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Multi-ancestry transcriptome-wide association analyses yield insights into tobacco use biology and drug repurposing

Most transcriptome-wide association studies (TWASs) so far focus on European ancestry and lack diversity. To overcome this limitation, we aggregated genome-wide association study (GWAS) summary statistics, whole-genome sequences and expression quantitative trait locus (eQTL) data from diverse ancest...

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Autores principales: Chen, Fang, Wang, Xingyan, Jang, Seon-Kyeong, Quach, Bryan C., Weissenkampen, J. Dylan, Khunsriraksakul, Chachrit, Yang, Lina, Sauteraud, Renan, Albert, Christine M., Allred, Nicholette D. D., Arnett, Donna K., Ashley-Koch, Allison E., Barnes, Kathleen C., Barr, R. Graham, Becker, Diane M., Bielak, Lawrence F., Bis, Joshua C., Blangero, John, Boorgula, Meher Preethi, Chasman, Daniel I., Chavan, Sameer, Chen, Yii-Der I., Chuang, Lee-Ming, Correa, Adolfo, Curran, Joanne E., David, Sean P., Fuentes, Lisa de las, Deka, Ranjan, Duggirala, Ravindranath, Faul, Jessica D., Garrett, Melanie E., Gharib, Sina A., Guo, Xiuqing, Hall, Michael E., Hawley, Nicola L., He, Jiang, Hobbs, Brian D., Hokanson, John E., Hsiung, Chao A., Hwang, Shih-Jen, Hyde, Thomas M., Irvin, Marguerite R., Jaffe, Andrew E., Johnson, Eric O., Kaplan, Robert, Kardia, Sharon L. R., Kaufman, Joel D., Kelly, Tanika N., Kleinman, Joel E., Kooperberg, Charles, Lee, I-Te, Levy, Daniel, Lutz, Sharon M., Manichaikul, Ani W., Martin, Lisa W., Marx, Olivia, McGarvey, Stephen T., Minster, Ryan L., Moll, Matthew, Moussa, Karine A., Naseri, Take, North, Kari E., Oelsner, Elizabeth C., Peralta, Juan M., Peyser, Patricia A., Psaty, Bruce M., Rafaels, Nicholas, Raffield, Laura M., Reupena, Muagututi’a Sefuiva, Rich, Stephen S., Rotter, Jerome I., Schwartz, David A., Shadyab, Aladdin H., Sheu, Wayne H-H., Sims, Mario, Smith, Jennifer A., Sun, Xiao, Taylor, Kent D., Telen, Marilyn J., Watson, Harold, Weeks, Daniel E., Weir, David R., Yanek, Lisa R., Young, Kendra A., Young, Kristin L., Zhao, Wei, Hancock, Dana B., Jiang, Bibo, Vrieze, Scott, Liu, Dajiang J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group US 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9925385/
https://www.ncbi.nlm.nih.gov/pubmed/36702996
http://dx.doi.org/10.1038/s41588-022-01282-x
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author Chen, Fang
Wang, Xingyan
Jang, Seon-Kyeong
Quach, Bryan C.
Weissenkampen, J. Dylan
Khunsriraksakul, Chachrit
Yang, Lina
Sauteraud, Renan
Albert, Christine M.
Allred, Nicholette D. D.
Arnett, Donna K.
Ashley-Koch, Allison E.
Barnes, Kathleen C.
Barr, R. Graham
Becker, Diane M.
Bielak, Lawrence F.
Bis, Joshua C.
Blangero, John
Boorgula, Meher Preethi
Chasman, Daniel I.
Chavan, Sameer
Chen, Yii-Der I.
Chuang, Lee-Ming
Correa, Adolfo
Curran, Joanne E.
David, Sean P.
Fuentes, Lisa de las
Deka, Ranjan
Duggirala, Ravindranath
Faul, Jessica D.
Garrett, Melanie E.
Gharib, Sina A.
Guo, Xiuqing
Hall, Michael E.
Hawley, Nicola L.
He, Jiang
Hobbs, Brian D.
Hokanson, John E.
