Whole exome sequencing study identifies novel rare and common Alzheimer's-Associated variants involved in immune response and transcriptional regulation.


Journal

Molecular psychiatry
ISSN: 1476-5578
Titre abrégé: Mol Psychiatry
Pays: England
ID NLM: 9607835

Informations de publication

Date de publication:
08 2020
Historique:
received: 21 12 2017
accepted: 14 05 2018
revised: 01 05 2018
pubmed: 16 8 2018
medline: 23 3 2021
entrez: 16 8 2018
Statut: ppublish

Résumé

The Alzheimer's Disease Sequencing Project (ADSP) undertook whole exome sequencing in 5,740 late-onset Alzheimer disease (AD) cases and 5,096 cognitively normal controls primarily of European ancestry (EA), among whom 218 cases and 177 controls were Caribbean Hispanic (CH). An age-, sex- and APOE based risk score and family history were used to select cases most likely to harbor novel AD risk variants and controls least likely to develop AD by age 85 years. We tested ~1.5 million single nucleotide variants (SNVs) and 50,000 insertion-deletion polymorphisms (indels) for association to AD, using multiple models considering individual variants as well as gene-based tests aggregating rare, predicted functional, and loss of function variants. Sixteen single variants and 19 genes that met criteria for significant or suggestive associations after multiple-testing correction were evaluated for replication in four independent samples; three with whole exome sequencing (2,778 cases, 7,262 controls) and one with genome-wide genotyping imputed to the Haplotype Reference Consortium panel (9,343 cases, 11,527 controls). The top findings in the discovery sample were also followed-up in the ADSP whole-genome sequenced family-based dataset (197 members of 42 EA families and 501 members of 157 CH families). We identified novel and predicted functional genetic variants in genes previously associated with AD. We also detected associations in three novel genes: IGHG3 (p = 9.8 × 10

Identifiants

pubmed: 30108311
doi: 10.1038/s41380-018-0112-7
pii: 10.1038/s41380-018-0112-7
pmc: PMC6375806
mid: NIHMS1000844
doi:

Substances chimiques

Amyloid beta-Peptides 0
Apolipoproteins E 0
Immunoglobulin G 0
Kruppel-Like Transcription Factors 0
RNA, Long Noncoding 0
ZNF655 protein, human 0

Types de publication

Journal Article Research Support, N.I.H., Extramural Research Support, N.I.H., Intramural Research Support, Non-U.S. Gov't

Langues

eng

Sous-ensembles de citation

IM

Pagination

1859-1875

Subventions

Organisme : NIA NIH HHS
ID : R01 AG054076
Pays : United States
Organisme : NHLBI NIH HHS
ID : HHSN268201100011I
Pays : United States
Organisme : NHLBI NIH HHS
ID : R01 HL105756
Pays : United States
Organisme : NIA NIH HHS
ID : U01 AG006781
Pays : United States
Organisme : NIA NIH HHS
ID : U01 AG058635
Pays : United States
Organisme : NHLBI NIH HHS
ID : N01HC85080
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Organisme : NHLBI NIH HHS
ID : HHSN268201100012C
Pays : United States
Organisme : NIA NIH HHS
ID : P30 AG066444
Pays : United States
Organisme : NHLBI NIH HHS
ID : RC2 HL102419
Pays : United States
Organisme : NIA NIH HHS
ID : R01 AG054060
Pays : United States
Organisme : NHLBI NIH HHS
ID : HHSN268201100009I
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Organisme : NIA NIH HHS
ID : R01 AG064877
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ID : P30 AG010124
Pays : United States
Organisme : NIA NIH HHS
ID : U01 AG058654
Pays : United States
Organisme : NHLBI NIH HHS
ID : U01 HL096812
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Organisme : NIA NIH HHS
ID : U54 AG052427
Pays : United States
Organisme : NINDS NIH HHS
ID : R01 NS017950
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Organisme : NHGRI NIH HHS
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Organisme : NHLBI NIH HHS
ID : HHSN268201100010C
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ID : R03 AG054936
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Commentaires et corrections

