Multi-trait analysis of genome-wide association summary statistics using MTAG.
- Authors
- Turley, Patrick; Walters, Raymond K; Maghzian, Omeed; Okbay, Aysu; Lee, James J; Fontana, Mark Alan; Nguyen-Viet, Tuan Anh; Wedow, Robbee; Zacher, Meghan; Furlotte, Nicholas A; 23andMe Research Team; Social Science Genetic Association Consortium; Magnusson, Patrik; Oskarsson, Sven; Johannesson, Magnus; Visscher, Peter M; Laibson, David; Cesarini, David; Neale, Benjamin M; Benjamin, Daniel J
- Year
- 2018
- Journal
- Nature genetics
- PMID
- 29292387
- DOI
- 10.1038/s41588-017-0009-4
- PMCID
- PMC5805593
We introduce multi-trait analysis of GWAS (MTAG), a method for joint analysis of summary statistics from genome-wide association studies (GWAS) of different traits, possibly from overlapping samples. We apply MTAG to summary statistics for depressive symptoms (N β=β354,862), neuroticism (Nβ=β168,105), and subjective well-being (Nβ=β388,538). As compared to the 32, 9, and 13 genome-wide significant loci identified in the single-trait GWAS (most of which are themselves novel), MTAG increases the number of associated loci to 64, 37, and 49, respectively. Moreover, association statistics from MTAG yield more informative bioinformatics analyses and increase the variance explained by polygenic scores by approximately 25%, matching theoretical expectations.
Bias in standard errors from ignoring sampling variation in β^ and Ξ©^The y-axis is the percent increase in (Ο2β1) of the MTAG test statistics from using estimated values of β and Ξ© rather than the true values. Each line corresponds to results from applying MTAG to identically powered single-trait GWASs of T traits. For every pair of traits, the correlation in true effect sizes is (a) rΞ²=0, (b) rΞ²=0.7. Complete results for the full set of simulation scenarios can be found in Supplementary Note.
Evaluation of MTAGβs standard errors when there is sample overlapThe x-axis is a SNPβs z-statistic from a baseline GWAS conducted in UK Biobank. The y-axis is a SNPβs z-statistic from applying MTAG to three GWASs of each trait conducted on equally sized subsamples of the baseline sample, in which every pair of samples has 50% overlap. (a) Height. (b) Depressive symptoms. The figure illustrates near-perfect alignment. See Supplementary Note for details and results from analogous analyses on additional phenotypes.
Cohorts included in GWAS meta-analyses for DEP, NEUR, and SWBIn UKB, the sample overlap in the summary statistics across the traits is known, whereas in 23andMe, the sample overlap in the summary statistics is unknown. MTAG accounts for both sources of overlap. SSGAC results,20 GPC results,19 GERA results,18 and 23andMe results for DEP21 all come from previously published work. The data from 23andMe for SWB are newly analyzed data for this paper. Data from the UKB for all three traits has been previously published,20 although we re-analyze it in this paper with slightly different protocols. Neff is used instead of N when the cohort has case-control data (Supplementary Note). The sample size listed for each cohort corresponds to the maximum sample size across all SNPs available for that cohort. The total sample size for each trait corresponds to the maximum sample size among the SNPs available after applying MTAG filters. For details, see Supplementary Note.
Manhattan plots of GWAS and MTAG results(a) DEP, (b) NEUR, (c) SWB. The left and right plots display the GWAS and MTAG results, respectively, for a fixed set of SNPs. The x-axis is chromosomal position, and the y-axis is the significance on a β log10scale. The upper dashed line marks the threshold for genome-wide significance ( P=5Γ10β8), and the lower line marks the threshold for nominal significance ( P=10β5). Each approximately independent genome-wide significant association (βlead SNPβ) is marked by Γ. The mean Ο2-statistic across all SNPs included in the analysis is displayed in the top left corner of each plot.
Regression-based test of replicability of MTAG-identified lociFor each trait and in each of two independent replication cohorts (HRS and Add Health, combined N = 12,641), we regressed the estimated effect sizes of the MTAG-identified loci on their winnerβs-curse-adjusted MTAG effect sizes. The intercept is constrained to zero in these regressions. The plotted regression coefficients are the sample-size-weighted means across the replication cohorts, with 95% intervals. See Supplementary Note for details and cohort-level results.
Predictive power of GWAS- and MTAG-based polygenic scoresIncremental R2 is the increase in R2 from a linear regression of the trait on the polygenic score and covariates, relative to a linear regression of the trait on only covariates. The plotted incremental R2βs (and differences in incremental R2βs) are the sample-size-weighted means across the replication cohorts (HRS and Add Health, combined N = 12,641), with 95% intervals. See Supplementary Note for details and cohort-level results. (a) Incremental R2 of MTAG-based and GWAS-based polygenic scores. (b) Incremental R2 of polygenic scores constructed from the MTAG results for the predicted trait (βown-trait scoreβ) or MTAG results for each of the other traits (βother-trait scoreβ). The x-axis indicates the trait being predicted, and the bar color indicates which traitβs polygenic score is used. (c) Difference in incremental R2 between the GWAS- and the MTAG-based PGS. Red dots indicate the theoretically predicted gains in prediction accuracy (Online Methods). (d) Difference in incremental R2 between own-trait scores and the mean of the incremental R2βs from the other-trait scores.
