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Enhancers and chromatin structures: regulatory hubs in gene expression and diseases
Author(s) -
Zhenhua Hu,
WeeWei Tee
Publication year - 2017
Publication title -
bioscience reports
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.938
H-Index - 77
eISSN - 1573-4935
pISSN - 0144-8463
DOI - 10.1042/bsr20160183
Subject(s) - enhancer , chromatin , computational biology , encode , biology , gene , regulation of gene expression , genetics , genome , context (archaeology) , transcription factor , regulatory sequence , chia pet , enhancer rnas , variety (cybernetics) , gene expression , repertoire , chromatin remodeling , computer science , paleontology , artificial intelligence , physics , acoustics
Gene expression requires successful communication between enhancer and promoter regions, whose activities are regulated by a variety of factors and associated with distinct chromatin structures; in addition, functionally related genes and their regulatory repertoire tend to be arranged in the same subchromosomal regulatory domains. In this review, we discuss the importance of enhancers, especially clusters of enhancers (such as super-enhancers), as key regulatory hubs to integrate environmental cues and encode spatiotemporal instructions for genome expression, which are critical for a variety of biological processes governing mammalian development. Furthermore, we emphasize that the enhancer-promoter interaction landscape provides a critical context to understand the aetiologies and mechanisms behind numerous complex human diseases and provides new avenues for effective transcription-based interventions.

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