Hsiung, Chao A.
Hwang, Shih-Jen
Hyde, Thomas M.
Irvin, Marguerite R.
Jaffe, Andrew E.
Johnson, Eric O.
Kaplan, Robert
Kardia, Sharon L. R.
Kaufman, Joel D.
Kelly, Tanika N.
Kleinman, Joel E.
Kooperberg, Charles
Lee, I-Te
Levy, Daniel
Lutz, Sharon M.
Manichaikul, Ani W.
Martin, Lisa W.
Marx, Olivia
McGarvey, Stephen T.
Minster, Ryan L.
Moll, Matthew
Moussa, Karine A.
Naseri, Take
North, Kari E.
Oelsner, Elizabeth C.
Peralta, Juan M.
Peyser, Patricia A.
Psaty, Bruce M.
Rafaels, Nicholas
Raffield, Laura M.
Reupena, Muagututi’a Sefuiva
Rich, Stephen S.
Rotter, Jerome I.
Schwartz, David A.
Shadyab, Aladdin H.
Sheu, Wayne H-H.
Sims, Mario
Smith, Jennifer A.
Sun, Xiao
Taylor, Kent D.
Telen, Marilyn J.
Watson, Harold
Weeks, Daniel E.
Weir, David R.
Yanek, Lisa R.
Young, Kendra A.
Young, Kristin L.
Zhao, Wei
Hancock, Dana B.
Jiang, Bibo
Vrieze, Scott
Liu, Dajiang J.
author_facet Chen, Fang
Wang, Xingyan
Jang, Seon-Kyeong
Quach, Bryan C.
Weissenkampen, J. Dylan
Khunsriraksakul, Chachrit
Yang, Lina
Sauteraud, Renan
Albert, Christine M.
Allred, Nicholette D. D.
Arnett, Donna K.
Ashley-Koch, Allison E.
Barnes, Kathleen C.
Barr, R. Graham
Becker, Diane M.
Bielak, Lawrence F.
Bis, Joshua C.
Blangero, John
Boorgula, Meher Preethi
Chasman, Daniel I.
Chavan, Sameer
Chen, Yii-Der I.
Chuang, Lee-Ming
Correa, Adolfo
Curran, Joanne E.
David, Sean P.
Fuentes, Lisa de las
Deka, Ranjan
Duggirala, Ravindranath
Faul, Jessica D.
Garrett, Melanie E.
Gharib, Sina A.
Guo, Xiuqing
Hall, Michael E.
Hawley, Nicola L.
He, Jiang
Hobbs, Brian D.
Hokanson, John E.
Hsiung, Chao A.
Hwang, Shih-Jen
Hyde, Thomas M.
Irvin, Marguerite R.
Jaffe, Andrew E.
Johnson, Eric O.
Kaplan, Robert
Kardia, Sharon L. R.
Kaufman, Joel D.
Kelly, Tanika N.
Kleinman, Joel E.
Kooperberg, Charles
Lee, I-Te
Levy, Daniel
Lutz, Sharon M.
Manichaikul, Ani W.
Martin, Lisa W.
Marx, Olivia
McGarvey, Stephen T.
Minster, Ryan L.
Moll, Matthew
Moussa, Karine A.
Naseri, Take
North, Kari E.
Oelsner, Elizabeth C.
Peralta, Juan M.
Peyser, Patricia A.
Psaty, Bruce M.
Rafaels, Nicholas
Raffield, Laura M.
Reupena, Muagututi’a Sefuiva
Rich, Stephen S.
Rotter, Jerome I.
Schwartz, David A.
Shadyab, Aladdin H.
Sheu, Wayne H-H.
Sims, Mario
Smith, Jennifer A.
Sun, Xiao
Taylor, Kent D.
Telen, Marilyn J.
Watson, Harold
Weeks, Daniel E.
Weir, David R.
Yanek, Lisa R.
Young, Kendra A.
Young, Kristin L.
Zhao, Wei
Hancock, Dana B.