Biological annotation for DEP using the bioinformatics tool DEPICT(a) Results of the tissue-enrichment analysis based on the GWAS and MTAG results. The x-axis lists the tissues tested for enrichment, grouped by the location of the tissue. The y-axis is statistical significance on a β log10 scale. The horizontal dashed line corresponds to a false discovery rate of 0.05, which is the threshold used to identify prioritized tissues. (b) Gene-set clusters as defined by the Affinity Propagation algorithm23 over the gene sets from the MTAG results. The algorithm names clusters after an exemplary member of the gene set. The color of the point signifies the P value of the most significant gene set in the cluster. The line thickness between the gene-set clusters corresponds to the correlation between the named gene sets for each pair of clusters.
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| The role of social and genetic factors in partnership trajectories and later life health. | Lin MJ | β | 2025 | β |
| Trade-offs in modeling context dependency in complex trait genetics. | Weine E et al. | β | 2025 | β |
| Transformer-based deep learning enhances discovery in migraine GWAS. | Meng Z et al. | β | 2025 | β |
| Uncovering pleiotropic loci in allergic rhinitis and leukocyte traits through multi-trait GWAS. | Yang L et al. | β | 2025 | β |
| Unravelling the genetic architecture of cerebral small vessel disease in the context of stroke. | Chakkarai S et al. | β | 2025 | β |
| Whole exome sequencing identified six novel genes for depressive symptoms. | Li ZY et al. | β | 2025 | β |
| Whole-genome sequencing analyses suggest novel genetic factors associated with Alzheimer's disease and a cumulative effects model for risk liability. | Kim JP et al. | β | 2025 | β |
| Abdominal aortic aneurysm and cardiometabolic traits share strong genetic susceptibility to lipid metabolism and inflammation. | Zheng S et al. | β | 2024 | β |
| A comprehensive framework for trans-ancestry pathway analysis using GWAS summary data from diverse populations. | Fu S et al. | β | 2024 | β |
| A framework for conducting GWAS using repeated measures data with an application to childhood BMI. | Burrows K et al. | β | 2024 | β |
| A genome-wide association meta-analysis of all-cause and vascular dementia. | Mega Vascular Cognitive Impairment and Dementia (MEGAVCID) consortium | β | 2024 | β |
| A genome-wide association study of 24-hour urinary excretion of endocrine disrupting chemicals. | Lu X et al. | β | 2024 | β |
| A genome-wide cross-trait analysis identifies shared loci and causal relationships of obesity and lipidemic traits with psoriasis. | Wu Y et al. | β | 2024 | β |
| A genome-wide cross-trait analysis identifying shared genetic basis and causal relationships between Hunner-type interstitial cystitis and autoimmune diseases in East Asian populations. | Lyu X et al. | β | 2024 | β |
| A linear weighted combination of polygenic scores for a broad range of traits improves prediction of coronary heart disease. | Norland K et al. | β | 2024 | β |
| A multitrait genetic study of hemostatic factors and hemorrhagic transformation after stroke treatment. | Gallego-Fabrega C et al. | β | 2024 | β |
| An adaptive and robust method for multi-trait analysis of genome-wide association studies using summary statistics. | Deng Q et al. | β | 2024 | β |
| Association between fruit intake and non-small cell lung cancer: a Mendelian randomization study. | Pan C et al. | β | 2024 | β |
| Association between inflammatory bowel disease and osteoporosis in European and East Asian populations: exploring causality, mediation by nutritional status, and shared genetic architecture. | Kang J et al. | β | 2024 | β |
| Association between social isolation and depression: Evidence from longitudinal and Mendelian randomization analyses. | Zhu S et al. | β | 2024 | β |
| Associations between special diet and incidence risk of osteoporosis: a Mendelian randomization study. | Zhou C et al. | β | 2024 | β |
| Autoencoder-based phenotyping of ophthalmic images highlights genetic loci influencing retinal morphology and provides informative biomarkers. | Sergouniotis PI et al. | β | 2024 | β |
| Biomarker-Guided Tailored Therapy in Major Depression. | Perna G et al. | β | 2024 | β |
| Causal association and shared genetics between telomere length and COVID-19 outcomes: New evidence from the latest large-scale summary statistics. | Zhang J et al. | β | 2024 | β |
| Causality between COVID-19 and multiple myeloma: a two-sample Mendelian randomization study and Bayesian co-localization. | Wang S et al. | β | 2024 | β |
| Causal relationships between serum albumin, neuroticism and suicidal ideation in depressed patients: A Mendelian randomization study. | Yuan D et al. | β | 2024 | β |
| Comment on "Cognitive performance protects against Alzheimer's disease independently of educational attainment and intelligence" by Hu et al. | Xia C et al. | β | 2024 | β |
| Correlation between benign prostatic hyperplasia and comorbidities: a systematic analysis integrating global burden of disease and mendelian randomization study. | Song Z et al. | β | 2024 | β |
| DINGO: increasing the power of locus discovery in maternal and fetal genome-wide association studies of perinatal traits. | Hwang LD et al. | β | 2024 | β |
| Dissecting shared genetic architecture between depression and body mass index. | Zhang H et al. | β | 2024 | β |
