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Lung Function in African American Children with Asthma Is Associated with Novel Regulatory Variants of the KIT Ligand KITLG/SCF and Gene-By-Air-Pollution Interaction

Baseline lung function, quantified as forced expiratory volume in the first second of exhalation (FEV(1)), is a standard diagnostic criterion used by clinicians to identify and classify lung diseases. Using whole-genome sequencing data from the National Heart, Lung, and Blood Institute Trans-Omics f...

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Autores principales: Mak, Angel C. Y., Sajuthi, Satria, Joo, Jaehyun, Xiao, Shujie, Sleiman, Patrick M., White, Marquitta J., Lee, Eunice Y., Saef, Benjamin, Hu, Donglei, Gui, Hongsheng, Keys, Kevin L., Lurmann, Fred, Jain, Deepti, Abecasis, Gonçalo, Kang, Hyun Min, Nickerson, Deborah A., Germer, Soren, Zody, Michael C., Winterkorn, Lara, Reeves, Catherine, Huntsman, Scott, Eng, Celeste, Salazar, Sandra, Oh, Sam S., Gilliland, Frank D., Chen, Zhanghua, Kumar, Rajesh, Martínez, Fernando D., Wu, Ann Chen, Ziv, Elad, Hakonarson, Hakon, Himes, Blanca E., Williams, L. Keoki, Seibold, Max A., Burchard, Esteban G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Genetics Society of America 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7337089/
https://www.ncbi.nlm.nih.gov/pubmed/32327564
http://dx.doi.org/10.1534/genetics.120.303231
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author Mak, Angel C. Y.
Sajuthi, Satria
Joo, Jaehyun
Xiao, Shujie
Sleiman, Patrick M.
White, Marquitta J.
Lee, Eunice Y.
Saef, Benjamin
Hu, Donglei
Gui, Hongsheng
Keys, Kevin L.
Lurmann, Fred
Jain, Deepti
Abecasis, Gonçalo
Kang, Hyun Min
Nickerson, Deborah A.
Germer, Soren
Zody, Michael C.
Winterkorn, Lara
Reeves, Catherine
Huntsman, Scott
Eng, Celeste
Salazar, Sandra
Oh, Sam S.
Gilliland, Frank D.
Chen, Zhanghua
Kumar, Rajesh
Martínez, Fernando D.
Wu, Ann Chen
Ziv, Elad
Hakonarson, Hakon
Himes, Blanca E.
Williams, L. Keoki
Seibold, Max A.
Burchard, Esteban G.
author_facet Mak, Angel C. Y.
Sajuthi, Satria
Joo, Jaehyun
Xiao, Shujie
Sleiman, Patrick M.
White, Marquitta J.
Lee, Eunice Y.
Saef, Benjamin
Hu, Donglei
Gui, Hongsheng
Keys, Kevin L.
Lurmann, Fred
Jain, Deepti
Abecasis, Gonçalo
Kang, Hyun Min
Nickerson, Deborah A.
Germer, Soren
Zody, Michael C.
Winterkorn, Lara
Reeves, Catherine
Huntsman, Scott
Eng, Celeste
Salazar, Sandra
Oh, Sam S.
Gilliland, Frank D.
Chen, Zhanghua
Kumar, Rajesh
Martínez, Fernando D.
Wu, Ann Chen
Ziv, Elad
Hakonarson, Hakon
Himes, Blanca E.
Williams, L. Keoki
Seibold, Max A.
Burchard, Esteban G.
author_sort Mak, Angel C. Y.
collection PubMed
description Baseline lung function, quantified as forced expiratory volume in the first second of exhalation (FEV(1)), is a standard diagnostic criterion used by clinicians to identify and classify lung diseases. Using whole-genome sequencing data from the National Heart, Lung, and Blood Institute Trans-Omics for Precision Medicine project, we identified a novel genetic association with FEV(1) on chromosome 12 in 867 African American children with asthma (P = 1.26 × 10(−8), β = 0.302). Conditional analysis within 1 Mb of the tag signal (rs73429450) yielded one major and two other weaker independent signals within this peak. We explored statistical and functional evidence for all variants in linkage disequilibrium with the three independent signals and yielded nine variants as the most likely candidates responsible for the association with FEV(1). Hi-C data and expression QTL analysis demonstrated that these variants physically interacted with KITLG (KIT ligand, also known as SCF), and their minor alleles were associated with increased expression of the KITLG gene in nasal epithelial cells. Gene-by-air-pollution interaction analysis found that the candidate variant rs58475486 interacted with past-year ambient sulfur dioxide exposure (P = 0.003, β = 0.32). This study identified a novel protective genetic association with FEV(1), possibly mediated through KITLG, in African American children with asthma. This is the first study that has identified a genetic association between lung function and KITLG, which has established a role in orchestrating allergic inflammation in asthma.