Type : ErratumIn

Références

Escott-Price V, Bellenguez C, Wang LS, Choi SH, Harold D, Jones L, et al. Gene-wide analysis detects two new susceptibility genes for Alzheimer's disease. PLoS One. 2014;9:e94661.
pubmed: 24922517 pmcid: 4055488
Escott-Price V, Sims R, Bannister C, Harold D, Vronskaya M, Majounie E, et al. Common polygenic variation enhances risk prediction for Alzheimer's disease. Brain. 2015;138:3673–84.
pubmed: 26490334 pmcid: 5006219
Guerreiro R, Wojtas A, Bras J, Carrasquillo M, Rogaeva E, Majounie E, et al. TREM2 variants in Alzheimer's disease. N Engl J Med. 2013;368:117–27.
pubmed: 23150934
Harold D, Abraham R, Hollingworth P, Sims R, Gerrish A, Hamshere ML, et al. Genome-wide association study identifies variants at CLU and PICALM associated with Alzheimer's disease. Nat Genet. 2009;41:1088–93.
pubmed: 2845877 pmcid: 2845877
Hollingworth P, Harold D, Sims R, Gerrish A, Lambert JC, Carrasquillo MM, et al. Common variants at ABCA7, MS4A6A/MS4A4E, EPHA1, CD33 and CD2AP are associated with Alzheimer's disease. Nat Genet. 2011;43:429–35.
pubmed: 21460840 pmcid: 3084173
Jonsson T, Atwal JK, Steinberg S, Snaedal J, Jonsson PV, Bjornsson S, et al. A mutation in APP protects against Alzheimer's disease and age-related cognitive decline. Nature. 2012;488:96–99.
pubmed: 22801501
Jonsson T, Stefansson H, Steinberg S, Jonsdottir I, Jonsson PV, Snaedal J, et al. Variant of TREM2 associated with the risk of Alzheimer's disease. N Engl J Med. 2013;368:107–16.
pubmed: 23150908
Lambert JC, Heath S, Even G, Campion D, Sleegers K, Hiltunen M, et al. Genome-wide association study identifies variants at CLU and CR1 associated with Alzheimer's disease. Nat Genet. 2009;41:1094–9.
pubmed: 19734903
Lambert JC, Ibrahim-Verbaas CA, Harold D, Naj AC, Sims R, Bellenguez C, et al. Meta-analysis of 74,046 individuals identifies 11 new susceptibility loci for Alzheimer's disease. Nat Genet. 2013;45:1452–8.
pubmed: 3896259 pmcid: 3896259
Naj AC, Jun G, Beecham GW, Wang LS, Vardarajan BN, Buros J, et al. Common variants at MS4A4/MS4A6E, CD2AP, CD33 and EPHA1 are associated with late-onset Alzheimer's disease. Nat Genet. 2011;43:436–41.
pubmed: 21460841 pmcid: 3090745
Ruiz A, Heilmann S, Becker T, Hernandez I, Wagner H, Thelen M, et al. Follow-up of loci from the International Genomics of Alzheimer's Disease Project identifies TRIP4 as a novel susceptibility gene. Transl Psychiatry. 2014;4:e358.
pubmed: 24495969 pmcid: 3944635
Seshadri S, Fitzpatrick AL, Ikram MA, DeStefano AL, Gudnason V, Boada M, et al. Genome-wide analysis of genetic loci associated with Alzheimer disease. JAMA. 2010;303:1832–40.
pubmed: 20460622 pmcid: 2989531
Gatz M, Reynolds CA, Fratiglioni L, Johansson B, Mortimer JA, Berg S, et al. Role of genes and environments for explaining Alzheimer disease. Arch Gen Psychiatry. 2006;63:168–74.
pubmed: 16461860
Vardarajan BN, Ghani M, Kahn A, Sheikh S, Sato C, Barral S, et al. Rare coding mutations identified by sequencing of Alzheimer disease genome-wide association studies loci. Ann Neurol. 2015;78:487–98.
pubmed: 26101835 pmcid: 4546546
Vardarajan BN, Zhang Y, Lee JH, Cheng R, Bohm C, Ghani M, et al. Coding mutations in SORL1 and Alzheimer disease. Ann Neurol. 2015;77:215–27.
pubmed: 25382023 pmcid: 4367199
Steinberg S, Stefansson H, Jonsson T, Johannsdottir H, Ingason A, Helgason H, et al. Loss-of-function variants in ABCA7 confer risk of Alzheimer's disease. Nat Genet. 2015;47:445–7.
pubmed: 25807283
Logue MW, Schu M, Vardarajan BN, Farrell J, Bennett DA, Buxbaum JD, et al. Two rare AKAP9 variants are associated with Alzheimer's disease in African Americans. Alzheimers Dement. 2014;10:609–18.
pubmed: 25172201 pmcid: 4253055
Jun G, Asai H, Zeldich E, Drapeau E, Chen C, Chung J, et al. PLXNA4 is associated with Alzheimer disease and modulates tau phosphorylation. Ann Neurol. 2014;76:379–92.
pubmed: 25043464 pmcid: 4830273
Wetzel-Smith MK, Hunkapiller J, Bhangale TR, Srinivasan K, Maloney JA, Atwal JK, et al. A rare mutation in UNC5C predisposes to late-onset Alzheimer's disease and increases neuronal cell death. Nat Med. 2014;20:1452–7.
pubmed: 25419706 pmcid: 4301587
Bodmer W, Bonilla C. Common and rare variants in multifactorial susceptibility to common diseases. Nat Genet. 2008;40:695–701.
pubmed: 18509313 pmcid: 2527050
Schork NJ, Murray SS, Frazer KA, Topol EJ. Common vs. rare allele hypotheses for complex diseases. Curr Opin Genet Dev. 2009;19:212–9.
pubmed: 19481926 pmcid: 2914559
Surakka I, Horikoshi M, Magi R, Sarin AP, Mahajan A, Lagou V, et al. The impact of low-frequency and rare variants on lipid levels. Nat Genet. 2015;47:589–97.
pubmed: 25961943 pmcid: 4757735
Pritchard JK. Are rare variants responsible for susceptibility to complex diseases? Am J Hum Genet. 2001;69:124–37.
pubmed: 11404818 pmcid: 1226027
Rabbani B, Tekin M, Mahdieh N. The promise of whole-exome sequencing in medical genetics. J Hum Genet. 2014;59:5–15.
