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The Causes and Consequences of Spatial Organization of the Genome in Regulation of Gene Expression

期刊

FRONTIERS IN IMMUNOLOGY
卷 12, 期 -, 页码 -

出版社

FRONTIERS MEDIA SA
DOI: 10.3389/fimmu.2021.682397

关键词

regulation of transcription; enhancers; transcription factors; chromatin; enhancer hubs; stochastic expression

资金

  1. Greek Secretariat for Research and Technology (Cooperative Grant SYNERGASIA I) [969]
  2. European Committee
  3. European Economic Area [EL0084]
  4. KMW offsets program
  5. Bodossaki Foundation
  6. Fondation Sante
  7. Antonios and Ioannis Angelicoussis Foundation
  8. Gilead Hellas
  9. Greek Secretariat for Research and Technology (Excellence Award ARISTEIA I) [1567]
  10. BIO-IMAGING GR [MIS-5002755]

向作者/读者索取更多资源

Regulation of gene expression involves the interaction of cis-acting elements and trans-acting factors. Transcription factors recognize enhancer DNA and read the transcriptional regulatory code by cooperatively binding specific DNA motifs. Enhancer hubs play a crucial role in coordinating gene expression by forming a dynamic and heterogeneous network of multivalent interactions, ensuring coordination and robustness in gene regulation.
Regulation of gene expression in time, space and quantity is orchestrated by the functional interplay of cis-acting elements and trans-acting factors. Our current view postulates that transcription factors recognize enhancer DNA and read the transcriptional regulatory code by cooperative DNA binding to specific DNA motifs, thus instructing the recruitment of transcriptional regulatory complexes forming a plethora of higher-ordered multi-protein-DNA and protein-protein complexes. Here, we reviewed the formation of multi-dimensional chromatin assemblies implicated in gene expression with emphasis on the regulatory role of enhancer hubs as coordinators of stochastic gene expression. Enhancer hubs contain many interacting regulatory elements and represent a remarkably dynamic and heterogeneous network of multivalent interactions. A functional consequence of such complex interaction networks could be that individual enhancers function synergistically to ensure coordination, tight control and robustness in regulation of expression of spatially connected genes. In this review, we discuss fundamental paradigms of such inter- and intra- chromosomal associations both in the context of immune-related genes and beyond.

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