Study / S8Q0MXVPE2024-02-09

Characterization of caffeine response regulatory variants in vascular endothelial cells

Carly Boye, Cynthia A Kalita, Anthony S Findley, Adnan Alazizi, Julong Wei et al.

About this study

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, false discovery rate [FDR] < 5%). When overlapping our GxE results with expression quantitative trait loci colocalized with coronary artery disease 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.

Full author list & citation

Carly Boye, Cynthia A Kalita, Anthony S Findley, Adnan Alazizi, Julong Wei, Xiaoquan Wen, Roger Pique-Regi, Francesca Luca. Characterization of caffeine response regulatory variants in vascular endothelial cells. 2024-02-09. https://doi.org/10.7554/eLife.85235

Experiments 1

E1HG0ROWR

BiT-STARR-seq allele-specific regulatory activity in HUVECs with caffeine versus water control

An episomal BiT-STARR-seq library tested 43,556 SNP-centered 200-nt regulatory targets, with both alleles represented in forward and reverse construct orientations. HUVECs received 1.16 × 10^-3 M caffeine or water vehicle after transfection, with six biological replicates per condition; the table summarizes condition-specific ASE and caffeine-versus-water cASE results.

OtherHumanhg19
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Raw source data 23 files

Original supplemental and deposited inputs retained for this study. Download files individually or together as a ZIP; nested folders are preserved. Source reuse terms apply, and sequencing reads may be omitted.

Download all 23 files (ZIP)elife-85235-supp1.txtelife-85235-supp2.txtelife-85235-supp3.xlsxelife-85235-supp4.txtelife-85235-supp5.txtelife-85235-supp6.xlsxelife-85235-supp7.xlsxGSE221514_family.soft.gzGSE221514_series.txtGSM6879667_dedup.BST5HC1.q20.query.txt.gzGSM6879668_dedup.BST5HC2.q20.query.txt.gzGSM6879669_dedup.BST5HC3.q20.query.txt.gzGSM6879670_dedup.BST11HC1.q20.query.txt.gzGSM6879671_dedup.BST11HC2.q20.query.txt.gzGSM6879672_dedup.BST11HC3.q20.query.txt.gzGSM6879673_dedup.BST5HW1.q20.query.txt.gzGSM6879674_dedup.BST5HW2.q20.query.txt.gzGSM6879675_dedup.BST5HW3.q20.query.txt.gzGSM6879676_dedup.BST11HW1.q20.query.txt.gzGSM6879677_dedup.BST11HW2.q20.query.txt.gzGSM6879678_dedup.BST11HW3.q20.query.txt.gzREADME.txtzenodo-7327509_Table_S4_preprint_coordinate_bridge.txt

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