Literature DB >> 32442411

Systems Genetics in Human Endothelial Cells Identifies Non-coding Variants Modifying Enhancers, Expression, and Complex Disease Traits.

Lindsey K Stolze1, Austin C Conklin1, Michael B Whalen1, Maykel López Rodríguez2, Kadri Õunap2, Ilakya Selvarajan2, Anu Toropainen2, Tiit Örd2, Jin Li3, Anna Eshghi1, Alice E Solomon1, Yun Fang3, Minna U Kaikkonen2, Casey E Romanoski4.   

Abstract

The identification of causal variants and mechanisms underlying complex disease traits in humans is important for the progress of human disease genetics; this requires finding strategies to detect functional regulatory variants in disease-relevant cell types. To achieve this, we collected genetic and transcriptomic data from the aortic endothelial cells of up to 157 donors and four epigenomic phenotypes in up to 44 human donors representing individuals of both sexes and three major ancestries. We found thousands of expression quantitative trait loci (eQTLs) at all ranges of effect sizes not detected by the Gene-Tissue Expression Project (GTEx) in human tissues, showing that novel biological relationships unique to endothelial cells (ECs) are enriched in this dataset. Epigenetic profiling enabled discovery of over 3,000 regulatory elements whose activity is modulated by genetic variants that most frequently mutated ETS, AP-1, and NF-kB binding motifs, implicating these motifs as governors of EC regulation. Using CRISPR interference (CRISPRi), allele-specific reporter assays, and chromatin conformation capture, we validated candidate enhancer variants located up to 750 kb from their target genes, VEGFC, FGD6, and KIF26B. Regulatory SNPs identified were enriched in coronary artery disease (CAD) loci, and this result has specific implications for PECAM-1, FES, and AXL. We also found significant roles for EC regulatory variants in modifying the traits pulse pressure, blood protein levels, and monocyte count. Lastly, we present two unlinked SNPs in the promoter of MFAP2 that exhibit pleiotropic effects on human disease traits. Together, this supports the possibility that genetic predisposition for complex disease is manifested through the endothelium.
Copyright © 2020 American Society of Human Genetics. Published by Elsevier Inc. All rights reserved.

Entities:  

Keywords:  association mapping; complex disease; endothelial cells; epigenetics; genomics

Mesh:

Substances:

Year:  2020        PMID: 32442411      PMCID: PMC7273528          DOI: 10.1016/j.ajhg.2020.04.008

Source DB:  PubMed          Journal:  Am J Hum Genet        ISSN: 0002-9297            Impact factor:   11.025


  47 in total

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Journal:  Cell       Date:  2014-12-11       Impact factor: 41.582

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Authors:  S Heinz; C E Romanoski; C Benner; K A Allison; M U Kaikkonen; L D Orozco; C K Glass
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Authors: 
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Journal:  Nature       Date:  2015-02-19       Impact factor: 69.504

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Authors:  Bryce van de Geijn; Graham McVicker; Yoav Gilad; Jonathan K Pritchard
Journal:  Nat Methods       Date:  2015-09-14       Impact factor: 28.547

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  14 in total

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Review 4.  Epigenetic Regulation of Endothelial Cell Lineages During Zebrafish Development-New Insights From Technical Advances.

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5.  Vascular Regulation by Super Enhancer-Derived LINC00607.

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Review 6.  The use of new CRISPR tools in cardiovascular research and medicine.

Authors:  Masataka Nishiga; Chun Liu; Lei S Qi; Joseph C Wu
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7.  Identification of LZTFL1 as a candidate effector gene at a COVID-19 risk locus.

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8.  Systematic analysis of naturally occurring insertions and deletions that alter transcription factor spacing identifies tolerant and sensitive transcription factor pairs.

Authors:  Zeyang Shen; Rick Z Li; Thomas A Prohaska; Marten A Hoeksema; Nathan J Spann; Jenhan Tao; Gregory J Fonseca; Thomas Le; Lindsey K Stolze; Mashito Sakai; Casey E Romanoski; Christopher K Glass
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9.  Longitudinal shear stress response in human endothelial cells to atheroprone and atheroprotective conditions.

Authors:  Mano R Maurya; Shakti Gupta; Julie Yi-Shuan Li; Nassim E Ajami; Zhen B Chen; John Y-J Shyy; Shu Chien; Shankar Subramaniam
Journal:  Proc Natl Acad Sci U S A       Date:  2021-01-26       Impact factor: 12.779

10.  High shear stress enhances endothelial permeability in the presence of the risk haplotype at 9p21.3.

Authors:  Evan L Teng; Evan M Masutani; Benjamin Yeoman; Jessica Fung; Rachel Lian; Brenda Ngo; Aditya Kumar; Jesse K Placone; Valentina Lo Sardo; Adam J Engler
Journal:  APL Bioeng       Date:  2021-07-26
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