| Dual-trait genomic analysis in highly stratified Arabidopsis thaliana populations using genome-wide association summary statistics. | Feng X et al. | β | 2024 | β |
| Estimating the overall fraction of phenotypic variance attributed to high-dimensional predictors measured with error. | Mandal S et al. | β | 2024 | β |
| Evaluating the cost-effectiveness of polygenic risk score-stratified screening for abdominal aortic aneurysm. | Kelemen M et al. | β | 2024 | β |
| Exploring autism spectrum disorder and co-occurring trait associations to elucidate multivariate genetic mechanisms and insights. | Salenius K et al. | β | 2024 | β |
| Exploring the Shared Genetic Architecture Between Obstructive Sleep Apnea and Body Mass Index. | Zhou P et al. | β | 2024 | β |
| GbyE: an integrated tool for genome widely association study and genome selection based on genetic by environmental interaction. | Liu X et al. | β | 2024 | β |
| Gene Γ environment effects and mediation involving adverse childhood events, mood and anxiety disorders, and substance dependence. | Kranzler HR et al. | β | 2024 | β |
| Generalized genetic liability to substance use disorders. | Miller AP et al. | β | 2024 | β |
| Genetic analyses identify evidence for a causal relationship between Ewing sarcoma and hernias. | Yang T et al. | β | 2024 | β |
| Genetic Analysis of Perceived Youthfulness Reveals Differences in How Men's and Women's Age Is Assessed. | Ingold N et al. | β | 2024 | β |
| Genetic and non-genetic predictors of risk for opioid dependence. | Na PJ et al. | β | 2024 | β |
| Genetic association and causal effects between inflammatory bowel disease and conjunctivitis. | Chang S et al. | β | 2024 | β |
| Genetic Association of Juvenile Idiopathic Arthritis With Adult Rheumatic Disease. | Fan J et al. | β | 2024 | β |
| Genetic correlation between smoking behavior and gastroesophageal reflux disease: insights from integrative multi-omics data. | Yan Z et al. | β | 2024 | β |
| Genetic Correlations between Migraine and Carpal Tunnel Syndrome. | Wiberg A et al. | β | 2024 | β |
| Genetic correlation, shared loci, but no causality between bipolar disorder and inflammatory bowel disease: A genome-wide pleiotropic analysis. | Wang BR et al. | β | 2024 | β |
| Genetic influences on depression and selection into adverse life experiences. | Rauf T et al. | β | 2024 | β |
| Genetic mapping across autoimmune diseases reveals shared associations and mechanisms. | Lincoln MR et al. | β | 2024 | β |
| Genetic Predisposition of Different Social Status Indicators in Men and Women. | Fieder M et al. | β | 2024 | β |
| Genetic variants for head size share genes and pathways with cancer. | Knol MJ et al. | β | 2024 | β |
| Genome-Wide Analyses of Vocabulary Size in Infancy and Toddlerhood: Associations With Attention-Deficit/Hyperactivity Disorder, Literacy, and Cognition-Related Traits. | Verhoef E et al. | β | 2024 | β |
| Genome-wide association analysis provides insights into the molecular etiology of dilated cardiomyopathy. | Zheng SL et al. | β | 2024 | β |
| Genome-wide association study of maternal plasma metabolites during pregnancy. | Liu S et al. | β | 2024 | β |
| Genome-wide association study reveals mechanisms underlying dilated cardiomyopathy and myocardial resilience. | Jurgens SJ et al. | β | 2024 | β |
| Genome-wide large-scale multi-trait analysis characterizes global patterns of pleiotropy and unique trait-specific variants. | Qi G et al. | β | 2024 | β |
| Genome-wide meta-analysis identifies 22 loci for normal tension glaucoma with significant overlap with high tension glaucoma. | Diaz-Torres S et al. | β | 2024 | β |
| Genome-Wide Meta-analysis Identifies Risk Loci and Improves Disease Prediction of Age-Related Macular Degeneration. | He W et al. | β | 2024 | β |
| Genome-wide meta-analysis of ascertainment and symptom structures of major depression in case-enriched and community cohorts. | Adams MJ et al. | β | 2024 | β |
| Genomic analysis of intracranial and subcortical brain volumes yields polygenic scores accounting for variation across ancestries. | GarcΓa-MarΓn LM et al. | β | 2024 | β |
| GWAS for systemic sclerosis identifies six novel susceptibility loci including one in the FcΞ³ receptor region. | Ishikawa Y et al. | β | 2024 | β |
| How Real-World Data Can Facilitate the Development of Precision Medicine Treatment in Psychiatry. | Koch E et al. | β | 2024 | β |
| Hypometric genetics: Improved power in genetic discovery by incorporating quality control flags. | Tanigawa Y et al. | β | 2024 | β |
| Identification of genetic basis of brain imaging by group sparse multi-task learning leveraging summary statistics. | Xi D et al. | β | 2024 | β |
| Identification of Genetic Loci Associated With Intracerebral Hemorrhage Using a Multitrait Analysis Approach. | MuiΓ±o E et al. | β | 2024 | β |
| Identifying Common Genetic Etiologies Between Inflammatory Bowel Disease and Related Immune-Mediated Diseases. | Liu X et al. | β | 2024 | β |
| Identifying pleiotropic genes via the composite test amidst the complexity of polygenic traits. | Lai EY et al. | β | 2024 | β |
| Identifying risk loci for FTD and shared genetic component with ALS: A large-scale multitrait association analysis. | Chen K et al. | β | 2024 | β |