pubmed: 24196381
McCarthy S, Das S, Kretzschmar W, Delaneau O, Wood AR, Teumer A, et al. A reference panel of 64,976 haplotypes for genotype imputation. Nat Genet. 2016;48:1279–83.
pubmed: 27548312 pmcid: 5388176
Beecham GW, Bis JC, Martin ER, Choi S-H, DeStefano A, van Duijn C, et al. The Alzheimer’s Disease Sequencing Project: study design and sample selection. Neurol Genet. 2017;3:e194.
pubmed: 5646177 pmcid: 5646177
Mirra SS, Hart MN, Terry RD. Making the diagnosis of Alzheimer's disease. A primer for practicing pathologists. Arch Pathol Lab Med. 1993;117:132–44.
pubmed: 8427562
Braak H, Braak E. Neuropathological stageing of Alzheimer-related changes. Acta Neuropathol. 1991;82:239–59.
pubmed: 1759558
Lumley T, Brody J, Dupuis J, Cupples A Meta-analysis of a rare-variant association test: University of Auckland; 2012. http://stattech.wordpress.fos.auckland.ac.nz/files/2012/11/skat-meta-paper.pdf . Technical report.
Lee S, Emond MJ, Bamshad MJ, Barnes KC, Rieder MJ, Nickerson DA, et al. Optimal unified approach for rare-variant association testing with application to small-sample case-control whole-exome sequencing studies. Am J Hum Genet. 2012;91:224–37.
pubmed: 22863193 pmcid: 3415556
Bellenguez C, Charbonnier C, Grenier-Boley B, Quenez O, Le Guennec K, Nicolas G, et al. Contribution to Alzheimer's disease risk of rare variants in TREM2, SORL1, and ABCA7 in 1779 cases and 1273 controls. Neurobiol Aging. 2017;59:220 e221–220 e229.
Loh PR, Danecek P, Palamara PF, Fuchsberger C, A Reshef Y, K Finucane H, et al. Reference-based phasing using the Haplotype Reference Consortium panel. Nat Genet. 2016;48:1443–8.
pubmed: 27694958 pmcid: 5096458
Skol AD, Scott LJ, Abecasis GR, Boehnke M. Joint analysis is more efficient than replication-based analysis for two-stage genome-wide association studies. Nat Genet. 2006;38:209–13.
pubmed: 16415888
Blue EE, Bis JC, Dorschner MO, Tsuang D, Barral SM, Beecham G, et al. Genetic variation in genes underlying diverse dementias may explain a small proportion of cases in the Alzheimer’s Disease Sequencing Project. Dement Ger Cog Disorders. 2018;45:1–17. 45
Beecham GW, Vardarajan BN, Blue E, Barral S, Haines JL, Bush WS, et al. Whole-genome sequencing in familial late-onset Alzheimer's disease identifies variation in AD candidate genes. Alzheimer Dement. 2017;13:P571–P572.
Yan Q, Tiwari HK, Yi N, Gao G, Zhang K, Lin WY, et al. A sequence kernel association test for dichotomous traits in family samples under a generalized linear mixed model. Hum Hered. 2015;79:60–68.
pubmed: 25791389
Liu JZ, Erlich Y, Pickrell JK. Case-control association mapping by proxy using family history of disease. Nat Genet. 2017;49:325–31.
pubmed: 28092683
Neph S, Kuehn MS, Reynolds AP, Haugen E, Thurman RE, Johnson AK, et al. BEDOPS: high-performance genomic feature operations. Bioinformatics. 2012;28:1919–20.
pubmed: 3389768 pmcid: 3389768
Quinlan AR, Hall IM. BEDTools: a flexible suite of utilities for comparing genomic features. Bioinformatics. 2010;26:841–2.
pubmed: 20110278 pmcid: 20110278
Harrow J, Frankish A, Gonzalez JM, Tapanari E, Diekhans M, Kokocinski F, et al. GENCODE: the reference human genome annotation for The ENCODE Project. Genome Res. 2012;22:1760–74.
pubmed: 22955987 pmcid: 22955987
Pruim RJ, Welch RP, Sanna S, Teslovich TM, Chines PS, Gliedt TP, et al. LocusZoom: regional visualization of genome-wide association scan results. Bioinformatics. 2010;26:2336–7.
pubmed: 20634204 pmcid: 2935401
Cuyvers E, De Roeck A, Van den Bossche T, Van Cauwenberghe C, Bettens K, Vermeulen S, et al. Mutations in ABCA7 in a Belgian cohort of Alzheimer's disease patients: a targeted resequencing study. Lancet Neurol. 2015;14:814–22.
pubmed: 26141617
Logue MW, Schu M, Vardarajan BN, Farrell J, Lunetta KL, Jun G, et al. A search for genetic risk variants for age-related macular degeneration in Alzheimer disease genes and pathways. Neurobiol Aging. 2014;35:1510.e7–e1510.e18.
Saftig P, Hartmann D, Lullmann-Rauch R, Wolff J, Evers M, Koster A, et al. Mice deficient in lysosomal acid phosphatase develop lysosomal storage in the kidney and central nervous system. J Biol Chem. 1997;272:18628–35.
pubmed: 9228031
Mannan AU, Roussa E, Kraus C, Rickmann M, Maenner J, Nayernia K, et al. Mutation in the gene encoding lysosomal acid phosphatase (Acp2) causes cerebellum and skin malformation in mouse. Neurogenetics. 2004;5:229–38.
pubmed: 15503243
Houlard M, Romero-Portillo F, Germani A, Depaux A, Regnier-Ricard F, Gisselbrecht S, et al. Characterization of VIK-1: a new Vav-interacting Kruppel-like protein. Oncogene. 2005;24:28–38.
pubmed: 15558030
McConnell BB, Yang VW. Mammalian Kruppel-like factors in health and diseases. Physiol Rev. 2010;90:1337–81.
pubmed: 20959618
Goodrich JA, Kugel JF. Non-coding-RNA regulators of RNA polymerase II transcription. Nature Rev Molec Cell Biol. 2006;7:612–6.
