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Dissecting the polygenic basis of atherosclerosis via disease-associated cell state signatures

Coronary artery disease (CAD) is a pandemic disease where up to half of the risk is explained by genetic factors. Advanced insights into the genetic basis of CAD require deeper understanding of the contributions of different cell types, molecular pathways, and genes to disease heritability. Here, we...

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Autores principales: Örd, Tiit, Lönnberg, Tapio, Nurminen, Valtteri, Ravindran, Aarthi, Niskanen, Henri, Kiema, Miika, Õunap, Kadri, Maria, Maleeha, Moreau, Pierre R., Mishra, Pashupati P., Palani, Senthil, Virta, Jenni, Liljenbäck, Heidi, Aavik, Einari, Roivainen, Anne, Ylä-Herttuala, Seppo, Laakkonen, Johanna P., Lehtimäki, Terho, Kaikkonen, Minna U.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10183377/
https://www.ncbi.nlm.nih.gov/pubmed/37060905
http://dx.doi.org/10.1016/j.ajhg.2023.03.013
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author Örd, Tiit
Lönnberg, Tapio
Nurminen, Valtteri
Ravindran, Aarthi
Niskanen, Henri
Kiema, Miika
Õunap, Kadri
Maria, Maleeha
Moreau, Pierre R.
Mishra, Pashupati P.
Palani, Senthil
Virta, Jenni
Liljenbäck, Heidi
Aavik, Einari
Roivainen, Anne
Ylä-Herttuala, Seppo
Laakkonen, Johanna P.
Lehtimäki, Terho
Kaikkonen, Minna U.
author_facet Örd, Tiit
Lönnberg, Tapio
Nurminen, Valtteri
Ravindran, Aarthi
Niskanen, Henri
Kiema, Miika
Õunap, Kadri
Maria, Maleeha
Moreau, Pierre R.
Mishra, Pashupati P.
Palani, Senthil
Virta, Jenni
Liljenbäck, Heidi
Aavik, Einari
Roivainen, Anne
Ylä-Herttuala, Seppo
Laakkonen, Johanna P.
Lehtimäki, Terho
Kaikkonen, Minna U.
author_sort Örd, Tiit
collection PubMed
description Coronary artery disease (CAD) is a pandemic disease where up to half of the risk is explained by genetic factors. Advanced insights into the genetic basis of CAD require deeper understanding of the contributions of different cell types, molecular pathways, and genes to disease heritability. Here, we investigate the biological diversity of atherosclerosis-associated cell states and interrogate their contribution to the genetic risk of CAD by using single-cell and bulk RNA sequencing (RNA-seq) of mouse and human lesions. We identified 12 disease-associated cell states that we characterized further by gene set functional profiling, ligand-receptor prediction, and transcription factor inference. Importantly, Vcam1+ smooth muscle cell state genes contributed most to SNP-based heritability of CAD. In line with this, genetic variants near smooth muscle cell state genes and regulatory elements explained the largest fraction of CAD-risk variance between individuals. Using this information for variant prioritization, we derived a hybrid polygenic risk score (PRS) that demonstrated improved performance over a classical PRS. Our results provide insights into the biological mechanisms associated with CAD risk, which could make a promising contribution to precision medicine and tailored therapeutic interventions in the future.
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spelling pubmed-101833772023-05-16 Dissecting the polygenic basis of atherosclerosis via disease-associated cell state signatures Örd, Tiit Lönnberg, Tapio Nurminen, Valtteri Ravindran, Aarthi Niskanen, Henri Kiema, Miika Õunap, Kadri Maria, Maleeha Moreau, Pierre R. Mishra, Pashupati P. Palani, Senthil Virta, Jenni Liljenbäck, Heidi Aavik, Einari Roivainen, Anne Ylä-Herttuala, Seppo Laakkonen, Johanna P. Lehtimäki, Terho Kaikkonen, Minna U. Am J Hum Genet Article Coronary artery disease (CAD) is a pandemic disease where up to half of the risk is explained by genetic factors. Advanced insights into the genetic basis of CAD require deeper understanding of the contributions of different cell types, molecular pathways, and genes to disease heritability. Here, we investigate the biological diversity of atherosclerosis-associated cell states and interrogate their contribution to the genetic risk of CAD by using single-cell and bulk RNA sequencing (RNA-seq) of mouse and human lesions. We identified 12 disease-associated cell states that we characterized further by gene set functional profiling, ligand-receptor prediction, and transcription factor inference. Importantly, Vcam1+ smooth muscle cell state genes contributed most to SNP-based heritability of CAD. In line with this, genetic variants near smooth muscle cell state genes and regulatory elements explained the largest fraction of CAD-risk variance between individuals. Using this information for variant prioritization, we derived a hybrid polygenic risk score (PRS) that demonstrated improved performance over a classical PRS. Our results provide insights into the biological mechanisms associated with CAD risk, which could make a promising contribution to precision medicine and tailored therapeutic interventions in the future. Elsevier 2023-05-04 2023-04-14 /pmc/articles/PMC10183377/ /pubmed/37060905 http://dx.doi.org/10.1016/j.ajhg.2023.03.013 Text en © 2023 The Author(s) https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Örd, Tiit
Lönnberg, Tapio
Nurminen, Valtteri
Ravindran, Aarthi
Niskanen, Henri
Kiema, Miika
Õunap, Kadri
Maria, Maleeha
Moreau, Pierre R.
Mishra, Pashupati P.
Palani, Senthil
Virta, Jenni
Liljenbäck, Heidi
Aavik, Einari
Roivainen, Anne
Ylä-Herttuala, Seppo
Laakkonen, Johanna P.
Lehtimäki, Terho
Kaikkonen, Minna U.
Dissecting the polygenic basis of atherosclerosis via disease-associated cell state signatures
title Dissecting the polygenic basis of atherosclerosis via disease-associated cell state signatures
title_full Dissecting the polygenic basis of atherosclerosis via disease-associated cell state signatures
title_fullStr Dissecting the polygenic basis of atherosclerosis via disease-associated cell state signatures
title_full_unstemmed Dissecting the polygenic basis of atherosclerosis via disease-associated cell state signatures
title_short Dissecting the polygenic basis of atherosclerosis via disease-associated cell state signatures
title_sort dissecting the polygenic basis of atherosclerosis via disease-associated cell state signatures
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10183377/
https://www.ncbi.nlm.nih.gov/pubmed/37060905
http://dx.doi.org/10.1016/j.ajhg.2023.03.013
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