| Identifying risk loci for obsessive-compulsive disorder and shared genetic component with schizophrenia: A large-scale multi-trait association analysis with summary statistics. | Dai J et al. | β | 2024 | β |
| Independent Prediction of Child Psychiatric Symptoms by Maternal Mental Health and Child Polygenic Risk Scores. | Chen LM et al. | β | 2024 | β |
| Inflammatory bowel disease and rheumatoid arthritis share a common genetic structure. | Cao G et al. | β | 2024 | β |
| Insulin-related traits and prostate cancer: A Mendelian randomization study. | Chen G et al. | β | 2024 | β |
| Integration of risk factor polygenic risk score with disease polygenic risk score for disease prediction. | Jung H et al. | β | 2024 | β |
| Investigating causality and shared genetic architecture between body mass index and cognitive function: a genome-wide cross-trait analysis and bi-directional Mendelian randomization study. | Chen M et al. | β | 2024 | β |
| Investigating shared genetic architecture between inflammatory bowel diseases and primary biliary cholangitis. | Huang W et al. | β | 2024 | β |
| Investigating the shared genetic architecture between frailty and insomnia. | Song Z et al. | β | 2024 | β |
| Investigating the shared genetic basis of inflammatory bowel disease and systemic lupus erythematosus using genetic overlap analysis. | Yuan W et al. | β | 2024 | β |
| JASPER: Fast, powerful, multitrait association testing in structured samples gives insight on pleiotropy in gene expression. | Mbatchou J et al. | β | 2024 | β |
| Joint analysis of proteome, transcriptome, and multi-trait analysis to identify novel Parkinson's disease risk genes. | Shi JJ et al. | β | 2024 | β |
| Leveraging large-scale datasets and single cell omics data to develop a polygenic score for cisplatin-induced ototoxicity. | Miao DNR et al. | β | 2024 | β |
| Long-term impact of digital media on brain development in children. | Nivins S et al. | β | 2024 | β |
| MANOCCA: a robust and computationally efficient test of covariance in high-dimension multivariate omics data. | Boetto C et al. | β | 2024 | β |
| Mapping and annotating genomic loci to prioritize genes and implicate distinct polygenic adaptations for skin color. | Kim B et al. | β | 2024 | β |
| Mendelian randomization analysis using multiple biomarkers of an underlying common exposure. | Jin J et al. | β | 2024 | β |
| Meta-analysis of six dairy cattle breeds reveals biologically relevant candidate genes for mastitis resistance. | Cai Z et al. | β | 2024 | β |
| MRBEE: A bias-corrected multivariable Mendelian randomization method. | Lorincz-Comi N et al. | β | 2024 | β |
| Multi-ancestry GWAS meta-analyses of lung cancer reveal susceptibility loci and elucidate smoking-independent genetic risk. | Gorman BR et al. | β | 2024 | β |
| Multimorbidity, comorbidity, frailty, and venous thromboembolism. | ZΓΆller B et al. | β | 2024 | β |
| Multi-trait analysis reveals risk loci for heart failure and the shared genetic etiology with blood lipids, blood pressure, and blood glucose. | Zhu Y et al. | β | 2024 | β |
| Multi-trait association analysis reveals shared genetic loci between Alzheimer's disease and cardiovascular traits. | Koskeridis F et al. | β | 2024 | β |
| Novel insights into causal associations of body mass index or height with pneumothorax: a two-sample Mendelian randomization study. | Liu G et al. | β | 2024 | β |
| Optimizing and benchmarking polygenic risk scores with GWAS summary statistics. | Zhao Z et al. | β | 2024 | β |
| Pervasive biases in proxy genome-wide association studies based on parental history of Alzheimer's disease. | Wu Y et al. | β | 2024 | β |
| Pleiotropy and genetically inferred causality linking multisite chronic pain to substance use disorders. | Koller D et al. | β | 2024 | β |
| Polygenic Prediction of Keratoconus and its Measures: Cross-Sectional and Longitudinal Analyses in Community-Based Young Adults. | Lee SS et al. | β | 2024 | β |
| Polygenic risk of social isolation behavior and its influence on psychopathology and personality. | Socrates AJ et al. | β | 2024 | β |
| Polygenic Risk Scores and Genetically Complex Eye Disease. | Le NQ et al. | β | 2024 | β |
| Primary sclerosing cholangitis causally affects kidney function decline: A Mendelian randomization study. | Cho JM et al. | β | 2024 | β |
| Proteome-wide Mendelian randomization highlights AIF1 and HLA-DQA2 as targets for primary sclerosing cholangitis. | Chen L et al. | β | 2024 | β |
| Psychiatric neuroimaging at a crossroads: Insights from psychiatric genetics. | Dall'Aglio L et al. | β | 2024 | β |
| PTGES2 and RNASET2 identified as novel potential biomarkers and therapeutic targets for basal cell carcinoma: insights from proteome-wide mendelian randomization, colocalization, and MR-PheWAS analyses. | Han QJ et al. | β | 2024 | β |
| Replication of previous autism-GWAS hits suggests the association between <i>NAA1, SORCS3,</i> and <i>GSDME</i> and autism in the Han Chinese population. | Lin F et al. | β | 2024 | β |
| shaPRS: Leveraging shared genetic effects across traits or ancestries improves accuracy of polygenic scores. | Kelemen M et al. | β | 2024 | β |
| Shared and Unique Genetic Links between Neuroticism and Gastrointestinal Tract Diseases. | Tian Y et al. | β | 2024 | β |
| Shared genetic architecture and causality between autism spectrum disorder and irritable bowel syndrome, multisite pain, and fatigue. | Li Y et al. | β | 2024 | β |