Butler AA, Webb WM, Lubin FD. Regulatory RNAs and control of epigenetic mechanisms: expectations for cognition and cognitive dysfunction. Epigenomics. 2016;8:135–51.
pubmed: 26366811 pmcid: 5514977
Ciarlo E, Massone S, Penna I, Nizzari M, Gigoni A, Dieci G, et al. An intronic ncRNA-dependent regulation of SORL1 expression affecting Aβ formation is upregulated in post-mortem Alzheimer's disease brain samples. Dis Model Mech. 2013;6:424–33.
pubmed: 22996644
Lee DY, Moon J, Lee ST, Jung KH, Park DK, Yoo JS, et al. Distinct expression of long non-coding RNAs in an Alzheimer's disease model. J Alzheimers Dis. 2015;45:837–49.
pubmed: 25624420
O'Nuallain B, Acero L, Williams AD, Koeppen HP, Weber A, Schwarz HP, et al. Human plasma contains cross-reactive Abeta conformer-specific IgG antibodies. Biochemistry. 2008;47:12254–6.
pubmed: 18956886
Pandey JP. Immunoglobulin GM genes as functional risk and protective factors for the development of Alzheimer's disease. J Alzheimers Dis. 2009;17:753–6.
pubmed: 19542624
Adekar SP, Klyubin I, Macy S, Rowan MJ, Solomon A, Dessain SK, et al. Inherent anti-amyloidogenic activity of human immunoglobulin gamma heavy chains. J Biol Chem. 2010;285:1066–74.
pubmed: 19889627
He WB, Banerjee S, Meng LL, Du J, Gong F, Huang H, et al. Whole-exome sequencing identifies a homozygous donor splice-site mutation in STAG3 that causes primary ovarian insufficiency. Clin Genet 2018;93-340–4.
Friedrichs P, Schlotterer A, Sticht C, Kolibabka M, Wohlfart P, Dietrich A, et al. Hyperglycaemic memory affects the neurovascular unit of the retina in a diabetic mouse model. Diabetologia. 2017;60:1354–8.
pubmed: 28321468
Pittaluga A, Feligioni M, Longordo F, Luccini E, Raiteri M. Trafficking of presynaptic AMPA receptors mediating neurotransmitter release: neuronal selectivity and relationships with sensitivity to cyclothiazide. Neuropharmacology. 2006;50:286–96.
pubmed: 16242162
Pountney DL, Raftery MJ, Chegini F, Blumbergs PC, Gai WP. NSF, Unc-18-1, dynamin-1 and HSP90 are inclusion body components in neuronal intranuclear inclusion disease identified by anti-SUMO-1-immunocapture. Acta Neuropathol. 2008;116:603–14.
pubmed: 18836734
Fernandez-Castillo N, Cormand B, Roncero C, Sanchez-Mora C, Grau-Lopez L, Gonzalvo B, et al. Candidate pathway association study in cocaine dependence: the control of neurotransmitter release. World J Biol Psychiatry. 2012;13:126–34.
pubmed: 21426264
Imai C, Sugai T, Iritani S, Niizato K, Nakamura R, Makifuchi T, et al. A quantitative study on the expression of synapsin II and N-ethylmaleimide-sensitive fusion protein in schizophrenic patients. Neurosci Lett. 2001;305:185–8.
pubmed: 11403936
Reitz C, Cheng R, Rogaeva E, Lee JH, Tokuhiro S, Zou F, et al. Meta-analysis of the association between variants in SORL1 and Alzheimer disease. Arch Neurol. 2011;68:99–106.
pubmed: 21220680 pmcid: 3086666
Rogaeva E, Meng Y, Lee JH, Gu Y, Kawarai T, Zou F, et al. The neuronal sortilin-related receptor SORL1 is genetically associated with Alzheimer disease. Nat Genet. 2007;39:168–77.
pubmed: 17220890 pmcid: 2657343
Willnow TE, Andersen OM. Sorting receptor SORLA-a trafficking path to avoid Alzheimer disease. J Cell Sci. 2013;126:2751–60.
pubmed: 23813966
Gavioli EC, de Medeiros IU, Monteiro MC, Calo G, Romao PR. Nociceptin/orphanin FQ-NOP receptor system in inflammatory and immune-mediated diseases. Vitam Horm. 2015;97:241–66.
pubmed: 25677775
Abdel-Mouttalib O. Nociceptin/orphanin-FQ modulation of learning and memory. Vitam Horm. 2015;97:323–45.
pubmed: 25677778
Hashimoto R, Noguchi H, Hori H, Nakabayashi T, Suzuki T, Iwata N, et al. A genetic variation in the dysbindin gene (DTNBP1) is associated with memory performance in healthy controls. World J Biol Psychiatry. 2010;11:431–8.
pubmed: 19353385
Hashimoto R, Noguchi H, Hori H, Ohi K, Yasuda Y, Takeda M, et al. Association between the dysbindin gene (DTNBP1) and cognitive functions in Japanese subjects. Psychiatry Clin Neurosci. 2009;63:550–6.
pubmed: 19496996
Hemmi H, Idoyaga J, Suda K, Suda N, Kennedy K, Noda M, et al. A new triggering receptor expressed on myeloid cells (Trem) family member, Trem-like 4, binds to dead cells and is a DNAX activation protein 12-linked marker for subsets of mouse macrophages and dendritic cells. J Immunol. 2009;182:1278–86.
pubmed: 19155473
Mentrup T, Fluhrer R, Schroder B. Latest emerging functions of SPP/SPPL intramembrane proteases. Eur J Cell Biol. 2017;96:372–82.
pubmed: 28366434
Verkerk AJ, Schot R, Dumee B, Schellekens K, Swagemakers S, Bertoli-Avella AM, et al. Mutation in the AP4M1 gene provides a model for neuroaxonal injury in cerebral palsy. Am J Hum Genet. 2009;85:40–52.
pubmed: 19559397 pmcid: 2706965
Toh WH, Tan JZ, Zulkefli KL, Houghton FJ, Gleeson PA. Amyloid precursor protein traffics from the Golgi directly to early endosomes in an Arl5b- and AP4-dependent pathway. Traffic. 2017;18:159–75.
pubmed: 28000370

