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A Common Type 2 Diabetes Risk Variant Potentiates Activity of an Evolutionarily Conserved Islet Stretch Enhancer and Increases C2CD4A and C2CD4B Expression.

Citation
Kycia, I., et al. “A Common Type 2 Diabetes Risk Variant Potentiates Activity Of An Evolutionarily Conserved Islet Stretch Enhancer And Increases C2Cd4A And C2Cd4B Expression.”. American Journal Of Human Genetics, pp. 620-635.
Center University of Michigan
Author Ina Kycia, Brooke N Wolford, Jeroen R Huyghe, Christian Fuchsberger, Swarooparani Vadlamudi, Romy Kursawe, Ryan P Welch, Ricardo D'Oliveira Albanus, Asli Uyar, Shubham Khetan, Nathan Lawlor, Mohan Bolisetty, Anubhuti Mathur, Johanna Kuusisto, Markku Laakso, Duygu Ucar, Karen L Mohlke, Michael Boehnke, Francis S Collins, Stephen C J Parker, Michael L Stitzel
Keywords C2cd4a, C2CD4B, GWAS, NFAT, comparative genomics, inflammation, islet, proinsulin, rs7163757, stretch or super enhancer
Abstract

Genome-wide association studies (GWASs) and functional genomics approaches implicate enhancer disruption in islet dysfunction and type 2 diabetes (T2D) risk. We applied genetic fine-mapping and functional (epi)genomic approaches to a T2D- and proinsulin-associated 15q22.2 locus to identify a most likely causal variant, determine its direction of effect, and elucidate plausible target genes. Fine-mapping and conditional analyses of proinsulin levels of 8,635 non-diabetic individuals from the METSIM study support a single association signal represented by a cluster of 16 strongly associated (p < 10) variants in high linkage disequilibrium (r > 0.8) with the GWAS index SNP rs7172432. These variants reside in an evolutionarily and functionally conserved islet and β cell stretch or super enhancer; the most strongly associated variant (rs7163757, p = 3 × 10) overlaps a conserved islet open chromatin site. DNA sequence containing the rs7163757 risk allele displayed 2-fold higher enhancer activity than the non-risk allele in reporter assays (p < 0.01) and was differentially bound by β cell nuclear extract proteins. Transcription factor NFAT specifically potentiated risk-allele enhancer activity and altered patterns of nuclear protein binding to the risk allele in vitro, suggesting that it could be a factor mediating risk-allele effects. Finally, the rs7163757 proinsulin-raising and T2D risk allele (C) was associated with increased expression of C2CD4B, and possibly C2CD4A, both of which were induced by inflammatory cytokines, in human islets. Together, these data suggest that rs7163757 contributes to genetic risk of islet dysfunction and T2D by increasing NFAT-mediated islet enhancer activity and modulating C2CD4B, and possibly C2CD4A, expression in (patho)physiologic states.

Year of Publication
2018
Journal
American journal of human genetics
Volume
102
Issue
4
Number of Pages
620-635
Date Published
12/2018
ISSN Number
1537-6605
DOI
10.1016/j.ajhg.2018.02.020
Alternate Journal
Am. J. Hum. Genet.
PMID
29625024
PMCID
PMC5985342
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