| Shared genetic architecture between COVID-19 and irritable bowel syndrome: a large-scale genome-wide cross-trait analysis. | Liu X et al. | β | 2024 | β |
| Shared genetic basis and causality between schizophrenia and inflammatory bowel disease: evidence from a comprehensive genetic analysis. | Wang J et al. | β | 2024 | β |
| Shared genetic effect of kidney function on bipolar and major depressive disorders: a large-scale genome-wide cross-trait analysis. | Yu S et al. | β | 2024 | β |
| Synthetic surrogates improve power for genome-wide association studies of partially missing phenotypes in population biobanks. | McCaw ZR et al. | β | 2024 | β |
| The goldmine of GWAS summary statistics: a systematic review of methods and tools. | Kontou PI et al. | β | 2024 | β |
| Trait selection strategy in multi-trait GWAS: Boosting SNP discoverability. | Suzuki Y et al. | β | 2024 | β |
| Uncovering the heritable components of multimorbidities and disease trajectories using a nationwide cohort. | Westergaard D et al. | β | 2024 | β |
| Unraveling the genetic relationship between Alopecia areata and vitiligo. | Zhou Z et al. | β | 2024 | β |
| Unraveling the multifaceted insights into amyotrophic lateral sclerosis: Genetic underpinnings, pathogenesis, and therapeutic horizons. | Sharma R et al. | β | 2024 | β |
| Unravelling novel and pleiotropic genes for cannon bone circumference and bone mineral density in Yorkshire pigs. | Qiu Z et al. | β | 2024 | β |
| Using Genetics to Investigate Relationships between Phenotypes: Application to Endometrial Cancer. | Bouttle K et al. | β | 2024 | β |
| Valid inference for machine learning-assisted genome-wide association studies. | Miao J et al. | β | 2024 | β |
| A clustering linear combination method for multiple phenotype association studies based on GWAS summary statistics. | Wang M et al. | β | 2023 | β |
| A Combined Effect of Polygenic Scores and Environmental Factors on Individual Differences in Depression Level. | Kazantseva A et al. | β | 2023 | β |
| Additional Evidence for the Relationship Between Type 2 Diabetes and Stroke Through Observational and Genetic Analyses. | Zhang W et al. | β | 2023 | β |
| Advances and Applications of Polygenic Scores for Coronary Artery Disease. | Patel AP et al. | β | 2023 | β |
| Age-dependent topic modeling of comorbidities in UK Biobank identifies disease subtypes with differential genetic risk. | Jiang X et al. | β | 2023 | β |
| Age-related macular degeneration. | Guymer RH et al. | β | 2023 | β |
| A Meta-Analysis of the Genome-Wide Association Studies on Two Genetically Correlated Phenotypes Suggests Four New Risk Loci for Headaches. | Meng W et al. | β | 2023 | β |
| A Multi-Trait Association Analysis of Brain Disorders and Platelet Traits Identifies Novel Susceptibility Loci for Major Depression, Alzheimer's and Parkinson's Disease. | Tirozzi A et al. | β | 2023 | β |
| A new polygenic score for refractive error improves detection of children at risk of high myopia but not the prediction of those at risk of myopic macular degeneration. | Clark R et al. | β | 2023 | β |
| A novel candidate gene CLN8 regulates fat deposition in avian. | Li X et al. | β | 2023 | β |
| A population-based twin study of the symptomatic diagnostic criteria for major depression that occur within versus outside of major depressive episodes. | Kendler KS et al. | β | 2023 | β |
| Applying polygenic risk score methods to pharmacogenomics GWAS: challenges and opportunities. | Zhai S et al. | β | 2023 | β |
| A shared genetic contribution to osteoarthritis and COVID-19 outcomes: a large-scale genome-wide cross-trait analysis. | Huang YX et al. | β | 2023 | β |
| Associations between diet and incidence risk of lung cancer: A Mendelian randomization study. | Yan H et al. | β | 2023 | β |
| A statistical genetic investigation of psychiatric resilience. | Cusack SE et al. | β | 2023 | β |
| A systematic review of the neural correlates of well-being reveals no consistent associations. | de Vries LP et al. | β | 2023 | β |
| Bayesian multivariate genetic analysis improves translational insights. | Urbut SM et al. | β | 2023 | β |
| Benchmarking of local genetic correlation estimation methods using summary statistics from genome-wide association studies. | Zhang C et al. | β | 2023 | β |
| Beyond apples and pears: sex-specific genetics of body fat percentage. | Roshandel D et al. | β | 2023 | β |
| Bidirectional Mendelian Randomization and Multiphenotype GWAS Show Causality and Shared Pathophysiology Between Depression and Type 2 Diabetes. | Maina JG et al. | β | 2023 | β |
| Bi-level structured functional analysis for genome-wide association studies. | Wu M et al. | β | 2023 | β |
| Causal associations of sleep apnea and snoring with type 2 diabetes and glycemic traits and the role of BMI. | Wang J et al. | β | 2023 | β |
| Causal associations of sleep apnea, snoring with cardiovascular diseases, and the role of body mass index: a two-sample Mendelian randomization study. | Wang J et al. | β | 2023 | β |
| Children's internalizing behavior development is heterogeneously associated with the pace of epigenetic aging. | Caro JC et al. | β | 2023 | β |
| Chromosome 10q24.32 Variants Associate With Brain Arterial Diameters in Diverse Populations: A Genome-Wide Association Study. | Liu M et al. | β | 2023 | β |