Auteurs

Joshua C Bis (JC)

Department of Medicine (General Internal Medicine), University of Washington, Seattle, WA, USA.

Xueqiu Jian (X)

Institute of Molecular Medicine, McGovern Medical School, University of Texas Health Science Center at Houston, Houston, TX, USA.

Brian W Kunkle (BW)

John P. Hussman Institute for Human Genomics, Miller School of Medicine, University of Miami, Miami, FL, USA.

Yuning Chen (Y)

Departments of Biostatistics, Boston University School of Public Health, Boston, MA, USA.

Kara L Hamilton-Nelson (KL)

John P. Hussman Institute for Human Genomics, Miller School of Medicine, University of Miami, Miami, FL, USA.

William S Bush (WS)

Case Western Reserve University, Cleveland Heights, OH, USA.

William J Salerno (WJ)

Human Genome Sequencing Center and Department of Molecular and Human Genetics, Baylor College of Medicine, Houston, TX, USA.

Daniel Lancour (D)

Department of Medicine (Biomedical Genetics), Boston University School of Medicine, Boston, MA, USA.

Yiyi Ma (Y)

Department of Medicine (Biomedical Genetics), Boston University School of Medicine, Boston, MA, USA.

Alan E Renton (AE)

Department of Neuroscience and Ronald M Loeb Center for Alzheimer's Disease, Icahn School of Medicine at Mount Sinai, New York, NY, USA.

Edoardo Marcora (E)

Department of Neuroscience and Ronald M Loeb Center for Alzheimer's Disease, Icahn School of Medicine at Mount Sinai, New York, NY, USA.
Department of Genetics and Genomics Sciences, Icahn School of Medicine at Mount Sinai, New York, NY, USA.

John J Farrell (JJ)

Department of Medicine (Biomedical Genetics), Boston University School of Medicine, Boston, MA, USA.

Yi Zhao (Y)

University of Pennsylvania Perelman School of Medicine, Philadelphia, PA, USA.

Liming Qu (L)

University of Pennsylvania Perelman School of Medicine, Philadelphia, PA, USA.

Shahzad Ahmad (S)

Erasmus University Medical Center, Rotterdam, Netherlands.

Najaf Amin (N)

Inserm, U1167, RID-AGE-Risk Factors and Molecular Determinants of Aging-Related Diseases, Lille, France.

