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Genome-Wide Association Study of Susceptibility to Idiopathic Pulmonary Fibrosis

Rationale: Idiopathic pulmonary fibrosis (IPF) is a complex lung disease characterized by scarring of the lung that is believed to result from an atypical response to injury of the epithelium. Genome-wide association studies have reported signals of association implicating multiple pathways includin...

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Autores principales: Allen, Richard J., Guillen-Guio, Beatriz, Oldham, Justin M., Ma, Shwu-Fan, Dressen, Amy, Paynton, Megan L., Kraven, Luke M., Obeidat, Ma'en, Li, Xuan, Ng, Michael, Braybrooke, Rebecca, Molina-Molina, Maria, Hobbs, Brian D., Putman, Rachel K., Sakornsakolpat, Phuwanat, Booth, Helen L., Fahy, William A., Hart, Simon P., Hill, Mike R., Hirani, Nik, Hubbard, Richard B., McAnulty, Robin J., Millar, Ann B., Navaratnam, Vidyia, Oballa, Eunice, Parfrey, Helen, Saini, Gauri, Whyte, Moira K. B., Zhang, Yingze, Kaminski, Naftali, Adegunsoye, Ayodeji, Strek, Mary E., Neighbors, Margaret, Sheng, Xuting R., Gudmundsson, Gunnar, Gudnason, Vilmundur, Hatabu, Hiroto, Lederer, David J., Manichaikul, Ani, Newell, John D., O’Connor, George T., Ortega, Victor E., Xu, Hanfei, Fingerlin, Tasha E., Bossé, Yohan, Hao, Ke, Joubert, Philippe, Nickle, David C., Sin, Don D., Timens, Wim, Furniss, Dominic, Morris, Andrew P., Zondervan, Krina T., Hall, Ian P., Sayers, Ian, Tobin, Martin D., Maher, Toby M., Cho, Michael H., Hunninghake, Gary M., Schwartz, David A., Yaspan, Brian L., Molyneaux, Philip L., Flores, Carlos, Noth, Imre, Jenkins, R. Gisli, Wain, Louise V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Thoracic Society 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7047454/
https://www.ncbi.nlm.nih.gov/pubmed/31710517
http://dx.doi.org/10.1164/rccm.201905-1017OC
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author Allen, Richard J.
Guillen-Guio, Beatriz
Oldham, Justin M.
Ma, Shwu-Fan
Dressen, Amy
Paynton, Megan L.
Kraven, Luke M.
Obeidat, Ma'en
Li, Xuan
Ng, Michael
Braybrooke, Rebecca
Molina-Molina, Maria
Hobbs, Brian D.
Putman, Rachel K.
Sakornsakolpat, Phuwanat
Booth, Helen L.
Fahy, William A.
Hart, Simon P.
Hill, Mike R.
Hirani, Nik
Hubbard, Richard B.
McAnulty, Robin J.
Millar, Ann B.
Navaratnam, Vidyia
Oballa, Eunice
Parfrey, Helen
Saini, Gauri
Whyte, Moira K. B.
Zhang, Yingze
Kaminski, Naftali
Adegunsoye, Ayodeji
Strek, Mary E.
Neighbors, Margaret
Sheng, Xuting R.
Gudmundsson, Gunnar
Gudnason, Vilmundur
Hatabu, Hiroto
Lederer, David J.
Manichaikul, Ani
Newell, John D.
O’Connor, George T.
Ortega, Victor E.
Xu, Hanfei
Fingerlin, Tasha E.
Bossé, Yohan
Hao, Ke
Joubert, Philippe
Nickle, David C.
Sin, Don D.
Timens, Wim
Furniss, Dominic
Morris, Andrew P.
Zondervan, Krina T.
Hall, Ian P.
Sayers, Ian
Tobin, Martin D.
Maher, Toby M.
Cho, Michael H.
Hunninghake, Gary M.
Schwartz, David A.
Yaspan, Brian L.
Molyneaux, Philip L.
Flores, Carlos
Noth, Imre
Jenkins, R. Gisli
Wain, Louise V.
author_facet Allen, Richard J.
Guillen-Guio, Beatriz
Oldham, Justin M.
Ma, Shwu-Fan
Dressen, Amy
Paynton, Megan L.
Kraven, Luke M.
Obeidat, Ma'en
Li, Xuan
Ng, Michael
Braybrooke, Rebecca
Molina-Molina, Maria
Hobbs, Brian D.
Putman, Rachel K.
Sakornsakolpat, Phuwanat
Booth, Helen L.
Fahy, William A.
Hart, Simon P.
Hill, Mike R.
Hirani, Nik
Hubbard, Richard B.
