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The DNA loop release factor WAPL suppresses Epstein-Barr virus latent membrane protein expression to maintain the highly restricted latency I program

机译:DNA 环释放因子 WAPL 抑制 Epstein-Barr 病毒潜伏膜蛋白表达以维持高度受限的潜伏期 I 程序

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摘要

Epstein-Barr virus (EBV) uses latency programs to colonize the memory B-cell reservoir, and each program is associated with human malignancies. However, knowledge remains incomplete of epigenetic mechanisms that maintain the highly restricted latency I program, present in memory and Burkitt lymphoma cells, in which EBNA1 is the only EBV-encoded protein expressed. Given increasing appreciation that higher order chromatin architecture is an important determinant of viral and host gene expression, we investigated roles of Wings Apart-Like Protein Homolog (WAPL), a host factor that unloads cohesin to control DNA loop size and that was discovered as an EBNA2-associated protein. WAPL knockout (KO) in Burkitt cells de-repressed LMP1 and LMP2A expression, but not other EBV oncogenes, to yield a viral program reminiscent of EBV latency II, which is rarely observed in B-cells. WAPL KO also increased LMP1/2A levels in latency III lymphoblastoid cells. WAPL KO altered EBV genome architecture, triggering formation of DNA loops between the LMP promoter region and the EBV origins of lytic replication (oriLyt). Hi-C analysis further demonstrated that WAPL KO reprogrammed EBV genomic DNA looping. LMP1 and LMP2A de-repression correlated with decreased histone repressive marks at their promoters. We propose that EBV coopts WAPL to negatively regulate latent membrane protein expression to maintain Burkitt latency I.
机译:EB 病毒 (EBV) 使用潜伏程序定植记忆 B 细胞库,每个程序都与人类恶性肿瘤有关。然而,关于维持高度受限的潜伏期 I 程序的表观遗传机制的知识仍然不完整,存在于记忆和伯基特淋巴瘤细胞中,其中 EBNA1 是唯一表达的 EBV 编码蛋白。鉴于人们越来越认识到高阶染色质结构是病毒和宿主基因表达的重要决定因素,我们研究了 Wings Apart-Like Protein Homolog (WAPL) 的作用,WAPL 是一种释放黏连蛋白以控制 DNA 环大小的宿主因子,被发现为 EBNA2 相关蛋白。Burkitt 细胞中的 WAPL 敲除 (KO) 去抑制了 LMP1 和 LMP2A 表达,但不会去抑制其他 EBV 癌基因,从而产生让人想起 EBV 潜伏期 II 的病毒程序,这在 B 细胞中很少观察到。WAPL KO 还增加了潜伏期 III 淋巴母细胞样细胞中的 LMP1/2A 水平。WAPL KO 改变了 EBV 基因组结构,触发了 LMP 启动子区域和 EBV 裂解复制起点 (oriLyt) 之间 DNA 环的形成。Hi-C 分析进一步表明,WAPL KO 重编程 EBV 基因组 DNA 环。LMP1 和 LMP2A 去抑制与其启动子处的组蛋白抑制标记减少相关。我们提出 EBV 吸收 WAPL 以负向调节潜伏膜蛋白表达以维持伯基特潜伏期 I。

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