Philippe Amouyel (P)

Inserm, U1167, RID-AGE-Risk Factors and Molecular Determinants of Aging-Related Diseases, Lille, France.
Institut Pasteur de Lille, Lille, France.
University Lille, U1167-Excellence Laboratory LabEx DISTALZ, Lille, France.

Gary W Beecham (GW)

John P. Hussman Institute for Human Genomics, Miller School of Medicine, University of Miami, Miami, FL, USA.

Jennifer E Below (JE)

Department of Medical Genetics, Vanderbilt University Medical Center, Nashville, TN, USA.

Dominique Campion (D)

Department of Genetics and CNR-MAJ, Normandie Université, UNIROUEN, Inserm U1245 and Rouen University Hospital, F 76000, Normandy Centre for Genomic and Personalized Medicine, Rouen, France.
Department of Research, Centre Hospitalier du Rouvray, Sotteville-lès-, Rouen, France.

Laura Cantwell (L)

University of Pennsylvania Perelman School of Medicine, Philadelphia, PA, USA.

Camille Charbonnier (C)

Department of Genetics and CNR-MAJ, Normandie Université, UNIROUEN, Inserm U1245 and Rouen University Hospital, F 76000, Normandy Centre for Genomic and Personalized Medicine, Rouen, France.

Jaeyoon Chung (J)

Department of Medicine (Biomedical Genetics), Boston University School of Medicine, Boston, MA, USA.

Paul K Crane (PK)

Department of Medicine (General Internal Medicine), University of Washington, Seattle, WA, USA.

Carlos Cruchaga (C)

Department of Psychiatry, Washington University, St. Louis, MO, USA.

L Adrienne Cupples (LA)

Departments of Biostatistics, Boston University School of Public Health, Boston, MA, USA.
National Heart, Lung, and Blood Institute's Framingham Heart Study, Framingham, MA, USA.

Jean-François Dartigues (JF)

University of Bordeaux, Inserm, Bordeaux Population Health Research Center, team VINTAGE, UMR 1219, F-33000, Bordeaux, France.

Stéphanie Debette (S)

University of Bordeaux, Inserm, Bordeaux Population Health Research Center, team VINTAGE, UMR 1219, F-33000, Bordeaux, France.
Department of Neurology and Institute for Neurodegenerative Diseases, Bordeaux University Hospital, Memory Clinic, F-33000, Bordeaux, France.

Jean-François Deleuze (JF)

Centre National de Recherche en Génomique Humaine, Institut François Jacob, Direction de le Recherche Fondamentale, CEA, Evry, France.

Lucinda Fulton (L)

McDonnell Genome Institute, Washington University, St. Louis, MO, USA.

Stacey B Gabriel (SB)

Broad Institute of MIT and Harvard, Cambridge, MA, USA.

Emmanuelle Genin (E)

Inserm UMR-1078, CHRU Brest, Université Brest, Brest, France.

Richard A Gibbs (RA)

Human Genome Sequencing Center and Department of Molecular and Human Genetics, Baylor College of Medicine, Houston, TX, USA.

Alison Goate (A)

Department of Neuroscience and Ronald M Loeb Center for Alzheimer's Disease, Icahn School of Medicine at Mount Sinai, New York, NY, USA.
Department of Genetics and Genomics Sciences, Icahn School of Medicine at Mount Sinai, New York, NY, USA.

Benjamin Grenier-Boley (B)

Inserm, U1167, RID-AGE-Risk Factors and Molecular Determinants of Aging-Related Diseases, Lille, France.

Namrata Gupta (N)

Broad Institute of MIT and Harvard, Cambridge, MA, USA.

Jonathan L Haines (JL)

Case Western Reserve University, Cleveland Heights, OH, USA.

Aki S Havulinna (AS)

Institute for Molecular Medicine Finland (FIMM), University of Helsinki, Helsinki, Finland.
National Institute for Health and Welfare, Helsinki, Finland.

Seppo Helisalmi (S)

Institute of Clinical Medicine - Neurology and Department of Neurology, University of Eastern Finland, Kuopio, Finland.

Mikko Hiltunen (M)

Institute of Biomedicine, University of Eastern Finland, Kuopio, Finland.

Daniel P Howrigan (DP)

Program in Medical and Population Genetics and Genetic Analysis Platform, Stanley Center for Psychiatric Research, Broad Institute of MIT and Harvard, Cambridge, MA, USA.
Psychiatric & Neurodevelopmental Genetics Unit, Massachusetts General Hospital, Boston, MA, USA.

M Arfan Ikram (MA)

Erasmus University Medical Center, Rotterdam, Netherlands.

Jaakko Kaprio (J)

Institute for Molecular Medicine Finland (FIMM), University of Helsinki, Helsinki, Finland.

Jan Konrad (J)

Department of Psychiatry, Washington University, St. Louis, MO, USA.

Amanda Kuzma (A)

University of Pennsylvania Perelman School of Medicine, Philadelphia, PA, USA.

