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Polymorphic tandem repeats influence cell type-specific gene expression across the human immune landscape

Tanudisastro, H. A.; Cuomo, A. S. E.; Weisburd, B.; Welland, M.; Spenceley, E.; Franklin, M.; Xue, A.; Bowen, B.; Wing, K.; Tang, O.; Gray, M.; Reis, A. L. M.; Margoliash, J.; Kurtas, E. N.; Pullin, J.; Lee, A. S.; Brand, H.; Harper, M.; Bobowik, K.; Silk, M.; Marshall, J.; Bakiris, V.; Swapna Madala, B.; Uren, C.; Bartie, C.; Senabouth, A.; Dashnow, H.; Fearnley, L.; Martin Trujillo, A.; Dolzhenko, E.; Qiao, Z.; Grieve, S.; Nguyen, T.; Ben-David, E.; Chen, L.; Farh, K.; Talkowski, M.; Alexander, S. I.; Siggs, O. M.; Gruenschloss, L.; Nicholas, H. R.; Piscionere, J.; Simons, C.; Wallace, C.; G

2025-04-09 genomics
10.1101/2024.11.02.621562 bioRxiv
Show abstract

Tandem repeats (TRs) - highly polymorphic, repetitive sequences across the human genome - are important regulators of gene expression but remain underexplored due to challenges in accurate genotyping and analysis1. Here, we generate new whole genome and single-cell RNA sequencing from >5.4 million blood-derived cells across 1,925 individuals in two cohorts [Cuomo et al., accompanying manuscript], and perform meta-analysis to characterize the impact of variation in >1.7 million TR loci on immune cell type-specific gene expression. We identify >69,000 single-cell expression TR loci (sc-eTRs), 30.7% of which are specific to one of 28 immune cell types, and reveal dynamic regulatory effects using cell-state inference. Matched single-cell ATAC sequencing profiles from >3.4 million nuclei in 922 individuals [Xue et al., accompanying manuscript]. uncover chromatin accessibility QTLs for nearly one-third of expression-associated TRs, supporting coordinated effects on cis-regulatory architecture. Fine-mapping implicates 1,490 TRs as candidate causal drivers of gene expression in 6.1% of tested genes, and colocalization analyses highlight >200 genes in which TRs likely mediate genetic associations with immune and hematological traits. Together, these results provide a genome-wide, multiomic view of TR-mediated regulation in the human immune system, establishing TRs as key contributors to cell type-specific regulatory variation and complex trait architecture.

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