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Single-nucleus chromatin accessibility profiling highlights regulatory mechanisms of coronary artery disease risk

Authors :
Adam W. Turner
Shengen Shawn Hu
Jose Verdezoto Mosquera
Wei Feng Ma
Chani J. Hodonsky
Doris Wong
Gaëlle Auguste
Yipei Song
Katia Sol-Church
Emily Farber
Soumya Kundu
Anshul Kundaje
Nicolas G. Lopez
Lijiang Ma
Saikat Kumar B. Ghosh
Suna Onengut-Gumuscu
Euan A. Ashley
Thomas Quertermous
Aloke V. Finn
Nicholas J. Leeper
Jason C. Kovacic
Johan L. M. Björkegren
Chongzhi Zang
Clint L. Miller
Source :
Nature genetics. 54(6)
Publication Year :
2021

Abstract

Coronary artery disease (CAD) is a complex inflammatory disease involving genetic influences across cell types. Genome-wide association studies have identified over 200 loci associated with CAD, where the majority of risk variants reside in noncoding DNA sequences impacting cis-regulatory elements. Here, we applied single-nucleus assay for transposase-accessible chromatin with sequencing to profile 28,316 nuclei across coronary artery segments from 41 patients with varying stages of CAD, which revealed 14 distinct cellular clusters. We mapped ~320,000 accessible sites across all cells, identified cell-type-specific elements and transcription factors, and prioritized functional CAD risk variants. We identified elements in smooth muscle cell transition states (for example, fibromyocytes) and functional variants predicted to alter smooth muscle cell- and macrophage-specific regulation of MRAS (3q22) and LIPA (10q23), respectively. We further nominated key driver transcription factors such as PRDM16 and TBX2. Together, this single-nucleus atlas provides a critical step towards interpreting regulatory mechanisms across the continuum of CAD risk.

Details

ISSN :
15461718
Volume :
54
Issue :
6
Database :
OpenAIRE
Journal :
Nature genetics
Accession number :
edsair.doi.dedup.....888469e5b75e1bdcf9b321142cae5a5e