobo Antunes, Faculdade de Medicina da Universidade de Lisboa, 1649-028 Lisboa, Portugal.
Viruses. 2024 Feb 27;16(3):363. doi: 10.3390/v16030363.
The chromatin-remodeler SPOC1 (PHF13) is a transcriptional co-regulator and has been identified as a restriction factor against various viruses, including human cytomegalovirus (HCMV). For HCMV, SPOC1 was shown to block the onset of immediate-early (IE) gene expression under low multiplicities of infection (MOI). Here, we demonstrate that SPOC1-mediated restriction of IE expression is neutralized by increasing viral titers. Interestingly, our study reveals that SPOC1 exerts an additional antiviral function beyond the IE phase of HCMV replication. Expression of SPOC1 under conditions of high MOI resulted in severely impaired viral DNA replication and viral particle release, which may be attributed to inefficient viral transcription. With the use of click chemistry, the localization of viral DNA was investigated at late time points after infection. Intriguingly, we detected a co-localization of SPOC1, RNA polymerase II S5P and polycomb repressor complex 2 (PRC2) components in close proximity to viral DNA in areas that are hypothesized to harbor viral transcription sites. We further identified the N-terminal domain of SPOC1 to be responsible for interaction with EZH2, a subunit of the PRC2 complex. With this study, we report a novel and potent antiviral function of SPOC1 against HCMV that is efficient even with unrestricted IE gene expression.
染色质重塑因子 SPOC1(PHF13)是一种转录共调节剂,已被鉴定为多种病毒(包括人巨细胞病毒(HCMV))的限制因子。对于 HCMV,SPOC1 被证明可以在低感染复数(MOI)下阻止即刻早期(IE)基因表达的开始。在这里,我们证明 SPOC1 介导的 IE 表达限制被增加病毒滴度所中和。有趣的是,我们的研究表明,SPOC1 在 HCMV 复制的 IE 阶段之外发挥额外的抗病毒功能。在高 MOI 条件下表达 SPOC1 会导致病毒 DNA 复制和病毒颗粒释放严重受损,这可能归因于病毒转录效率低下。利用点击化学,在感染后晚期研究了病毒 DNA 的定位。有趣的是,我们在假定含有病毒转录位点的区域中检测到 SPOC1、RNA 聚合酶 II S5P 和多梳抑制复合物 2(PRC2)成分与病毒 DNA 的紧密共定位。我们进一步确定 SPOC1 的 N 端结构域负责与 PRC2 复合物的一个亚基 EZH2 相互作用。通过这项研究,我们报告了 SPOC1 针对 HCMV 的一种新的、有效的抗病毒功能,即使在不受限制的 IE 基因表达下,该功能也是有效的。