| Cis-meQTL for cocaine use-associated DNA methylation in an HIV-positive cohort show pleiotropic effects on multiple traits. | Cheng Y et al. | β | 2023 | β |
| Cohort profile: Genetic data in the German Socio-Economic Panel Innovation Sample (SOEP-G). | Koellinger PD et al. | β | 2023 | β |
| Combined genome-wide association study of 136 quantitative ear morphology traits in multiple populations reveal 8 novel loci. | Li Y et al. | β | 2023 | β |
| Combining Mendelian randomization and network deconvolution for inference of causal networks with GWAS summary data. | Lin Z et al. | β | 2023 | β |
| Common Variants on <i>FGD5</i> Increase Hazard of Mortality or Rehospitalization in Patients With Heart Failure From the ASCEND-HF Trial. | Gui H et al. | β | 2023 | β |
| Comparison of two multi-trait association testing methods and sequence-based fine mapping of six additive QTL in Swiss Large White pigs. | NoskovΓ‘ A et al. | β | 2023 | β |
| Correlation of mutated gene and signalling pathways in ASD. | Apte M et al. | β | 2023 | β |
| Dimensional and transdiagnostic phenotypes in psychiatric genome-wide association studies. | Waszczuk MA et al. | β | 2023 | β |
| Discovery of genomic loci associated with sleep apnea risk through multi-trait GWAS analysis with snoring. | Campos AI et al. | β | 2023 | β |
| Disentangling the common genetic architecture and causality of rheumatoid arthritis and systemic lupus erythematosus with COVID-19 outcomes: Genome-wide cross trait analysis and bidirectional Mendelian randomization study. | Yao M et al. | β | 2023 | β |
| Dissecting shared genetic architecture between obesity and multiple sclerosis. | Zeng R et al. | β | 2023 | β |
| Distributed genetic effects of the corpus callosum subregions suggest links to neuropsychiatric disorders and related traits. | Campbell ML et al. | β | 2023 | β |
| Do Poor Diet and Lifestyle Behaviors Modify the Genetic Susceptibility to Impulsivity in the General Population? | Xie T et al. | β | 2023 | β |
| Effects of urban living environments on mental health in adults. | Xu J et al. | β | 2023 | β |
| Emotional dysregulation, alexithymia and neuroticism: a systematic review on the genetic basis of a subset of psychological traits. | Castellini G et al. | β | 2023 | β |
| Estimation and implications of the genetic architecture of fasting and non-fasting blood glucose. | Qiao Z et al. | β | 2023 | β |
| Evaluating 17 methods incorporating biological function with GWAS summary statistics to accelerate discovery demonstrates a tradeoff between high sensitivity and high positive predictive value. | Moore A et al. | β | 2023 | β |
| Examining the shared etiology of psychopathology with genome-wide association studies. | Mallard TT et al. | β | 2023 | β |
| Familial aggregation of multimorbidity in Sweden: national explorative family study. | ZΓΆller B et al. | β | 2023 | β |
| Familial autoimmunity in patients with idiopathic inflammatory myopathies. | Che WI et al. | β | 2023 | β |
| From SNP to pathway-based GWAS meta-analysis: do current meta-analysis approaches resolve power and replication in genetic association studies? | Defo J et al. | β | 2023 | β |
| GCPBayes pipeline: a tool for exploring pleiotropy at theΒ gene level. | Asgari Y et al. | β | 2023 | β |
| Genetic and neural bases of the neuroticism general factor. | Kim Y et al. | β | 2023 | β |
| Genetic correlation, causal relationship, and shared loci between vitamin D and COVID-19: A genome-wide cross-trait analysis. | Qiu S et al. | β | 2023 | β |
| Genetic Determinants of the Acute Respiratory Distress Syndrome. | Suarez-Pajes E et al. | β | 2023 | β |
| Genetic predictors of lifelong medication-use patterns in cardiometabolic diseases. | Kiiskinen T et al. | β | 2023 | β |
| Genetic propensity, socioeconomic status, and trajectories of depression over a course of 14 years in older adults. | Kosciuszko M et al. | β | 2023 | β |
| Genetics of skeletal proportions in two different populations | Bartell E et al. | β | 2023 | β |
| Genome wide association joint analysis reveals 99 risk loci for pain susceptibility and pleiotropic relationships with psychiatric, metabolic, and immunological traits. | Mocci E et al. | β | 2023 | β |
| Genome-wide association studies of cardiovascular disease. | Walsh R et al. | β | 2023 | β |
| Genome-wide association study identifies functional genomic variants associated with young stock survival in Nordic Red Dairy Cattle. | Cai Z et al. | β | 2023 | β |
| Genome-wide association study of hippocampal blood-oxygen-level-dependent-cerebral blood flow correlation in Chinese Han population. | Xue H et al. | β | 2023 | β |
| Genome-wide association study on coordination and agility in 461 Chinese Han males. | Wang Y et al. | β | 2023 | β |
| Genome-wide cross-trait analysis and Mendelian randomization reveal a shared genetic etiology and causality between COVID-19 and venous thromboembolism. | Huang X et al. | β | 2023 | β |
| Genome-wide multi-trait analysis of irritable bowel syndrome and related mental conditions identifies 38 new independent variants. | Alemany S et al. | β | 2023 | β |
| Genomics of perivascular space burden unravels early mechanisms of cerebral small vessel disease. | Duperron MG et al. | β | 2023 | β |
| graph-GPA 2.0: improving multi-disease genetic analysis with integration of functional annotation data. | Deng Q et al. | β | 2023 | β |
