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Regulation of transcriptional activators by DNA-binding domain ubiquitination

机译:DNA结合域泛素化对转录激活因子的调控

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摘要

Ubiquitin is a key component of the regulatory network that maintains gene expression in eukaryotes, yet the molecular mechanism(s) by which non-degradative ubiquitination modulates transcriptional activator (TA) function is unknown. Here endogenous p53, a stress-activated transcription factor required to maintain health, is stably monoubiquitinated, following pathway activation by IR or Nutlin-3 and localized to the nucleus where it becomes tightly associated with chromatin. Comparative structure–function analysis and in silico modelling demonstrate a direct role for DNA-binding domain (DBD) monoubiquitination in TA activation. When attached to the DBD of either p53, or a second TA IRF-1, ubiquitin is orientated towards, and makes contact with, the DNA. The contact is made between a predominantly cationic surface on ubiquitin and the anionic DNA. Our data demonstrate an unexpected role for ubiquitin in the mechanism of TA-activity enhancement and provides insight into a new level of transcriptional regulation.
机译:泛素是维持真核生物中基因表达的调节网络的关键组成部分,但尚不知道非降解泛素化调节转录激活因子(TA)功能的分子机制。在此,内源性p53是维持健康所需的一种应力激活的转录因子,在被IR或Nutlin-3激活后,被稳定地单泛素化,并定位在与染色质紧密相关的核中。比较的结构功能分析和计算机模拟表明,DNA结合结构域(DBD)单泛素化在TA激活中具有直接作用。当泛素连接到p53或第二个TA IRF-1的DBD上时,其朝向DNA的方向并与之接触。在遍在蛋白上主要是阳离子表面和阴离子DNA之间进行接触。我们的数据表明泛素在TA活性增强机制中具有意想不到的作用,并提供了对转录调控新水平的洞察力。

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