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Transcriptional Elongation of HSV Immediate Early Genes by the Super Elongation Complex Drives Lytic Infection and Reactivation from Latency

机译:超长伸长率复合物的HSV立即早期基因的转录伸长率驱动延迟的裂解感染和再激活

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摘要

The cellular transcriptional coactivator HCF-1 is required for initiation of herpes simplex virus (HSV) lytic infection and for reactivation from latency in sensory neurons. HCF-1 stabilizes the viral Immediate Early (IE) gene enhancer complex and mediates chromatin transitions to promote IE transcription initiation. In infected cells, HCF-1 was also found to be associated with a network of transcription elongation components including the super elongation complex (SEC). IE genes exhibit characteristics of genes controlled by transcriptional elongation, and the SEC-P-TEFb complex is specifically required to drive the levels of productive IE mRNAs. Significantly, compounds that enhance the levels of SEC-P-TEFb also potently stimulated HSV reactivation from latency both in a sensory ganglia model system and in vivo. Thus, transcriptional elongation of HSV IE genes is a key limiting parameter governing both the initiation of HSV infection and reactivation of latent genomes.
机译:细胞转录辅激活因子HCF-1是启动单纯疱疹病毒(HSV)裂解感染和感觉神经元从潜伏期重新激活所必需的。HCF-1稳定病毒即刻早期(IE)基因增强子复合物,并介导染色质转换以促进IE转录起始。在感染的细胞中,还发现HCF-1与转录延伸成分网络有关,包括超延伸复合物(SEC)。IE基因表现出由转录延伸控制的基因特征,SEC-P-TEFb复合物是驱动生产性IE mRNA水平的特殊需要。值得注意的是,提高SEC-P-TEFb水平的化合物也能在感觉神经节模型系统和体内有效地刺激HSV从潜伏期重新激活。因此,HSV IE基因的转录延长是控制HSV感染启动和潜在基因组重新激活的关键限制参数。

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