Study / S2AYN40E82026-01-07

Global Evaluation of Congenital Heart Disease-Associated Non-Coding Variants

Edwin G Peña-Martínez, Shreya Sharma, Joshua G Medina-Feliciano, Elise Root, Lois G Parks et al.

About this study

Genome-wide association studies (GWAS) have mapped thousands of congenital heart disease (CHD)-associated variants within non-coding regions of the genome. Noncoding variants can alter regulatory mechanisms, such as transcription factor (TF) binding control of gene expression, potentially contributing human diseases. However, with the increasing number of disease-associated variants, comprehensive functional validation remains a significant challenge. In this work, we developed a novel method called SNP Bind-n-Seq to evaluate >3,000 CHD-risk variants for allelic binding for the cardiac TFs NKX2-5, GATA4, and TBX5 in a high-throughput manner. These binding affinity data sets were coupled with a massively parallel reporter assay (MPRA) to screen CHD-risk variant genotype-dependent regulatory activity. We identified 170 variants that exhibit allelic TF binding and 187 that modulate gene expression. Combining both approaches revealed three high-confidence variants with genotype-dependent TF binding, genotype-dependent transcriptional activity, and eQTL behavior in cardiac cells. Collectively, this study provides the first combined high-throughput biochemical and functional genomic evaluation of thousands of CHD-risk variants.

Full author list & citation

Edwin G Peña-Martínez, Shreya Sharma, Joshua G Medina-Feliciano, Elise Root, Lois G Parks, Marissa Granitto, Diego A Pomales-Matos, Jean L Messon-Bird, Adriana C Barreiro-Rosario, Leandro Sanabria-Alberto, Alejandro Rivera-Madera, Jessica M Rodríguez-Ríos, Rosalba Velázquez-Roig, Juan A Figueroa-Rosado, Mackenzie Noon, Omer A Donmez, Carmy Forney, Hayley K Hesse, Katelyn A Dunn, Xiaoting Chen, Matthew R Hass, Lucinda P Lawson, Matthew T Weirauch, Leah C Kottyan, Steven K Reilly, Devesh Bhimsaria, José A Rodríguez-Martínez. Global Evaluation of Congenital Heart Disease-Associated Non-Coding Variants. 2026-01-07. https://doi.org/10.21203/rs.3.rs-8429365/v1

Experiments 1

E1VV9YT5W

CHD-risk variant enhancer MPRA in cardiac transcription-factor-expressing Flp-In 293 cells

A plasmid-based MPRA tested 5,431 CHD-associated variants expanded by linkage disequilibrium, represented by 14,524 allele sequences, in a Flp-In 293 reporter background expressing NKX2-5, GATA4, and TBX5. The packaged table contains allele-level activity, allelic fold change, source count/activity values, sequence context, and MPRA-derived cardiac regulatory annotations for the analyzed result set.

Episomal Plasmid MPRAHumanGRCh38
Explore data

Raw source data 5 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 5 files (ZIP)EPM2025SupData3.xlsxEPM2025SupData4.xlsxEPM2025SupData5.xlsxREADME.txtsupplementary_figures.pdf

Cite OpenMPRA

Cite the OpenMPRA database. Include your access date because the collection changes over time.

Please also cite the source studies when using their data.