Published February 21, 2024 | Version v3

Characterization of caffeine response regulatory variants in vascular endothelial cells

  • 1. Center for Molecular Medicine and Genetics
  • 2. Department of Biostatistics, University of Michigan, Ann Arbor, MI
  • 3. Center for Molecular Medicine and Genetics, Department of Obstetrics and Gynecology, Wayne State University, Detroit, MI
  • 4. Center for Molecular Medicine and Genetics, Department of Obstetrics and Gynecology, Wayne State University, Detroit, MI, Department of Biology, University of Rome Tor Vergata, Rome, Italy

Description

Genetic variants in gene regulatory sequences can modify gene expression and mediate the molecular response to environmental stimuli. In addition, genotype-environment interactions (GxE) contribute to complex traits such as cardiovascular disease. Caffeine is the most widely consumed stimulant and is known to produce a vascular response. To investigate GxE for caffeine, we treated vascular endothelial cells with caffeine and used a massively parallel reporter assay to measure allelic effects on gene regulation for over 43,000 genetic variants. We identified 665 variants with allelic effects on gene regulation and 6 variants that regulate the gene expression response to caffeine (GxE, FDR<5%). When overlapping our GxE results with eQTLs colocalized with CAD and hypertension, we dissected their regulatory mechanisms and showed a modulatory role for caffeine. Our results demonstrate that massively parallel reporter assay is a powerful approach to identify and molecularly characterize GxE in the specific context of caffeine consumption.

Files

NEW_File_S4.txt

Files (26.8 MB)

Name Size Download all
md5:2fa753ad35ce7fe7a31ce4cd1bca0c2f
12.4 MB Preview Download
md5:070ebe73d02893916001bbdb48e8b876
2.0 kB Preview Download
md5:b85fd1b66c5aeec73fa1a16413ad401e
12.0 kB Download
md5:34c9d3de68032310cf6468f0cd17212f
2.2 MB Preview Download
md5:b86840cb900baab57d915f08c7425c04
12.1 MB Preview Download
md5:7b9db8013a4be6b0a3803f6b0cde97ec
10.4 kB Download
md5:648d28742aa0426cb576a3c6c64305de
5.2 kB Download

Additional details

Dates

Updated
2024-02-21