McAnulty, Robin J.
Millar, Ann B.
Navaratnam, Vidyia
Oballa, Eunice
Parfrey, Helen
Saini, Gauri
Whyte, Moira K. B.
Zhang, Yingze
Kaminski, Naftali
Adegunsoye, Ayodeji
Strek, Mary E.
Neighbors, Margaret
Sheng, Xuting R.
Gudmundsson, Gunnar
Gudnason, Vilmundur
Hatabu, Hiroto
Lederer, David J.
Manichaikul, Ani
Newell, John D.
O’Connor, George T.
Ortega, Victor E.
Xu, Hanfei
Fingerlin, Tasha E.
Bossé, Yohan
Hao, Ke
Joubert, Philippe
Nickle, David C.
Sin, Don D.
Timens, Wim
Furniss, Dominic
Morris, Andrew P.
Zondervan, Krina T.
Hall, Ian P.
Sayers, Ian
Tobin, Martin D.
Maher, Toby M.
Cho, Michael H.
Hunninghake, Gary M.
Schwartz, David A.
Yaspan, Brian L.
Molyneaux, Philip L.
Flores, Carlos
Noth, Imre
Jenkins, R. Gisli
Wain, Louise V.
author_sort Allen, Richard J.
collection PubMed
description Rationale: Idiopathic pulmonary fibrosis (IPF) is a complex lung disease characterized by scarring of the lung that is believed to result from an atypical response to injury of the epithelium. Genome-wide association studies have reported signals of association implicating multiple pathways including host defense, telomere maintenance, signaling, and cell–cell adhesion. Objectives: To improve our understanding of factors that increase IPF susceptibility by identifying previously unreported genetic associations. Methods: We conducted genome-wide analyses across three independent studies and meta-analyzed these results to generate the largest genome-wide association study of IPF to date (2,668 IPF cases and 8,591 controls). We performed replication in two independent studies (1,456 IPF cases and 11,874 controls) and functional analyses (including statistical fine-mapping, investigations into gene expression, and testing for enrichment of IPF susceptibility signals in regulatory regions) to determine putatively causal genes. Polygenic risk scores were used to assess the collective effect of variants not reported as associated with IPF. Measurements and Main Results: We identified and replicated three new genome-wide significant (P < 5 × 10(−8)) signals of association with IPF susceptibility (associated with altered gene expression of KIF15, MAD1L1, and DEPTOR) and confirmed associations at 11 previously reported loci. Polygenic risk score analyses showed that the combined effect of many thousands of as yet unreported IPF susceptibility variants contribute to IPF susceptibility. Conclusions: The observation that decreased DEPTOR expression associates with increased susceptibility to IPF supports recent studies demonstrating the importance of mTOR signaling in lung fibrosis. New signals of association implicating KIF15 and MAD1L1 suggest a possible role of mitotic spindle-assembly genes in IPF susceptibility.
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spelling pubmed-70474542020-03-01 Genome-Wide Association Study of Susceptibility to Idiopathic Pulmonary Fibrosis Allen, Richard J. Guillen-Guio, Beatriz Oldham, Justin M. Ma, Shwu-Fan Dressen, Amy Paynton, Megan L. Kraven, Luke M. Obeidat, Ma'en Li, Xuan Ng, Michael Braybrooke, Rebecca Molina-Molina, Maria Hobbs, Brian D. Putman, Rachel K. Sakornsakolpat, Phuwanat Booth, Helen L. Fahy, William A. Hart, Simon P. Hill, Mike R. Hirani, Nik Hubbard, Richard B. McAnulty, Robin J. Millar, Ann B. Navaratnam, Vidyia Oballa, Eunice Parfrey, Helen Saini, Gauri Whyte, Moira K. B. Zhang, Yingze Kaminski, Naftali Adegunsoye, Ayodeji Strek, Mary E. Neighbors, Margaret Sheng, Xuting R. Gudmundsson, Gunnar Gudnason, Vilmundur Hatabu, Hiroto Lederer, David J. Manichaikul, Ani Newell, John D. O’Connor, George T. Ortega, Victor E. Xu, Hanfei Fingerlin, Tasha E. Bossé, Yohan Hao, Ke Joubert, Philippe Nickle, David C. Sin, Don D. Timens, Wim Furniss, Dominic Morris, Andrew P. Zondervan, Krina T. Hall, Ian P. Sayers, Ian Tobin, Martin D. Maher, Toby M. Cho, Michael H. Hunninghake, Gary M. Schwartz, David A. Yaspan, Brian L. Molyneaux, Philip L. Flores, Carlos Noth, Imre Jenkins, R. Gisli Wain, Louise V. Am J Respir Crit Care Med Original Articles Rationale: Idiopathic pulmonary fibrosis (IPF) is a complex lung disease characterized by scarring of the lung that is believed to