| GWAS for the composite traits of hematuria and albuminuria. | Gagliano Taliun SA et al. | β | 2023 | β |
| GWAS meta-analyses clarify the genetics of cervical phenotypes and inform risk stratification for cervical cancer. | Koel M et al. | β | 2023 | β |
| GWAS meta-analysis of over 29,000 people with epilepsy identifies 26 risk loci and subtype-specific genetic architecture. | International League Against Epilepsy Consortium on Complex Epilepsies | β | 2023 | β |
| Identifying genetic loci and phenomic associations of substance use traits: A multi-trait analysis of GWAS (MTAG) study. | Xu H et al. | β | 2023 | β |
| Identifying potential risk genes and pathways for neuropsychiatric and substance use disorders using intermediate molecular mediator information. | Gedik H et al. | β | 2023 | β |
| Idiopathic pulmonary fibrosis and the role of genetics in the era of precision medicine. | Alonso-Gonzalez A et al. | β | 2023 | β |
| Improved genetic prediction of the risk of knee osteoarthritis using the risk factor-based polygenic score. | Morita Y et al. | β | 2023 | β |
| Independent Associated SNPs at SORCS3 and Its Protein Interactors for Multiple Brain-Related Disorders and Traits. | Kamran M et al. | β | 2023 | β |
| Inflammatory and infectious upper respiratory diseases associate with 41 genomic loci and type 2 inflammation. | Saarentaus EC et al. | β | 2023 | β |
| Integrative analyses for the identification of idiopathic pulmonary fibrosis-associated genes and shared loci with other diseases. | Chen M et al. | β | 2023 | β |
| Investigating the shared genetic architecture between hypothyroidism and rheumatoid arthritis. | Peng Z et al. | β | 2023 | β |
| Investigating the shared genetic architecture between schizophrenia and body mass index. | Yu Y et al. | β | 2023 | β |
| Investigating the shared genetic architecture of post-traumatic stress disorder and gastrointestinal tract disorders: a genome-wide cross-trait analysis. | Zhou S et al. | β | 2023 | β |
| Invited review: Good practices in genome-wide association studies to identify candidate sequence variants in dairy cattle. | Sahana G et al. | β | 2023 | β |
| Large-scale multitrait genome-wide association analyses identify hundreds of glaucoma risk loci. | Han X et al. | β | 2023 | β |
| Maternal genetic risk for depression and child human capital. | Menta G et al. | β | 2023 | β |
| Microbial Dynamics in Newly Diagnosed and Treatment NaΓ―ve IBD Patients in the Mediterranean. | Rausch P et al. | β | 2023 | β |
| mtPGS: Leverage multiple correlated traits for accurate polygenic score construction. | Xu C et al. | β | 2023 | β |
| Multi-ancestry and multi-trait genome-wide association meta-analyses inform clinical risk prediction for systemic lupus erythematosus. | Khunsriraksakul C et al. | β | 2023 | β |
| Multi-ancestry genome-wide association study of cannabis use disorder yields insight into disease biology and public health implications. | Levey DF et al. | β | 2023 | β |
| Multi-PGS enhances polygenic prediction by combining 937 polygenic scores. | AlbiΓ±ana C et al. | β | 2023 | β |
| Multi-trait discovery and fine-mapping of lipid loci in 125,000 individuals of African ancestry. | Kamiza AB et al. | β | 2023 | β |
| Multitrait genome-wide analyses identify new susceptibility loci and candidate drugs to primary sclerosing cholangitis. | Han Y et al. | β | 2023 | β |
| Multi-trait genome-wide association analyses leveraging alcohol use disorder findings identify novel loci for smoking behaviors in the Million Veteran Program. | Cheng Y et al. | β | 2023 | β |
| Multivariate extension of penalized regression on summary statistics to construct polygenic risk scores for correlated traits. | Bahda M et al. | β | 2023 | β |
| Multivariate genetic analysis of personality and cognitive traits reveals abundant pleiotropy. | Hindley G et al. | β | 2023 | β |
| Multivariate genome-wide association meta-analysis of over 1 million subjects identifies loci underlying multiple substance use disorders. | Hatoum AS et al. | β | 2023 | β |
| New statistical selection method for pleiotropic variants associated with both quantitative and qualitative traits. | Kim K et al. | β | 2023 | β |
| Pervasive Downward Bias in Estimates of Liability-Scale Heritability in Genome-wide Association Study Meta-analysis: A Simple Solution. | Grotzinger AD et al. | β | 2023 | β |
| Pervasive Sharing of Causal Genetic Risk Factors Contributes to Clinical and Molecular Overlap between SjΓΆgren's Disease and Systemic Lupus Erythematosus. | Chau K et al. | β | 2023 | β |
| Phenotype integration improves power and preserves specificity in biobank-based genetic studies of major depressive disorder. | Dahl A et al. | β | 2023 | β |
| Pleiotropic architectures of porcine immune and growth trait pairs revealed by a self-product-based transcriptome method. | Han P et al. | β | 2023 | β |
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| Sub-cellular level resolution of common genetic variation in the photoreceptor layer identifies continuum between rare disease and common variation. | Currant H et al. | β | 2023 | β |
| Systematic analyses of GWAS summary statistics from UK Biobank identified novel susceptibility loci and genes for upper gastrointestinal diseases. | Han R et al. | β | 2023 | β |
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| The Genetic Determinants of AorticΒ Distention. | Pirruccello JP et al. | β | 2023 | β |