Jiang, Bibo
Vrieze, Scott
Liu, Dajiang J.
author_sort Chen, Fang
collection PubMed
description Most transcriptome-wide association studies (TWASs) so far focus on European ancestry and lack diversity. To overcome this limitation, we aggregated genome-wide association study (GWAS) summary statistics, whole-genome sequences and expression quantitative trait locus (eQTL) data from diverse ancestries. We developed a new approach, TESLA (multi-ancestry integrative study using an optimal linear combination of association statistics), to integrate an eQTL dataset with a multi-ancestry GWAS. By exploiting shared phenotypic effects between ancestries and accommodating potential effect heterogeneities, TESLA improves power over other TWAS methods. When applied to tobacco use phenotypes, TESLA identified 273 new genes, up to 55% more compared with alternative TWAS methods. These hits and subsequent fine mapping using TESLA point to target genes with biological relevance. In silico drug-repurposing analyses highlight several drugs with known efficacy, including dextromethorphan and galantamine, and new drugs such as muscle relaxants that may be repurposed for treating nicotine addiction.
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spelling pubmed-99253852023-02-15 Multi-ancestry transcriptome-wide association analyses yield insights into tobacco use biology and drug repurposing Chen, Fang Wang, Xingyan Jang, Seon-Kyeong Quach, Bryan C. Weissenkampen, J. Dylan Khunsriraksakul, Chachrit Yang, Lina Sauteraud, Renan Albert, Christine M. Allred, Nicholette D. D. Arnett, Donna K. Ashley-Koch, Allison E. Barnes, Kathleen C. Barr, R. Graham Becker, Diane M. Bielak, Lawrence F. Bis, Joshua C. Blangero, John Boorgula, Meher Preethi Chasman, Daniel I. Chavan, Sameer Chen, Yii-Der I. Chuang, Lee-Ming Correa, Adolfo Curran, Joanne E. David, Sean P. Fuentes, Lisa de las Deka, Ranjan Duggirala, Ravindranath Faul, Jessica D. Garrett, Melanie E. Gharib, Sina A. Guo, Xiuqing Hall, Michael E. Hawley, Nicola L. He, Jiang Hobbs, Brian D. Hokanson, John E. Hsiung, Chao A. Hwang, Shih-Jen Hyde, Thomas M. Irvin, Marguerite R. Jaffe, Andrew E. Johnson, Eric O. Kaplan, Robert Kardia, Sharon L. R. Kaufman, Joel D. Kelly, Tanika N. Kleinman, Joel E. Kooperberg, Charles Lee, I-Te Levy, Daniel Lutz, Sharon M. Manichaikul, Ani W. Martin, Lisa W. Marx, Olivia McGarvey, Stephen T. Minster, Ryan L. Moll, Matthew Moussa, Karine A. Naseri, Take North, Kari E. Oelsner, Elizabeth C. Peralta, Juan M. Peyser, Patricia A. Psaty, Bruce M. Rafaels, Nicholas Raffield, Laura M. Reupena, Muagututi’a Sefuiva Rich, Stephen S. Rotter, Jerome I. Schwartz, David A. Shadyab, Aladdin H. Sheu, Wayne H-H. Sims, Mario Smith, Jennifer A. Sun, Xiao Taylor, Kent D. Telen, Marilyn J. Watson, Harold Weeks, Daniel E. Weir, David R. Yanek, Lisa R. Young, Kendra A. Young, Kristin L. Zhao, Wei Hancock, Dana B. Jiang, Bibo Vrieze, Scott Liu, Dajiang J. Nat Genet Article Most transcriptome-wide association studies (TWASs) so far focus on European ancestry and lack diversity. To overcome this limitation, we aggregated genome-wide association study (GWAS) summary statistics, whole-genome sequences and expression quantitative trait locus (eQTL) data from diverse ancestries. We developed a new approach, TESLA (multi-ancestry integrative study using an optimal linear combination of association statistics), to integrate an eQTL dataset with a multi-ancestry GWAS. By exploiting shared phenotypic effects between ancestries and accommodating potential effect heterogeneities, TESLA improves power over other TWAS methods. When applied to tobacco use phenotypes, TESLA identified 273 new genes, up to 55% more compared with alternative TWAS methods. These hits and subsequent fine mapping using TESLA point to target genes with biological relevance. In silico drug-repurposing analyses highlight several drugs with known efficacy, including dextromethorphan and galantamine, and new drugs such as muscle relaxants that may be repurposed for treating nicotine addiction. Nature Publishing Group US 2023-01-26 2023 /pmc/articles/PMC9925385/ /pubmed/36702996 http://dx.doi.org/10.1038/s41588-022-01282-x Text en © The Author(s) 2023 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Chen, Fang
Wang, Xingyan
Jang, Seon-Kyeong
Quach, Bryan C.
