Study / S42Q345PF2025-11-25

The architecture of allele-specific regulatory variant effects across five human genomes

Katherine Dura, Keith Siklenka, Kari Strouse, Shauna Morrow, William Majoros et al.

About this study

The overwhelming majority of genetic associations with complex traits and disease involve non-coding genetic variants. Those variants are substantially enriched in gene regulatory elements, indicating that allelic impacts on gene regulatory element activity is a major contributor to those associations. As a step towards fine mapping the mechanisms within those associations, several studies have identified variants associated with gene expression and chromatin accessibility within those phenotypic associations. However, connecting those associations with functional impacts on gene regulatory element activity remains a major challenge. Here, we functionally measured allele-specific regulatory element activity across five human genomes using the genome-wide reporter assay STARR-seq. We identified tens of thousands of gene regulatory elements and estimated allele effects at ~200,000 genetic variants therein, including ~10,000 indels in our study population. Allelic effects on regulatory element activity correspond closely with predicted impacts on transcription factor binding motifs. The measured variant effects also allow us to fine map potential causal variants within eQTLs and chromatin QTLs from the same population. Together, these results provide an initial atlas of genome-wide variant effects across the human genome and demonstrate the potential for such approaches to prioritize causal variants for future mechanistic investigation.

Full author list & citation

Katherine Dura, Keith Siklenka, Kari Strouse, Shauna Morrow, William Majoros, Timothy E. Reddy. The architecture of allele-specific regulatory variant effects across five human genomes. 2025-11-25. https://doi.org/10.1101/2025.11.22.689315

Experiments 1

E6NN660EF

Five-genome pooled whole-genome STARR-seq in K562 cells

A pooled whole-genome STARR-seq library was generated from sheared genomic DNA from five Yoruba individuals in the 1000 Genomes Project, combined, and assayed in K562 cells. Three independent transfections/output RNA libraries and the matched pooled input DNA library were used to call regulatory elements and estimate allele-specific activity.

Whole-Genome STARR-seq (WHG-STARR-seq)HumanGRCh38
Explore data

Raw source data 15 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 15 files (ZIP)biorxiv_preprint.pdfENCFF064NPV_element_quantifications_GRCh38.bed.gzENCFF064NPV_metadata.jsonENCSR926NDZ_metadata.jsonGSE321509_family.soft.gzGSM9548887_rep2_README.txt.gzGSM9548888_rep3_README.txt.gzGSM9548889_rep1_README.txt.gzREADME.txtsupp_table_1.txtsupp_table_2.txtsupp_table_3.txtsupp_table_4.txtsupp_table_5.txtsupp_table_6.txt

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