首页> 外文期刊>The Journal of biological chemistry >Gene Expression and Transcription Factor Profiling Reveal Inhibition of Transcription Factor cAMP-response Element-binding Protein by γ-Herpesvirus Replication and Transcription Activator
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Gene Expression and Transcription Factor Profiling Reveal Inhibition of Transcription Factor cAMP-response Element-binding Protein by γ-Herpesvirus Replication and Transcription Activator

机译:基因表达和转录因子分析揭示γ-疱疹病毒复制和转录活化剂转录因子阵营响应元结合蛋白的抑制作用

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Herpesvirus replication involves the expression of over 80 viral genes in a well ordered sequence, leading to the production of new virions. Viral genes expressed during the earliest phases of replication often regulate both viral and cellular genes. Therefore, they have the potential to bring about dramatic functional changes within the cell. Replication and transcription activator (RTA) is a potent immediate early transcription activator of the γ-herpesvirus family. This family includes Epstein-Barr virus and Kaposi sarcoma-associated herpesvirus, human pathogens associated with malignancy. Here we combine gene array technology with transcription factor profiling to identify the earliest DNA promoter and cellular transcription factor targets of RTA in the cellular genome. We find that expression of RTA leads to both activation and inhibition of distinct groups of cellular genes. The identity of the target genes suggests that RTA rapidly changes the cellular environment to counteract cell death pathways, support growth factor signaling, and also promote immune evasion of the infected cell. Transcription factor profiling of the target gene promoters highlighted distinct pathways involved in gene activation at specific time points. Most notable throughout was the high level of cAMP-response element-binding protein (CREB)-response elements in RTA target genes. We find that RTA can function as either an activator or an inhibitor of CREB-response genes, depending on the promoter context. The association with CREB also highlights a novel connection and coordination between viral and cellular “immediate early” responses.
机译:Herpesvirus复制涉及在一个有序的序列中表达超过80个病毒基因,导致新病毒群的生产。在复制的最早阶段期间表达的病毒基因通常会调节病毒和细胞基因。因此,它们有可能在细胞内带来巨大的功能变化。复制和转录激活剂(RTA)是γ-疱疹病毒家族的有效立即早期转录活化剂。该家庭包括彭斯坦 - 巴克病毒和Kaposi肉瘤相关的Herpesvirus,与恶性肿瘤相关的人类病原体。在这里,我们将基因阵列技术与转录因子分析结合以鉴定细胞基因组中最早的DNA启动子和RTA的细胞转录因子靶标。我们发现RTA的表达导致激活和抑制不同的细胞基因组。靶基因的同一性表明RTA快速改变细胞环境以抵消细胞死亡途径,支持生长因子信号传导,并促进感染细胞的免疫逃避。靶基因启动子的转录因子分析突出了特定时间点基因活化中的明显途径。最显着的是在RTA靶基因中的营养响应元素结合蛋白(CREB) - 响应元素的高水平。根据启动子环境,我们发现RTA可以用作CREB-响应基因的活化剂或抑制剂。与CREB的关联也强调了病毒和细胞“立即早期”反应之间的新颖性和协调。

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