Weissenkampen, J. Dylan
Khunsriraksakul, Chachrit
Yang, Lina
Sauteraud, Renan
Albert, Christine M.
Allred, Nicholette D. D.
Arnett, Donna K.
Ashley-Koch, Allison E.
Barnes, Kathleen C.
Barr, R. Graham
Becker, Diane M.
Bielak, Lawrence F.
Bis, Joshua C.
Blangero, John
Boorgula, Meher Preethi
Chasman, Daniel I.
Chavan, Sameer
Chen, Yii-Der I.
Chuang, Lee-Ming
Correa, Adolfo
Curran, Joanne E.
David, Sean P.
Fuentes, Lisa de las
Deka, Ranjan
Duggirala, Ravindranath
Faul, Jessica D.
Garrett, Melanie E.
Gharib, Sina A.
Guo, Xiuqing
Hall, Michael E.
Hawley, Nicola L.
He, Jiang
Hobbs, Brian D.
Hokanson, John E.
Hsiung, Chao A.
Hwang, Shih-Jen
Hyde, Thomas M.
Irvin, Marguerite R.
Jaffe, Andrew E.
Johnson, Eric O.
Kaplan, Robert
Kardia, Sharon L. R.
Kaufman, Joel D.
Kelly, Tanika N.
Kleinman, Joel E.
Kooperberg, Charles
Lee, I-Te
Levy, Daniel
Lutz, Sharon M.
Manichaikul, Ani W.
Martin, Lisa W.
Marx, Olivia
McGarvey, Stephen T.
Minster, Ryan L.
Moll, Matthew
Moussa, Karine A.
Naseri, Take
North, Kari E.
Oelsner, Elizabeth C.
Peralta, Juan M.
Peyser, Patricia A.
Psaty, Bruce M.
Rafaels, Nicholas
Raffield, Laura M.
Reupena, Muagututi’a Sefuiva
Rich, Stephen S.
Rotter, Jerome I.
Schwartz, David A.
Shadyab, Aladdin H.
Sheu, Wayne H-H.
Sims, Mario
Smith, Jennifer A.
Sun, Xiao
Taylor, Kent D.
Telen, Marilyn J.
Watson, Harold
Weeks, Daniel E.
Weir, David R.
Yanek, Lisa R.
Young, Kendra A.
Young, Kristin L.
Zhao, Wei
Hancock, Dana B.
Jiang, Bibo
Vrieze, Scott
Liu, Dajiang J.
Multi-ancestry transcriptome-wide association analyses yield insights into tobacco use biology and drug repurposing
title Multi-ancestry transcriptome-wide association analyses yield insights into tobacco use biology and drug repurposing
title_full Multi-ancestry transcriptome-wide association analyses yield insights into tobacco use biology and drug repurposing
title_fullStr Multi-ancestry transcriptome-wide association analyses yield insights into tobacco use biology and drug repurposing
title_full_unstemmed Multi-ancestry transcriptome-wide association analyses yield insights into tobacco use biology and drug repurposing
title_short Multi-ancestry transcriptome-wide association analyses yield insights into tobacco use biology and drug repurposing
title_sort multi-ancestry transcriptome-wide association analyses yield insights into tobacco use biology and drug repurposing
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9925385/
https://www.ncbi.nlm.nih.gov/pubmed/36702996
http://dx.doi.org/10.1038/s41588-022-01282-x
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