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腺病毒E1B 55千道尔顿蛋白控制免疫反应基因的表达,但不控制p53依赖的转录。

The adenoviral E1B 55-kilodalton protein controls expression of immune response genes but not p53-dependent transcription.

作者信息

Miller Daniel L, Rickards Brenden, Mashiba Michael, Huang Wenying, Flint S J

机构信息

Department of Molecular Biology, Princeton University, Princeton, NJ 08544-1014, USA.

出版信息

J Virol. 2009 Apr;83(8):3591-603. doi: 10.1128/JVI.02269-08. Epub 2009 Feb 11.

Abstract

The human adenovirus type 5 (Ad5) E1B 55-kDa protein modulates several cellular processes, including activation of the tumor suppressor p53. Binding of the E1B protein to the activation domain of p53 inhibits p53-dependent transcription. This activity has been correlated with the transforming activity of the E1B protein, but its contribution to viral replication is not well understood. To address this issue, we used microarray hybridization methods to examine cellular gene expression in normal human fibroblasts (HFFs) infected by Ad5, the E1B 55-kDa-protein-null mutant Hr6, or a mutant carrying substitutions that impair repression of p53-dependent transcription. Comparison of the changes in cellular gene expression observed in these and our previous experiments (D. L. Miller et al., Genome Biol. 8:R58, 2007) by significance analysis of microarrays indicated excellent reproducibility. Furthermore, we again observed that Ad5 infection led to efficient reversal of the p53-dependent transcriptional program. As this same response was also induced in cells infected by the two mutants, we conclude that the E1B 55-kDa protein is not necessary to block activation of p53 in Ad5-infected cells. However, groups of cellular genes that were altered in expression specifically in the absence of the E1B protein were identified by consensus k-means clustering of the hybridization data. Statistical analysis of the enrichment of genes associated with specific functions in these clusters established that the E1B 55-kDa protein is necessary for repression of genes encoding proteins that mediate antiviral and immune defenses.

摘要

人5型腺病毒(Ad5)E1B 55 kDa蛋白可调节多种细胞过程,包括激活肿瘤抑制因子p53。E1B蛋白与p53的激活结构域结合会抑制p53依赖的转录。这种活性与E1B蛋白的转化活性相关,但其对病毒复制的作用尚不清楚。为了解决这个问题,我们使用微阵列杂交方法检测了被Ad5、E1B 55 kDa蛋白缺失突变体Hr6或携带损害p53依赖转录抑制的替代突变体感染的正常人成纤维细胞(HFFs)中的细胞基因表达。通过微阵列的显著性分析比较这些实验以及我们之前实验(D. L. Miller等人,《基因组生物学》8:R58,2007)中观察到的细胞基因表达变化,结果显示具有出色的可重复性。此外,我们再次观察到Ad5感染导致p53依赖的转录程序有效逆转。由于这两个突变体感染的细胞也诱导了相同的反应,我们得出结论,E1B 55 kDa蛋白对于阻断Ad5感染细胞中p53的激活并非必需。然而,通过对杂交数据进行一致性k均值聚类,确定了在E1B蛋白缺失时特异性表达发生改变的细胞基因群体。对这些聚类中与特定功能相关基因富集情况的统计分析表明,E1B 55 kDa蛋白对于抑制编码介导抗病毒和免疫防御蛋白的基因是必需的。

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