Eric S Lander (ES)

Broad Institute of MIT and Harvard, Cambridge, MA, USA.

Mark Lathrop (M)

McGill University and Génome Québec Innovation Centre, Montréal, Canada.

Terho Lehtimäki (T)

Department of Clinical Chemistry, Fimlab Laboratories and Finnish Cardiovascular Research Center-Tampere, Faculty of Medicine and Life Sciences, University of Tampere, Tampere, Finland.

Honghuang Lin (H)

Department of Medicine (Computational Biomedicine), Boston University School of Medicine, Boston, MA, USA.

Kari Mattila (K)

Department of Clinical Chemistry, Fimlab Laboratories and Finnish Cardiovascular Research Center-Tampere, Faculty of Medicine and Life Sciences, University of Tampere, Tampere, Finland.

Richard Mayeux (R)

Columbia University, New York, NY, USA.

Donna M Muzny (DM)

Human Genome Sequencing Center and Department of Molecular and Human Genetics, Baylor College of Medicine, Houston, TX, USA.

Waleed Nasser (W)

Human Genome Sequencing Center and Department of Molecular and Human Genetics, Baylor College of Medicine, Houston, TX, USA.

Benjamin Neale (B)

Program in Medical and Population Genetics and Genetic Analysis Platform, Stanley Center for Psychiatric Research, Broad Institute of MIT and Harvard, Cambridge, MA, USA.
Psychiatric & Neurodevelopmental Genetics Unit, Massachusetts General Hospital, Boston, MA, USA.

Kwangsik Nho (K)

Indiana University School of Medicine, Indianapolis, IN, USA.

Gaël Nicolas (G)

Department of Genetics and CNR-MAJ, Normandie Université, UNIROUEN, Inserm U1245 and Rouen University Hospital, F 76000, Normandy Centre for Genomic and Personalized Medicine, Rouen, France.

Devanshi Patel (D)

Department of Medicine (Biomedical Genetics), Boston University School of Medicine, Boston, MA, USA.

Margaret A Pericak-Vance (MA)

John P. Hussman Institute for Human Genomics, Miller School of Medicine, University of Miami, Miami, FL, USA.

Markus Perola (M)

Institute for Molecular Medicine Finland (FIMM), University of Helsinki, Helsinki, Finland.
National Institute for Health and Welfare, Helsinki, Finland.
University of Tartu, Estonian Genome Center, Tartu, Estonia.

Bruce M Psaty (BM)

Department of Medicine (General Internal Medicine), University of Washington, Seattle, WA, USA.
Department of Epidemiology, University of Washington, Seattle, WA, USA.
Department of Health Services, University of Washington, Seattle, WA, USA.
Kaiser Permanente Washington Health Research Institute, Seattle, WA, USA.

Olivier Quenez (O)

Department of Genetics and CNR-MAJ, Normandie Université, UNIROUEN, Inserm U1245 and Rouen University Hospital, F 76000, Normandy Centre for Genomic and Personalized Medicine, Rouen, France.

Farid Rajabli (F)

John P. Hussman Institute for Human Genomics, Miller School of Medicine, University of Miami, Miami, FL, USA.

Richard Redon (R)

Inserm, CNRS, Univ. Nantes, CHU Nantes, l'institut du thorax, Nantes, France.

Christiane Reitz (C)

Columbia University, New York, NY, USA.

Anne M Remes (AM)

Institute of Clinical Medicine - Neurology and Department of Neurology, University of Eastern Finland, Kuopio, Finland.
Unit of Clinical Neuroscience, Neurology, University of Oulu and Medical Research Center, Oulu University Hospital, Oulu, Finland.

Veikko Salomaa (V)

National Institute for Health and Welfare, Helsinki, Finland.

Chloe Sarnowski (C)

Departments of Biostatistics, Boston University School of Public Health, Boston, MA, USA.

Helena Schmidt (H)

Department of Neurology, Clinical Division of Neurogeriatrics, Medical University of Graz, Graz, Austria.

Michael Schmidt (M)

John P. Hussman Institute for Human Genomics, Miller School of Medicine, University of Miami, Miami, FL, USA.

Reinhold Schmidt (R)

Department of Neurology, Clinical Division of Neurogeriatrics, Medical University of Graz, Graz, Austria.

Hilkka Soininen (H)

Institute of Clinical Medicine - Neurology and Department of Neurology, University of Eastern Finland, Kuopio, Finland.
Department of Neurology, Kuopio University Hospital, Kuopio, Finland.

Timothy A Thornton (TA)

Department of Statistics, University of Washington, Seattle, WA, USA.

Giuseppe Tosto (G)

Columbia University, New York, NY, USA.

Christophe Tzourio (C)

University of Bordeaux, Inserm, Bordeaux Population Health Research Center, team VINTAGE, UMR 1219, F-33000, Bordeaux, France.

Sven J van der Lee (SJ)

Erasmus University Medical Center, Rotterdam, Netherlands.

Cornelia M van Duijn (CM)

Erasmus University Medical Center, Rotterdam, Netherlands.

