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全基因组关联研究鉴定慢性阻塞性肺疾病中与气道反应性相关的新基因座

Genome-Wide Association Study Identification of Novel Loci Associated with Airway Responsiveness in Chronic Obstructive Pulmonary Disease.

作者信息

Hansel Nadia N, Paré Peter D, Rafaels Nicholas, Sin Don D, Sandford Andrew, Daley Denise, Vergara Candelaria, Huang Lili, Elliott W Mark, Pascoe Chris D, Arsenault Bryna A, Postma Dirkje S, Boezen H Marike, Bossé Yohan, van den Berge Maarten, Hiemstra Pieter S, Cho Michael H, Litonjua Augusto A, Sparrow David, Ober Carole, Wise Robert A, Connett John, Neptune Enid R, Beaty Terri H, Ruczinski Ingo, Mathias Rasika A, Barnes Kathleen C

机构信息

1 Department of Medicine, School of Medicine; and.

Departments of 2 Environmental Health Sciences.

出版信息

Am J Respir Cell Mol Biol. 2015 Aug;53(2):226-34. doi: 10.1165/rcmb.2014-0198OC.

Abstract

Increased airway responsiveness is linked to lung function decline and mortality in subjects with chronic obstructive pulmonary disease (COPD); however, the genetic contribution to airway responsiveness remains largely unknown. A genome-wide association study (GWAS) was performed using the Illumina (San Diego, CA) Human660W-Quad BeadChip on European Americans with COPD from the Lung Health Study. Linear regression models with correlated meta-analyses, including data from baseline (n = 2,814) and Year 5 (n = 2,657), were used to test for common genetic variants associated with airway responsiveness. Genotypic imputation was performed using reference 1000 Genomes Project data. Expression quantitative trait loci (eQTL) analyses in lung tissues were assessed for the top 10 markers identified, and immunohistochemistry assays assessed protein staining for SGCD and MYH15. Four genes were identified within the top 10 associations with airway responsiveness. Markers on chromosome 9p21.2 flanked by LINGO2 met a predetermined threshold of genome-wide significance (P < 9.57 × 10(-8)). Markers on chromosomes 3q13.1 (flanked by MYH15), 5q33 (SGCD), and 6q21 (PDSS2) yielded suggestive evidence of association (9.57 × 10(-8) < P ≤ 4.6 × 10(-6)). Gene expression studies in lung tissue showed single nucleotide polymorphisms on chromosomes 5 and 3 to act as eQTL for SGCD (P = 2.57 × 10(-9)) and MYH15 (P = 1.62 × 10(-6)), respectively. Immunohistochemistry confirmed localization of SGCD protein to airway smooth muscle and vessels and MYH15 to airway epithelium, vascular endothelium, and inflammatory cells. We identified novel loci associated with airway responsiveness in a GWAS among smokers with COPD. Risk alleles on chromosomes 5 and 3 acted as eQTLs for SGCD and MYH15 messenger RNA, and these proteins were expressed in lung cells relevant to the development of airway responsiveness.

摘要

气道反应性增加与慢性阻塞性肺疾病(COPD)患者的肺功能下降及死亡率相关;然而,基因对气道反应性的影响在很大程度上仍不清楚。我们使用Illumina(加利福尼亚州圣地亚哥)Human660W-Quad BeadChip芯片,对来自肺部健康研究的患有COPD的欧裔美国人进行了全基因组关联研究(GWAS)。采用包含基线(n = 2814)和第5年(n = 2657)数据的相关荟萃分析的线性回归模型,来检测与气道反应性相关的常见基因变异。利用千人基因组计划参考数据进行基因型插补。对所确定的前10个标记物进行肺组织中的表达定量性状基因座(eQTL)分析,并通过免疫组织化学检测评估SGCD和MYH15的蛋白染色情况。在与气道反应性的前10个关联中鉴定出了4个基因。位于9号染色体p21.2上且两侧为LINGO2 的标记物达到了全基因组显著性的预定阈值(P < 9.57×10⁻⁸)。位于3号染色体q13.1(两侧为MYH15)、5号染色体q33(SGCD)和6号染色体q21(PDSS2)上的标记物产生了关联的提示性证据(9.57×10⁻⁸ < P ≤ 4.6×10⁻⁶)。肺组织中的基因表达研究表明,5号和3号染色体上的单核苷酸多态性分别作为SGCD(P = 2.57×10⁻⁹)和MYH15(P = 1.62×10⁻⁶)的eQTL。免疫组织化学证实SGCD蛋白定位于气道平滑肌和血管,MYH15定位于气道上皮、血管内皮和炎性细胞。我们在患有COPD的吸烟者的GWAS中鉴定出了与气道反应性相关的新基因座。5号和3号染色体上的风险等位基因作为SGCD和MYH15信使RNA的eQTL,并且这些蛋白在与气道反应性发展相关的肺细胞中表达。

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