result from an atypical response to injury of the epithelium. Genome-wide association studies have reported signals of association implicating multiple pathways including host defense, telomere maintenance, signaling, and cell–cell adhesion. Objectives: To improve our understanding of factors that increase IPF susceptibility by identifying previously unreported genetic associations. Methods: We conducted genome-wide analyses across three independent studies and meta-analyzed these results to generate the largest genome-wide association study of IPF to date (2,668 IPF cases and 8,591 controls). We performed replication in two independent studies (1,456 IPF cases and 11,874 controls) and functional analyses (including statistical fine-mapping, investigations into gene expression, and testing for enrichment of IPF susceptibility signals in regulatory regions) to determine putatively causal genes. Polygenic risk scores were used to assess the collective effect of variants not reported as associated with IPF. Measurements and Main Results: We identified and replicated three new genome-wide significant (P < 5 × 10(−8)) signals of association with IPF susceptibility (associated with altered gene expression of KIF15, MAD1L1, and DEPTOR) and confirmed associations at 11 previously reported loci. Polygenic risk score analyses showed that the combined effect of many thousands of as yet unreported IPF susceptibility variants contribute to IPF susceptibility. Conclusions: The observation that decreased DEPTOR expression associates with increased susceptibility to IPF supports recent studies demonstrating the importance of mTOR signaling in lung fibrosis. New signals of association implicating KIF15 and MAD1L1 suggest a possible role of mitotic spindle-assembly genes in IPF susceptibility. American Thoracic Society 2020-03-01 2020-03-01 /pmc/articles/PMC7047454/ /pubmed/31710517 http://dx.doi.org/10.1164/rccm.201905-1017OC Text en Copyright © 2020 by the American Thoracic Society https://creativecommons.org/licenses/by/4.0/This article is open access and distributed under the terms of the Creative Commons Attribution 4.0 International License (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Original Articles
Allen, Richard J.
Guillen-Guio, Beatriz
Oldham, Justin M.
Ma, Shwu-Fan
Dressen, Amy
Paynton, Megan L.
Kraven, Luke M.
Obeidat, Ma'en
Li, Xuan
Ng, Michael
Braybrooke, Rebecca
Molina-Molina, Maria
Hobbs, Brian D.
Putman, Rachel K.
Sakornsakolpat, Phuwanat
Booth, Helen L.
Fahy, William A.
Hart, Simon P.
Hill, Mike R.
Hirani, Nik
Hubbard, Richard B.
McAnulty, Robin J.
Millar, Ann B.
Navaratnam, Vidyia
Oballa, Eunice
Parfrey, Helen
Saini, Gauri
Whyte, Moira K. B.
Zhang, Yingze
Kaminski, Naftali
Adegunsoye, Ayodeji
Strek, Mary E.
Neighbors, Margaret
Sheng, Xuting R.
Gudmundsson, Gunnar
Gudnason, Vilmundur
Hatabu, Hiroto
Lederer, David J.
Manichaikul, Ani
Newell, John D.
O’Connor, George T.
Ortega, Victor E.
Xu, Hanfei
Fingerlin, Tasha E.
Bossé, Yohan
Hao, Ke
Joubert, Philippe
Nickle, David C.
Sin, Don D.
Timens, Wim
Furniss, Dominic
Morris, Andrew P.
Zondervan, Krina T.
Hall, Ian P.
Sayers, Ian
Tobin, Martin D.
Maher, Toby M.
Cho, Michael H.
Hunninghake, Gary M.
Schwartz, David A.
Yaspan, Brian L.
Molyneaux, Philip L.
Flores, Carlos
Noth, Imre
Jenkins, R. Gisli
Wain, Louise V.
Genome-Wide Association Study of Susceptibility to Idiopathic Pulmonary Fibrosis
title Genome-Wide Association Study of Susceptibility to Idiopathic Pulmonary Fibrosis
title_full Genome-Wide Association Study of Susceptibility to Idiopathic Pulmonary Fibrosis
title_fullStr Genome-Wide Association Study of Susceptibility to Idiopathic Pulmonary Fibrosis
title_full_unstemmed Genome-Wide Association Study of Susceptibility to Idiopathic Pulmonary Fibrosis
title_short Genome-Wide Association Study of Susceptibility to Idiopathic Pulmonary Fibrosis
title_sort genome-wide association study of susceptibility to idiopathic pulmonary fibrosis
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7047454/
https://www.ncbi.nlm.nih.gov/pubmed/31710517
http://dx.doi.org/10.1164/rccm.201905-1017OC
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