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Rare variant contribution to the heritability of coronary artery disease.

Authors :
Rocheleau, Ghislain
Rocheleau, Ghislain
Clarke, Shoa
Auguste, Gaëlle
Hasbani, Natalie
Morrison, Alanna
Heath, Adam
Bielak, Lawrence
Iyer, Kruthika
Young, Erica
Stitziel, Nathan
Jun, Goo
Laurie, Cecelia
Broome, Jai
Khan, Alyna
Arnett, Donna
Becker, Lewis
Bis, Joshua
Boerwinkle, Eric
Bowden, Donald
Carson, April
Ellinor, Patrick
Fornage, Myriam
Franceschini, Nora
Freedman, Barry
Heard-Costa, Nancy
Hou, Lifang
Chen, Yii-Der
Kenny, Eimear
Kooperberg, Charles
Kral, Brian
Loos, Ruth
Lutz, Sharon
Manson, JoAnn
Martin, Lisa
Mitchell, Braxton
Nassir, Rami
Palmer, Nicholette
Post, Wendy
Preuss, Michael
Psaty, Bruce
Raffield, Laura
Regan, Elizabeth
Rich, Stephen
Smith, Jennifer
Taylor, Kent
Yanek, Lisa
Young, Kendra
Hilliard, Austin
Tcheandjieu, Catherine
Peyser, Patricia
Vasan, Ramachandran
Rotter, Jerome
Miller, Clint
Assimes, Themistocles
de Vries, Paul
Do, Ron
Rocheleau, Ghislain
Rocheleau, Ghislain
Clarke, Shoa
Auguste, Gaëlle
Hasbani, Natalie
Morrison, Alanna
Heath, Adam
Bielak, Lawrence
Iyer, Kruthika
Young, Erica
Stitziel, Nathan
Jun, Goo
Laurie, Cecelia
Broome, Jai
Khan, Alyna
Arnett, Donna
Becker, Lewis
Bis, Joshua
Boerwinkle, Eric
Bowden, Donald
Carson, April
Ellinor, Patrick
Fornage, Myriam
Franceschini, Nora
Freedman, Barry
Heard-Costa, Nancy
Hou, Lifang
Chen, Yii-Der
Kenny, Eimear
Kooperberg, Charles
Kral, Brian
Loos, Ruth
Lutz, Sharon
Manson, JoAnn
Martin, Lisa
Mitchell, Braxton
Nassir, Rami
Palmer, Nicholette
Post, Wendy
Preuss, Michael
Psaty, Bruce
Raffield, Laura
Regan, Elizabeth
Rich, Stephen
Smith, Jennifer
Taylor, Kent
Yanek, Lisa
Young, Kendra
Hilliard, Austin
Tcheandjieu, Catherine
Peyser, Patricia
Vasan, Ramachandran
Rotter, Jerome
Miller, Clint
Assimes, Themistocles
de Vries, Paul
Do, Ron
Source :
Nature Communications; vol 15, iss 1
Publication Year :
2024

Abstract

Whole genome sequences (WGS) enable discovery of rare variants which may contribute to missing heritability of coronary artery disease (CAD). To measure their contribution, we apply the GREML-LDMS-I approach to WGS of 4949 cases and 17,494 controls of European ancestry from the NHLBI TOPMed program. We estimate CAD heritability at 34.3% assuming a prevalence of 8.2%. Ultra-rare (minor allele frequency ≤ 0.1%) variants with low linkage disequilibrium (LD) score contribute ~50% of the heritability. We also investigate CAD heritability enrichment using a diverse set of functional annotations: i) constraint; ii) predicted protein-altering impact; iii) cis-regulatory elements from a cell-specific chromatin atlas of the human coronary; and iv) annotation principal components representing a wide range of functional processes. We observe marked enrichment of CAD heritability for most functional annotations. These results reveal the predominant role of ultra-rare variants in low LD on the heritability of CAD. Moreover, they highlight several functional processes including cell type-specific regulatory mechanisms as key drivers of CAD genetic risk.

Details

Database :
OAIster
Journal :
Nature Communications; vol 15, iss 1
Notes :
application/pdf, Nature Communications vol 15, iss 1
Publication Type :
Electronic Resource
Accession number :
edsoai.on1468510443
Document Type :
Electronic Resource