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由腺病毒E1A N端结构域介导的MYC与NuA4组蛋白乙酰转移酶复合物的增强结合激活了在癌细胞中高表达的一部分MYC靶基因。

Enhanced MYC association with the NuA4 histone acetyltransferase complex mediated by the adenovirus E1A N-terminal domain activates a subset of MYC target genes highly expressed in cancer cells.

作者信息

Zhao Ling-Jun, Loewenstein Paul M, Green Maurice

机构信息

Department of Microbiology and Molecular Immunology/Institute for Molecular Virology, Saint Louis University School of Medicine, Doisy Research Center, St. Louis, Missouri, USA.

出版信息

Genes Cancer. 2017 Nov;8(11-12):752-761. doi: 10.18632/genesandcancer.160.

Abstract

The proto-oncogene MYC is a transcription factor over-expressed in many cancers and required for cell survival. Its function is regulated by histone acetyltransferase (HAT) complexes, such as the GCN5 complex and the NuA4/Tip60 complex. However, the roles of the HAT complexes during MYC function in cancer have not been well characterized. We recently showed that adenovirus E1A and its N-terminal 80 aa region, E1A 1-80, interact with the NuA4 complex, through the E1A TRRAP-targeting (ET) domain, and enhance MYC association with the NuA4 complex. We show here that the ET domain mainly targets the MYC-NuA4 complex. By global gene expression analysis using E1A 1-80 and deletion mutants, we have identified a panel of genes activated by targeting the MYC-NuA4 complex and notably enriched for genes involved in ribosome biogenesis and gene expression. A second panel of genes is activated by E1A 1-80 targeting of both the MYC-NuA4 complex and p300, and is enriched for genes involved in DNA replication and cell cycle processes. Both panels of genes are highly expressed in cancer cells. Since the ET domain is essential for E1A-mediated cellular transformation, our results suggest that MYC and the NuA4 complex function cooperatively in cell transformation and cancer.

摘要

原癌基因MYC是一种在多种癌症中过度表达且对细胞存活至关重要的转录因子。其功能受组蛋白乙酰转移酶(HAT)复合物调控,如GCN5复合物和NuA4/Tip60复合物。然而,HAT复合物在癌症中MYC功能发挥过程中的作用尚未得到充分阐明。我们最近发现腺病毒E1A及其N端80个氨基酸区域(E1A 1-80)通过E1A TRRAP靶向(ET)结构域与NuA4复合物相互作用,并增强MYC与NuA4复合物的结合。我们在此表明ET结构域主要靶向MYC-NuA4复合物。通过使用E1A 1-80和缺失突变体进行全基因组表达分析,我们鉴定出一组通过靶向MYC-NuA4复合物而被激活的基因,这些基因显著富集于参与核糖体生物合成和基因表达的基因。第二组基因是由E1A 1-80同时靶向MYC-NuA4复合物和p300激活的,并且富集于参与DNA复制和细胞周期进程的基因。这两组基因在癌细胞中均高度表达。由于ET结构域对于E1A介导的细胞转化至关重要,我们的结果表明MYC和NuA4复合物在细胞转化和癌症中协同发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e24e/5755721/ebfce8b85602/ganc-08-752-g001.jpg

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