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中文摘要
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拟议研究的长期目标是了解腺病毒E1A蛋白是如何激活的
英文摘要
The long term goals of the proposed research are to understand how the adenovirus E1A protein activates transcription from viral promoters, how E1A modifies transcription of cellular genes that induce cell proliferation, how adenovirus E1B-55K protein inhibits p53 function, and how human tumors can be identified that might be successfully treated by intratumoral injection of an E1B-55K deletion mutant. Control of gene expression is a fundamental aspect of nearly all biological processes; abnormal contol of gene expression contributes to many pathological processes such as the development of cancer. Understanding the molecular mechanisms of transcription control in detail should allow the design of therapeutic interventions to treat human disease such as cancer. We will use microscopic fluorescent methods to analyze the interaction of E1A conserved region 3 and other activation domains with mediator complexes, general transcription factors, and other co-activator complexes in living cells. We will use chromatin-immunoprecipitation (ChIP) to analyze the influence of E1A on PIC assembly and re-initiation by Pol II on viral chromatin in vivo. We will use ChIP on chip assays to determine how the binding of the E1A N-terminal region to CBP and p300 results in the recently discovered re-distribution of histone H3K18 acetylation, a modification that correlates with transcriptional activation. We will analyze the ability of E1B-55K to inhibit p53 function by tethering p53 in PML nuclear bodies dependent on E1B-55K sumoylation, and complete inhibition of p53 activation function by SUMO1-modification induced by a newly discovered E1B-55K SUM01-p53 ligase activity. We will also pursue the model that E1B-55K stimulates viral late gene expression by preventing an anti-viral response that inhibits viral mRNA nuclear export and translation. We will pursue current results suggesting that induction of this anti-viral response requires activation of ATM by MRN complexes activated by linear viral DNA. This work should lead to a more complete understanding of molecular interactionsthat control transcription in human cells. Understanding the mechanism by which E1B-55K stimulates viral replication in various human tumor cell lines should allow clinicians to determine which human tumors might betreated effectively by intratumoral injection of an E1B-55K deletion mutant.
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Two distinct domains in the yeast transcription factor IID and evidence for a TATA box-induced conformational change.
酵母转录因子 IID 中的两个不同结构域以及 TATA 盒诱导的构象变化的证据。
DOI: 10.1128/mcb.11.1.63-74.1991
发表时间: 1991
期刊: Molecular and cellular biology
影响因子: 5.3
作者: [Lieberman,PM, Schmidt,MC, Kao,CC, Berk,AJ]
通讯作者: Berk,AJ
The Zta trans-activator protein stabilizes TFIID association with promoter DNA by direct protein-protein interaction.
Zta 反式激活蛋白通过直接的蛋白质-蛋白质相互作用稳定 TFIID 与启动子 DNA 的结合。
DOI: 10.1101/gad.5.12b.2441
发表时间: 1991
期刊: Genes & development
影响因子: 10.5
作者: [Lieberman,PM, Berk,AJ]
通讯作者: Berk,AJ
DOI: 10.1016/j.devcel.2009.04.006
发表时间: 2009-05
期刊: DEVELOPMENTAL CELL
影响因子: 11.8
作者: [Wang, Wei, Huang, Lu, Huang, Yan, Yin, Jing-wen, Berk, Arnold J., Friedman, Jeffrey M., Wang, Gang]
通讯作者: Wang, Gang
Multiple transcription factor binding sites mediate adenovirus E1A transactivation.
多个转录因子结合位点介导腺病毒 E1A 反式激活。
DOI: 10.1128/jvi.63.8.3499-3506.1989
发表时间: 1989
期刊: Journal of virology
影响因子: 5.4
作者: [Pei,R, Berk,AJ]
通讯作者: Berk,AJ
共 21 条
    Mechanism of p53 Silencing By Adenovirus E1B 55K Protein
    MECHANISM OF P53 SILENCING BY ADENOVIRUS E1B 55K PROTEIN
    MECHANISM OF P53 SILENCING BY ADENOVIRUS E2B 55K PROTEIN
    Mechanism of p53 Silencing By Adenovirus E1B 55K Protein
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