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spelling pubmed-73370892020-07-16 Lung Function in African American Children with Asthma Is Associated with Novel Regulatory Variants of the KIT Ligand KITLG/SCF and Gene-By-Air-Pollution Interaction Mak, Angel C. Y. Sajuthi, Satria Joo, Jaehyun Xiao, Shujie Sleiman, Patrick M. White, Marquitta J. Lee, Eunice Y. Saef, Benjamin Hu, Donglei Gui, Hongsheng Keys, Kevin L. Lurmann, Fred Jain, Deepti Abecasis, Gonçalo Kang, Hyun Min Nickerson, Deborah A. Germer, Soren Zody, Michael C. Winterkorn, Lara Reeves, Catherine Huntsman, Scott Eng, Celeste Salazar, Sandra Oh, Sam S. Gilliland, Frank D. Chen, Zhanghua Kumar, Rajesh Martínez, Fernando D. Wu, Ann Chen Ziv, Elad Hakonarson, Hakon Himes, Blanca E. Williams, L. Keoki Seibold, Max A. Burchard, Esteban G. Genetics Investigations Baseline lung function, quantified as forced expiratory volume in the first second of exhalation (FEV(1)), is a standard diagnostic criterion used by clinicians to identify and classify lung diseases. Using whole-genome sequencing data from the National Heart, Lung, and Blood Institute Trans-Omics for Precision Medicine project, we identified a novel genetic association with FEV(1) on chromosome 12 in 867 African American children with asthma (P = 1.26 × 10(−8), β = 0.302). Conditional analysis within 1 Mb of the tag signal (rs73429450) yielded one major and two other weaker independent signals within this peak. We explored statistical and functional evidence for all variants in linkage disequilibrium with the three independent signals and yielded nine variants as the most likely candidates responsible for the association with FEV(1). Hi-C data and expression QTL analysis demonstrated that these variants physically interacted with KITLG (KIT ligand, also known as SCF), and their minor alleles were associated with increased expression of the KITLG gene in nasal epithelial cells. Gene-by-air-pollution interaction analysis found that the candidate variant rs58475486 interacted with past-year ambient sulfur dioxide exposure (P = 0.003, β = 0.32). This study identified a novel protective genetic association with FEV(1), possibly mediated through KITLG, in African American children with asthma. This is the first study that has identified a genetic association between lung function and KITLG, which has established a role in orchestrating allergic inflammation in asthma. Genetics Society of America 2020-07 2020-04-23 /pmc/articles/PMC7337089/ /pubmed/32327564 http://dx.doi.org/10.1534/genetics.120.303231 Text en Copyright © 2020 by the Genetics Society of America Available freely online through the author-supported open access option.
spellingShingle Investigations
Mak, Angel C. Y.
Sajuthi, Satria
Joo, Jaehyun
Xiao, Shujie
Sleiman, Patrick M.
White, Marquitta J.
Lee, Eunice Y.
Saef, Benjamin
Hu, Donglei
Gui, Hongsheng
Keys, Kevin L.
Lurmann, Fred
Jain, Deepti
Abecasis, Gonçalo
Kang, Hyun Min
Nickerson, Deborah A.
Germer, Soren
Zody, Michael C.
Winterkorn, Lara
Reeves, Catherine
Huntsman, Scott
Eng, Celeste
Salazar, Sandra
Oh, Sam S.
Gilliland, Frank D.
Chen, Zhanghua
Kumar, Rajesh
Martínez, Fernando D.
Wu, Ann Chen
Ziv, Elad
Hakonarson, Hakon
Himes, Blanca E.
Williams, L. Keoki
Seibold, Max A.
Burchard, Esteban G.
Lung Function in African American Children with Asthma Is Associated with Novel Regulatory Variants of the KIT Ligand KITLG/SCF and Gene-By-Air-Pollution Interaction
title Lung Function in African American Children with Asthma Is Associated with Novel Regulatory Variants of the KIT Ligand KITLG/SCF and Gene-By-Air-Pollution Interaction
title_full Lung Function in African American Children with Asthma Is Associated with Novel Regulatory Variants of the KIT Ligand KITLG/SCF and Gene-By-Air-Pollution Interaction
title_fullStr Lung Function in African American Children with Asthma Is Associated with Novel Regulatory Variants of the KIT Ligand KITLG/SCF and Gene-By-Air-Pollution Interaction
title_full_unstemmed Lung Function in African American Children with Asthma Is Associated with Novel Regulatory Variants of the KIT Ligand KITLG/SCF and Gene-By-Air-Pollution Interaction
title_short Lung Function in African American Children with Asthma Is Associated with Novel Regulatory Variants of the KIT Ligand KITLG/SCF and Gene-By-Air-Pollution Interaction
title_sort lung function in african american children with asthma is associated with novel regulatory variants of the kit ligand kitlg/scf and gene-by-air-pollution interaction
topic Investigations
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7337089/
https://www.ncbi.nlm.nih.gov/pubmed/32327564
http://dx.doi.org/10.1534/genetics.120.303231
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