Erkina Tamara Y, Erkine Alexandre M
Department of Pharmaceutical Sciences, College of Pharmacy and Health Sciences, Butler University, Indianapolis, IN 46208 USA.
Epigenetics Chromatin. 2016 Sep 20;9:40. doi: 10.1186/s13072-016-0092-2. eCollection 2016.
After more than three decades since the discovery of transcription activation domains (ADs) in gene-specific activators, the mechanism of their function remains enigmatic. The widely accepted model of direct recruitment by ADs of co-activators and basal transcriptional machinery components, however, is not always compatible with the short size yet very high degree of sequence randomness and intrinsic structural disorder of natural and synthetic ADs. In this review, we formulate the basis for an alternative and complementary model, whereby sequence randomness and intrinsic structural disorder of ADs are necessary for transient distorting interactions with promoter nucleosomes, triggering promoter nucleosome translocation and subsequently gene activation.
自基因特异性激活因子中转录激活结构域(ADs)被发现三十多年来,其功能机制仍然成谜。然而,被广泛接受的ADs直接招募共激活因子和基础转录机制成分的模型,并不总是与天然和合成ADs短长度却高度的序列随机性及内在结构无序性相契合。在本综述中,我们提出了一个替代且互补模型的依据,即ADs的序列随机性和内在结构无序性对于与启动子核小体的瞬时扭曲相互作用、触发启动子核小体易位以及随后的基因激活是必要的。