HCA Data Explorer

Single-cell genomics improves the discovery of risk variants and genes of atrial fibrillation

Access Granted
Updated February 12, 2024

Genome-wide association studies (GWAS) have linked hundreds of loci to cardiac diseases. However, in most loci the causal variants and their target genes remain unknown. We developed a combined experimental and analytical approach that integrates single cell epigenomics with GWAS to prioritize risk variants and genes. We profiled accessible chromatin in single cells obtained from human hearts and leveraged the data to study genetics of Atrial Fibrillation (AF), the most common cardiac arrhythmia. Enrichment analysis of AF risk variants using cell-type-resolved open chromatin regions (OCRs) implicated cardiomyocytes as the main mediator of AF risk. We then performed statistical fine-mapping, leveraging the information in OCRs, and identified putative causal variants in 122 AF-associated loci. Taking advantage of the fine-mapping results, our novel statistical procedure for gene discovery prioritized 46 high-confidence risk genes, highlighting transcription factors and signal transduction pathways important for heart development. In summary, our analysis provides a comprehensive map of AF risk variants and genes, and a general framework to integrate single-cell genomics with genetic studies of complex traits.

Anindita BasuUniversity of Chicagoobasu@uchicago.edu
Xin HeUniversity of Chicagoxinhe@uchicago.edu
Sebastian PottUniversity of Chicagospott@uchicago.edu
Alan Selewa1
Kaixuan Luo1
Michael Wasney1
Linsin Smith1
Xiaotong Sun1
Chenwei Tang1
Heather Eckart1
Ivan P Moskowitz1
Anindita Basu1
Xin He1
Sebastian Pott1
1University of Chicago
Ida Zucchi

To reference this project, please use the following link:

https://explore.data.humancellatlas.org/projects/377c35d1-93bf-470c-8067-08f954b269bd

Supplementary links are provided by contributors and represent items such as additional data which can’t be hosted here; code that was used to analyze this data; or tools and visualizations associated with this specific dataset.

1.https://github.com/xinhe-lab/aFib_heart_atlas_mapgen_paper2.https://github.com/xinhe-lab/mapgen
GEO Series Accessions:
GSE224995, GSE224996, GSE224997
INSDC Project Accessions:INSDC Study Accessions:

Atlas

None

Analysis Portals

None

Project Label

RiskVariantsAF

Species

Homo sapiens

Sample Type

specimens

Anatomical Entity

heart

Organ Part

4 organ parts

Selected Cell Types

Unspecified

Disease Status (Specimen)

normal

Disease Status (Donor)

normal

Development Stage

human adult stage

Library Construction Method

2 library construction methods

Nucleic Acid Source

single nucleus

Paired End

false, true

Analysis Protocol

ATAC_matrix, raw_matrix_generation

File Format

4 file formats

Cell Count Estimate

76.1k

Donor Count

3
fastq.gz316 file(s)mtx.gz2 file(s)tsv.gz4 file(s)xlsx1 file(s)