Otto Valladares (O)

University of Pennsylvania Perelman School of Medicine, Philadelphia, PA, USA.

Badri Vardarajan (B)

Columbia University, New York, NY, USA.

Li-San Wang (LS)

University of Pennsylvania Perelman School of Medicine, Philadelphia, PA, USA.

Weixin Wang (W)

University of Pennsylvania Perelman School of Medicine, Philadelphia, PA, USA.

Ellen Wijsman (E)

Department of Medicine (Medical Genetics), University of Washington, Seattle, WA, USA.
Department of Biostatistics, University of Washington, Seattle, WA, USA.

Richard K Wilson (RK)

McDonnell Genome Institute, Washington University, St. Louis, MO, USA.

Daniela Witten (D)

Department of Statistics, University of Washington, Seattle, WA, USA.
Department of Biostatistics, University of Washington, Seattle, WA, USA.

Kim C Worley (KC)

Human Genome Sequencing Center and Department of Molecular and Human Genetics, Baylor College of Medicine, Houston, TX, USA.

Xiaoling Zhang (X)

Departments of Biostatistics, Boston University School of Public Health, Boston, MA, USA.
Department of Medicine (Biomedical Genetics), Boston University School of Medicine, Boston, MA, USA.

Celine Bellenguez (C)

Inserm, U1167, RID-AGE-Risk Factors and Molecular Determinants of Aging-Related Diseases, Lille, France.

Jean-Charles Lambert (JC)

Inserm, U1167, RID-AGE-Risk Factors and Molecular Determinants of Aging-Related Diseases, Lille, France.

Mitja I Kurki (MI)

Institute for Molecular Medicine Finland (FIMM), University of Helsinki, Helsinki, Finland.
Program in Medical and Population Genetics and Genetic Analysis Platform, Stanley Center for Psychiatric Research, Broad Institute of MIT and Harvard, Cambridge, MA, USA.
Psychiatric & Neurodevelopmental Genetics Unit, Massachusetts General Hospital, Boston, MA, USA.

Aarno Palotie (A)

Institute for Molecular Medicine Finland (FIMM), University of Helsinki, Helsinki, Finland.
Program in Medical and Population Genetics and Genetic Analysis Platform, Stanley Center for Psychiatric Research, Broad Institute of MIT and Harvard, Cambridge, MA, USA.
Psychiatric & Neurodevelopmental Genetics Unit, Massachusetts General Hospital, Boston, MA, USA.

Mark Daly (M)

Broad Institute of MIT and Harvard, Cambridge, MA, USA.
Institute for Molecular Medicine Finland (FIMM), University of Helsinki, Helsinki, Finland.
Psychiatric & Neurodevelopmental Genetics Unit, Massachusetts General Hospital, Boston, MA, USA.

Eric Boerwinkle (E)

Human Genome Sequencing Center and Department of Molecular and Human Genetics, Baylor College of Medicine, Houston, TX, USA.
School of Public Health, University of Texas Health Science Center at Houston, Houston, TX, USA.

Kathryn L Lunetta (KL)

Departments of Biostatistics, Boston University School of Public Health, Boston, MA, USA.

Anita L Destefano (AL)

Departments of Biostatistics, Boston University School of Public Health, Boston, MA, USA.
Departments of Neurology, Boston University School of Medicine, Boston, MA, USA.

Josée Dupuis (J)

Departments of Biostatistics, Boston University School of Public Health, Boston, MA, USA.

Eden R Martin (ER)

John P. Hussman Institute for Human Genomics, Miller School of Medicine, University of Miami, Miami, FL, USA.

Gerard D Schellenberg (GD)

University of Pennsylvania Perelman School of Medicine, Philadelphia, PA, USA.

Sudha Seshadri (S)

National Heart, Lung, and Blood Institute's Framingham Heart Study, Framingham, MA, USA.
Departments of Neurology, Boston University School of Medicine, Boston, MA, USA.
Glenn Biggs Institute for Alzheimer's and Neurodegenerative Diseases, University of Texas Health Sciences Center, San Antonio, TX, USA.

Adam C Naj (AC)

University of Pennsylvania Perelman School of Medicine, Philadelphia, PA, USA.

Myriam Fornage (M)

Institute of Molecular Medicine, McGovern Medical School, University of Texas Health Science Center at Houston, Houston, TX, USA.
School of Public Health, University of Texas Health Science Center at Houston, Houston, TX, USA.

Lindsay A Farrer (LA)

Departments of Biostatistics, Boston University School of Public Health, Boston, MA, USA. farrer@bu.Edu.
Department of Medicine (Biomedical Genetics), Boston University School of Medicine, Boston, MA, USA. farrer@bu.Edu.
Departments of Neurology, Boston University School of Medicine, Boston, MA, USA. farrer@bu.Edu.
Department of Epidemiology, Boston University School of Public Health, Boston, MA, USA. farrer@bu.Edu.
Department of Ophthalmology, Boston University School of Medicine, Boston, MA, USA. farrer@bu.Edu.

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