Person: Manning, Alisa
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Publication Stratifying Type 2 Diabetes Cases by BMI Identifies Genetic Risk Variants in LAMA1 and Enrichment for Risk Variants in Lean Compared to Obese Cases
(Public Library of Science, 2012) Perry, John R. B.; Voight, Benjamin F.; Yengo, Loïc; Amin, Najaf; Dupuis, Josée; Ganser, Martha; Grallert, Harald; Navarro, Pau; Li, Man; Steinthorsdottir, Valgerdur; Almgren, Peter; Arking, Dan E.; Aulchenko, Yurii; Balkau, Beverley; Benediktsson, Rafn; Bergman, Richard N.; Boerwinkle, Eric; Bonnycastle, Lori; Burtt, Noël P.; Campbell, Harry; Charpentier, Guillaume; Collins, Francis S.; Gieger, Christian; Green, Todd; Hadjadj, Samy; Hattersley, Andrew T.; Herder, Christian; Kottgen, Anna; Labrune, Yann; Langenberg, Claudia; Mohlke, Karen L.; Morris, Andrew P.; Oostra, Ben; Pankow, James; Petersen, Ann-Kristin; Pramstaller, Peter P.; Prokopenko, Inga; Rathmann, Wolfgang; Rayner, William; Roden, Michael; Rudan, Igor; Rybin, Denis; Sigurdsson, Gunnar; Sladek, Rob; Thorleifsson, Gudmar; Thorsteinsdottir, Unnur; Tuomilehto, Jaakko; Uitterlinden, Andre G.; Vivequin, Sidonie; Weedon, Michael N.; Wright, Alan F.; Illig, Thomas; Kao, Linda; Wilson, James F.; Stefansson, Kari; van Duijn, Cornelia; Altschuler, David; Morris, Andrew D.; Boehnke, Michael; McCarthy, Mark I.; Froguel, Philippe; Palmer, Colin N. A.; Wareham, Nicholas J.; Groop, Leif; Frayling, Timothy M.; Cauchi, Stéphane; Qi, Lu; Scott, Robert A.; Hofman, Albert; Johnson, Andrew D.; Kraft, Peter; Manning, Alisa; Scott, Laura J.; Hu, Frank; Meigs, JamesCommon diseases such as type 2 diabetes are phenotypically heterogeneous. Obesity is a major risk factor for type 2 diabetes, but patients vary appreciably in body mass index. We hypothesized that the genetic predisposition to the disease may be different in lean (BMI<25 Kg/m(^2)) compared to obese cases (BMI(\geq)30 Kg/m(^2)). We performed two case-control genome-wide studies using two accepted cut-offs for defining individuals as overweight or obese. We used 2,112 lean type 2 diabetes cases (BMI<25 kg/m(^2)) or 4,123 obese cases (BMI(\geq)30 kg/m(^2)), and 54,412 un-stratified controls. Replication was performed in 2,881 lean cases or 8,702 obese cases, and 18,957 un-stratified controls. To assess the effects of known signals, we tested the individual and combined effects of SNPs representing 36 type 2 diabetes loci. After combining data from discovery and replication datasets, we identified two signals not previously reported in Europeans. A variant (rs8090011) in the LAMA1 gene was associated with type 2 diabetes in lean cases (P = 8.4×10(^{-9}), OR = 1.13 [95% CI 1.09–1.18]), and this association was stronger than that in obese cases (P = 0.04, OR = 1.03 [95% CI 1.00–1.06]). A variant in HMG20A—previously identified in South Asians but not Europeans—was associated with type 2 diabetes in obese cases (P = 1.3×10(^{-8}), OR = 1.11 [95% CI 1.07–1.15]), although this association was not significantly stronger than that in lean cases (P = 0.02, OR = 1.09 [95% CI 1.02–1.17]). For 36 known type 2 diabetes loci, 29 had a larger odds ratio in the lean compared to obese (binomial P = 0.0002). In the lean analysis, we observed a weighted per-risk allele OR = 1.13 [95% CI 1.10–1.17], P = 3.2×10(^{-14}) This was larger than the same model fitted in the obese analysis where the OR = 1.06 [95% CI 1.05–1.08], P = 2.2×10(^{-16}). This study provides evidence that stratification of type 2 diabetes cases by BMI may help identify additional risk variants and that lean cases may have a stronger genetic predisposition to type 2 diabetes.
