Division of Infectious Diseases, Department of Pediatrics and Stony Brook Children's Hospital, Stony Brook University, Stony Brook, New York, USA.
J Virol. 2013 Nov;87(21):11438-46. doi: 10.1128/JVI.01762-13. Epub 2013 Aug 21.
Lytic activation of Epstein-Barr virus (EBV) is central to its life cycle and to most EBV-related diseases. However, not every EBV-infected B cell is susceptible to lytic activation. This lack of uniform susceptibility to lytic activation also directly impacts the success of viral oncolytic therapy for EBV cancers, yet determinants of susceptibility to lytic induction signals are not well understood. To determine if host factors influence susceptibility to EBV lytic activation, we developed a technique to separate lytic from refractory cells and reported that EBV lytic activation occurs preferentially in cells with lower levels of signal transducer and activator of transcription 3 (STAT3). Using this tool to detect single cells, we now extend the correlation between STAT3 and lytic versus refractory states to EBV-infected circulating B cells in patients with primary EBV infection, leading us to investigate whether STAT3 controls susceptibility to EBV lytic activation. In loss-of-function and gain-of-function studies in EBV-positive B lymphoma and lymphoblastoid cells, we found that the levels of functional STAT3 regulate susceptibility to EBV lytic activation. This prompted us to identify a pool of candidate cellular genes that might be regulated by STAT3 to limit EBV lytic activation. From this pool, we confirmed increases in transcript levels in refractory cells of a set of genes known to participate in transcription repression. Taken together, our findings place STAT3 at a critical crossroads between EBV latency and lytic activation, processes fundamental to EBV lymphomagenesis.
EBV 的裂解激活是其生命周期和大多数 EBV 相关疾病的核心。然而,并非每个 EBV 感染的 B 细胞都容易发生裂解激活。这种对裂解激活信号的敏感性缺乏一致性也直接影响了 EBV 癌症的病毒溶瘤治疗的成功,但裂解诱导信号敏感性的决定因素尚不清楚。为了确定宿主因素是否影响 EBV 裂解激活的敏感性,我们开发了一种分离裂解和耐药细胞的技术,并报道 EBV 裂解激活优先发生在信号转导和转录激活因子 3(STAT3)水平较低的细胞中。使用此工具检测单细胞,我们现在将 STAT3 与裂解与耐药状态之间的相关性扩展到原发性 EBV 感染患者的循环 EBV 感染 B 细胞中,这促使我们研究 STAT3 是否控制 EBV 裂解激活的敏感性。在 EBV 阳性 B 淋巴瘤和淋巴母细胞系中的功能丧失和功能获得研究中,我们发现功能性 STAT3 水平调节 EBV 裂解激活的敏感性。这促使我们鉴定出一组可能受 STAT3 调控以限制 EBV 裂解激活的候选细胞基因。在这个池中,我们证实了一组已知参与转录抑制的基因在耐药细胞中的转录水平升高。总之,我们的研究结果将 STAT3 置于 EBV 潜伏期和裂解激活之间的关键交叉点,这是 EBV 淋巴瘤发生的基本过程。