Study / S4LXHJPGF2021-01-27

Systematic analysis of binding of transcription factors to noncoding variants

Jian Yan, Yunjiang Qiu, André M. Ribeiro dos Santos, Yimeng Yin, Yang E. Li et al.

About this study

Many sequence variants have been linked to complex human traits and diseases, but deciphering their biological functions remains challenging, as most of them reside in noncoding DNA. Here we have systematically assessed the binding of 270 human transcription factors to 95,886 noncoding variants in the human genome using an ultra-high-throughput multiplex protein–DNA binding assay, termed single-nucleotide polymorphism evaluation by systematic evolution of ligands by exponential enrichment (SNP-SELEX). The resulting 828 million measurements of transcription factor–DNA interactions enable estimation of the relative affinity of these transcription factors to each variant in vitro and evaluation of the current methods to predict the effects of noncoding variants on transcription factor binding. We show that the position weight matrices of most transcription factors lack sufficient predictive power, whereas the support vector machine combined with the gapped k-mer representation show much improved performance, when assessed on results from independent SNP-SELEX experiments involving a new set of 61,020 sequence variants. We report highly predictive models for 94 human transcription factors and demonstrate their utility in genome-wide association studies and understanding of the molecular pathways involved in diverse human traits and diseases.

Full author list & citation

Jian Yan, Yunjiang Qiu, André M. Ribeiro dos Santos, Yimeng Yin, Yang E. Li, Nick Vinckier, Naoki Nariai, Paola Benaglio, Anugraha Raman, Xiaoyu Li, Shicai Fan, Joshua Chiou, Fulin Chen, Kelly A. Frazer, Kyle J. Gaulton, Maike Sander, Jussi Taipale, Bing Ren. Systematic analysis of binding of transcription factors to noncoding variants. 2021-01-27. https://doi.org/10.1038/s41586-021-03211-0

Experiments 2

E2SC4ADJI

HepG2 STARR-seq allelic enhancer activity screen

A pooled human STARR-seq library tested 190-bp genomic fragments containing alleles of 3,943 noncoding SNPs in HepG2 cells, together with 37 known enhancer controls and 2,998 yeast ORF negative controls. Three biological replicates were generated, with two technical sequencing libraries per replicate.

Standard STARR-seqHumanhg19
Explore data
E5J4VPAYM

HEK293T STARR-seq allelic enhancer activity screen

A pooled human STARR-seq library tested 190-bp genomic fragments containing alleles of 3,943 noncoding SNPs in HEK293T cells, together with 37 known enhancer controls and 2,998 yeast ORF negative controls. Three biological replicates were generated, with two technical sequencing libraries per replicate.

Standard STARR-seqHumanhg19
Explore data

Raw source data 10 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 10 files (ZIP)GSE118725_starr_seq.count.tsv.gzREADME.txtSupplementary_Table_1_tested_variants.csvSupplementary_Table_1_tested_variants.xlsxSupplementary_Table_3_pbSNPs.csvSupplementary_Table_3_pbSNPs.xlsxSupplementary_Table_5_STARR_seq_oligos.csvSupplementary_Table_5_STARR_seq_oligos.xlsxSupplementary_Table_6_paSNPs.csvSupplementary_Table_6_paSNPs.xlsx

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