Genome-Wide Association Study of Late-Onset Myasthenia Gravis: Confirmation of TNFRSF11A and Identification of ZBTB10 and Three Distinct HLA Associations

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作者
Michael F. Seldin
Omar K. Alkhairy
Annette T. Lee
Janine A. Lamb
Jon Sussman
Ritva Pirskanen-Matell
Fredrik Piehl
Jan J. G. M. Verschuuren
Anna Kostera-Pruszczyk
Piotr Szczudlik
David McKee
Angelina H. Maniaol
Hanne F. Harbo
Benedicte A. Lie
Arthur Melms
Henri-Jean Garchon
Nicholas Willcox
Peter K. Gregersen
Lennart Hammarstrom
机构
[1] University of California,Department of Biochemistry and Molecular Medicine, and Department of Medicine
[2] Karolinska Institutet at Karolinska University Hospital Huddinge,Division of Clinical Immunology
[3] Feinstein Institute for Medical Research,The Robert S. Boas Center for Genomics and Human Genetics
[4] North Shore-LIJ Health System,Centre for Integrated Genomic Medical Research, Manchester Academic Health Science Centre
[5] University of Manchester,Department of Neurology
[6] Greater Manchester Neuroscience Centre,Department of Neurology
[7] Karolinska University Hospital Solna,Department of Neurology
[8] Leiden University Medical Center,Department of Neurology
[9] Medical University of Warsaw,Department of Neurology
[10] Oslo University Hospital,Department of Neurology
[11] Oslo University Hospital and University of Oslo,Department of Medical Genetics
[12] University of Oslo and Oslo University Hospital,Department of Neurology
[13] Tübingen University Medical Center,Neurologische Klinik
[14] Universitätsklinikum Erlangen,INSERM U1173
[15] University of Versailles,Nuffield Department of Clinical Neurosciences, Weatherall Institute for Molecular Medicine
[16] University of Oxford,undefined
来源
Molecular Medicine | 2015年 / 21卷
关键词
Zinc Finger And BTB Domain Containing 16 (ZBTB10); Late-onset Myasthenia Gravis (LOMG); Imputed Genome-wide Association Studies; Early-onset Myasthenia Gravis (EOMG); Single Nucleotide Polymorphisms (SNPs);
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摘要
To investigate the genetics of late-onset myasthenia gravis (LOMG), we conducted a genome-wide association study imputation of >6 million single nucleotide polymorphisms (SNPs) in 532 LOMG cases (anti-acetylcholine receptor [AChR] antibody positive; onset age ≥50 years) and 2,128 controls matched for sex and population substructure. The data confirm reported TNFRSF11A associations (rs4574025, P = 3.9 × 10−7, odds ratio [OR] 1.42) and identify a novel candidate gene, ZBTB10, achieving genome-wide significance (rs6998967, P = 8.9 × 10−10, OR 0.53). Several other SNPs showed suggestive significance including rs2476601 (P = 6.5 × 10−6, OR 1.62) encoding the PTPN22 R620W variant noted in early-onset myasthenia gravis (EOMG) and other autoimmune diseases. In contrast, EOMG-associated SNPs in TNIP1 showed no association in LOMG, nor did other loci suggested for EOMG. Many SNPs within the major histocompatibility complex (MHC) region showed strong associations in LOMG, but with smaller effect sizes than in EOMG (highest OR ∼2 versus ∼6 in EOMG). Moreover, the strongest associations were in opposite directions from EOMG, including an OR of 0.54 for DQA1*05:01 in LOMG (P = 5.9 × 10−12) versus 2.82 in EOMG (P = 3.86 × 10−45). Association and conditioning studies for the MHC region showed three distinct and largely independent association peaks for LOMG corresponding to (a) MHC class II (highest attenuation when conditioning on DQA1), (b) HLA-A and (c) MHC class III SNPs. Conditioning studies of human leukocyte antigen (HLA) amino acid residues also suggest potential functional correlates. Together, these findings emphasize the value of subgrouping myasthenia gravis patients for clinical and basic investigations and imply distinct predisposing mechanisms in LOMG.
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页码:769 / 781
页数:12
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