VU University Medical Center, Department of Pathology, Amsterdam, The Netherlands.
J Virol. 2012 Oct;86(20):11322-32. doi: 10.1128/JVI.01161-12. Epub 2012 Aug 15.
Epstein-Barr virus (EBV) BamHI-A rightward frame 1 (BARF1) is considered a major viral oncogene in epithelial cells and has immune-modulating properties. However, in B cells and lymphomas, BARF1 expression is restricted to the viral lytic replication cycle. In this report, the transcriptional regulation of BARF1 during lytic replication is unraveled. Bisulfite sequencing of various cell lines indicated a high level of methylation of the BARF1 gene control region. A BARF1 promoter luciferase reporter construct was created using a CpG-free vector, enabling true assessment of promoter methylation. Induction of the EBV lytic cycle is mediated by the immediate-early proteins BZLF1 (Z) and BRLF1 (R). R was found to activate expression of the BARF1 promoter up to 250-fold independently of Z and unaffected by BARF1 promoter methylation. Chromatin immunoprecipitation (ChIP), electrophoretic mobility shift assay (EMSA), and specific mutagenesis of the R-responsive elements (RREs) demonstrated direct binding of R to RREs between nucleotides -554 and -327 relative to the BARF1 transcriptional ATG start site. The kinetics of BARF1 expression upon transactivation by R showed that BARF1 mRNA was expressed within 6 h in the context of the viral genome. In conclusion, expression of the BARF1 protein during lytic replication is regulated by direct binding of R to multiple RREs in the gene control region and is independent of the promoter methylation status. The early kinetics of BARF1 upon transactivation by R confirm its status as an early gene and emphasize the necessity of early immune modulation during lytic reactivation.
EBV 病毒(EBV) BamHI-A 右向框 1(BARF1)被认为是上皮细胞中的主要病毒癌基因,具有免疫调节特性。然而,在 B 细胞和淋巴瘤中,BARF1 的表达仅限于病毒裂解复制周期。在本报告中,阐明了 BARF1 在裂解复制过程中的转录调控。对各种细胞系进行亚硫酸氢盐测序表明,BARF1 基因调控区的甲基化水平很高。使用无 CpG 载体创建了 BARF1 启动子荧光素酶报告基因构建体,从而能够真正评估启动子甲基化。EBV 裂解周期的诱导是由早期蛋白 BZLF1(Z)和 BRLF1(R)介导的。发现 R 独立于 Z 并不受 BARF1 启动子甲基化的影响,可将 BARF1 启动子的表达激活高达 250 倍。染色质免疫沉淀(ChIP)、电泳迁移率变动分析(EMSA)和 R 反应元件(RRE)的特异性突变显示,R 直接结合到相对于 BARF1 转录 ATG 起始位点的核苷酸-554 到-327 之间的 RRE 上。R 转激活后 BARF1 表达的动力学表明,在病毒基因组的背景下,BARF1mRNA 在 6 小时内表达。总之,BARF1 蛋白在裂解复制过程中的表达受 R 直接结合到基因调控区中的多个 RRE 调控,与启动子甲基化状态无关。R 转激活后 BARF1 的早期动力学证实了其作为早期基因的地位,并强调了在裂解再激活过程中早期免疫调节的必要性。