Publication Genome-Wide Joint Meta-Analysis of SNP and SNP-by-Smoking Interaction Identifies Novel Loci for Pulmonary Function
(Public Library of Science, 2012) Hancock, Dana B.; Artigas, María Soler; Gharib, Sina A.; Henry, Amanda; Manichaikul, Ani; Ramasamy, Adaikalavan; Loth, Daan W.; Imboden, Medea; Koch, Beate; McArdle, Wendy L.; Smith, Albert V.; Smolonska, Joanna; Sood, Akshay; Tang, Wenbo; Zhai, Guangju; Burkart, Kristin M.; Curjuric, Ivan; Eijgelsheim, Mark; Elliott, Paul; Gu, Xiangjun; Harris, Tamara B.; Janson, Christer; Homuth, Georg; Hysi, Pirro G.; Loehr, Laura R.; Lohman, Kurt; Loos, Ruth J. F.; Marciante, Kristin D.; Obeidat, Ma'en; Postma, Dirkje S.; Aldrich, Melinda C.; Brusselle, Guy G.; Eiriksdottir, Gudny; Franceschini, Nora; Heinrich, Joachim; Rotter, Jerome I.; Wijmenga, Cisca; Bentley, Amy R.; Laurie, Cathy C.; Lumley, Thomas; Morrison, Alanna C.; Joubert, Bonnie R.; Rivadeneira, Fernando; Couper, David J.; Kritchevsky, Stephen B.; Liu, Yongmei; Wjst, Matthias; Wain, Louise V.; Vonk, Judith M.; Uitterlinden, André G.; Rochat, Thierry; Rich, Stephen S.; Psaty, Bruce M.; O'Connor, George T.; North, Kari E.; Mirel, Daniel B.; Meibohm, Bernd; Launer, Lenore J.; Khaw, Kay-Tee; Hartikainen, Anna-Liisa; Hammond, Christopher J.; Gläser, Sven; Marchini, Jonathan; Wareham, Nicholas J.; Völzke, Henry; Stricker, Bruno H. C.; Spector, Timothy D.; Probst-Hensch, Nicole M.; Jarvis, Deborah; Jarvelin, Marjo-Riitta; Heckbert, Susan R.; Gudnason, Vilmundur; Boezen, H. Marike; Barr, R. Graham; Cassano, Patricia A.; Strachan, David P.; Fornage, Myriam; Hall, Ian P.; Dupuis, Josée; Tobin, Martin D.; London, Stephanie J.; Wilk, Jemma; Zhao, Jing Hua; Aschard, Hugues; Liu, Jason Z.; Manning, Alisa; Chen, Ting-Hsu; Williams, O. Dale; Kraft, Phillip; Hofman, AlbertGenome-wide association studies have identified numerous genetic loci for spirometic measures of pulmonary function, forced expiratory volume in one second ((FEV_1)), and its ratio to forced vital capacity ((FEV_1/FVC)). Given that cigarette smoking adversely affects pulmonary function, we conducted genome-wide joint meta-analyses (JMA) of single nucleotide polymorphism (SNP) and SNP-by-smoking (ever-smoking or pack-years) associations on (FEV_1) and (FEV_1/FVC) across 19 studies (total N = 50,047). We identified three novel loci not previously associated with pulmonary function. SNPs in or near DNER (smallest (P_{JMA} = 5.00×10^{−11})), HLA-DQB1 and HLA-DQA2 (smallest (P_{JMA} = 4.35×10^{−9})), and KCNJ2 and SOX9 (smallest (P_{JMA} = 1.28×10^{−8})) were associated with (FEV_1/FVC) or (FEV_1) in meta-analysis models including SNP main effects, smoking main effects, and SNP-by-smoking (ever-smoking or pack-years) interaction. The HLA region has been widely implicated for autoimmune and lung phenotypes, unlike the other novel loci, which have not been widely implicated. We evaluated DNER, KCNJ2, and SOX9 and found them to be expressed in human lung tissue. DNER and SOX9 further showed evidence of differential expression in human airway epithelium in smokers compared to non-smokers. Our findings demonstrated that joint testing of SNP and SNP-by-environment interaction identified novel loci associated with complex traits that are missed when considering only the genetic main effects.