Human pancreatic islet 3D chromatin architecture provides insights into the genetics of type 2 diabetes
Author(s)
Miguel-Escalada, Irene
Bonàs-Guarch, Silvia
Cebola, Ines
Ponsa-Cobas, Joan
Ferrer, J
Type
Working Paper
Abstract
Genetic studies promise to provide insight into the molecular mechanisms underlying type 2 diabetes (T2D). Variants associated with T2D are often located in tissue-specific enhancer regions (enhancer clusters, stretch enhancers or super-enhancers). So far, such domains have been defined through clustering of enhancers in linear genome maps rather than in 3D-space. Furthermore, their target genes are generally unknown. We have now created promoter capture Hi-C maps in human pancreatic islets. This linked diabetes-associated enhancers with their target genes, often located hundreds of kilobases away. It further revealed sets of islet enhancers, super-enhancers and active promoters that form 3D higher-order hubs, some of which show coordinated glucose-dependent activity. Hub genetic variants impact the heritability of insulin secretion, and help identify individuals in whom genetic variation of islet function is important for T2D. Human islet 3D chromatin architecture thus provides a framework for interpretation of T2D GWAS signals.
Date Issued
2018-09-01
Citation
2018
Copyright Statement
The copyright holder for this preprint is the author/funder, who has granted bioRxiv a license to display the preprint in perpetuity. It is made available under a CC-BY-NC-ND 4.0 International license.
Sponsor
Wellcome Trust
Imperial College Healthcare NHS Trust- BRC Funding
Medical Research Council (MRC)
Grant Number
101033/C/13/Z
RDC03 79560
MR/L02036X/1
Notes
Currently being reviewed, and wxpected to be in Biorxiv by September 2018