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| Aggregation of Genome-Wide Association Data from FinnGen and UK Biobank Replicates Multiple Risk Loci for Pregnancy Complications. | Changalidis AI et al. | β | 2022 | β |
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| Association of Novel Loci With Keratoconus Susceptibility in a Multitrait Genome-Wide Association Study of the UK Biobank Database and Canadian Longitudinal Study on Aging. | He W et al. | β | 2022 | β |
| Association of Predicted Expression and Multimodel Association Analysis of Substance Abuse Traits. | Bost DM et al. | β | 2022 | β |
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| Genome-wide analyses of individual differences in quantitatively assessed reading- and language-related skills in up to 34,000 people. | Eising E et al. | β | 2022 | β |
| Genome-wide association analyses of physical activity and sedentary behavior provide insights into underlying mechanisms and roles in disease prevention. | Wang Z et al. | β | 2022 | β |
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| Genome-wide association meta-analysis identifies 48 risk variants and highlights the role of the stria vascularis in hearing loss. | Trpchevska N et al. | β | 2022 | β |
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| Genome-wide association study of colorectal polyps identified highly overlapping polygenic architecture with colorectal cancer. | Hikino K et al. | β | 2022 | β |
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| Genome-Wide Pleiotropy Study Identifies Association of <i>PDGFB</i> with Age-Related Macular Degeneration and COVID-19 Infection Outcomes. | Chung J et al. | β | 2022 | β |
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| Schooling substantially improves intelligence, but neither lessens nor widens the impacts of socioeconomics and genetics. | Judd N et al. | β | 2022 | β |
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| Stroke Genetics: Discovery, Insight Into Mechanisms, and Clinical Perspectives. | Debette S et al. | β | 2022 | β |
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| The addiction risk factor: A unitary genetic vulnerability characterizes substance use disorders and their associations with common correlates. | Hatoum AS et al. | β | 2022 | β |
| The impact of digital media on children's intelligence while controlling for genetic differences in cognition and socioeconomic background. | Sauce B et al. | β | 2022 | β |
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| The UK Biobank: A Shining Example of Genome-Wide Association Study Science with the Power to Detect the Murky Complications of Real-World Epidemiology. | Tan VY et al. | β | 2022 | β |
| Twenty-Five Novel Loci for Carotid Intima-Media Thickness: A Genome-Wide Association Study in >45β000 Individuals and Meta-Analysis of >100β000 Individuals. | Yeung MW et al. | β | 2022 | β |
| Uncovering the genetic architecture of broad antisocial behavior through a genome-wide association study meta-analysis. | Tielbeek JJ et al. | β | 2022 | β |
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| Analysis of common genetic variation and rare CNVs in the Australian Autism Biobank. | Yap CX et al. | β | 2021 | β |
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| Cross-Cancer Genome-Wide Association Study of Endometrial Cancer and Epithelial Ovarian Cancer Identifies Genetic Risk Regions Associated with Risk of Both Cancers. | Glubb DM et al. | β | 2021 | β |
| DECODE: a Deep-learning framework for Condensing enhancers and refining boundaries with large-scale functional assays. | Chen Z et al. | β | 2021 | β |
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| Genetic analyses of gynecological disease identify genetic relationships between uterine fibroids and endometrial cancer, and a novel endometrial cancer genetic risk region at the WNT4 1p36.12 locus. | Kho PF et al. | β | 2021 | β |
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| Exploring the Relationship Between Psychiatric Traits and the Risk of Mouth Ulcers Using Bi-Directional Mendelian Randomization. | Wang K et al. | β | 2020 | β |
| Functional genomic analyses uncover APOE-mediated regulationΒ ofΒ brain and cerebrospinal fluid beta-amyloid levels in Parkinson disease. | Ibanez L et al. | β | 2020 | β |
| Genome-wide association study of cognitive function in diverse Hispanics/Latinos: results from the Hispanic Community Health Study/Study of Latinos. | Jian X et al. | β | 2020 | β |
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| Genome-wide meta-analysis identifies novel loci associated with age-related macular degeneration. | Han X et al. | β | 2020 | β |
| Genome-wide meta-analysis of problematic alcohol use in 435,563 individuals yields insights into biology and relationships with other traits. | Zhou H et al. | β | 2020 | β |
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| JASS: command line and web interface for the joint analysis of GWAS results. | Julienne H et al. | β | 2020 | β |
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| Pleiotropic Locus 15q24.1 Reveals a Gender-Specific Association with Neovascular but Not Atrophic Age-Related Macular Degeneration (AMD). | Kiel C et al. | β | 2020 | β |
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| Reviewing the genetics of heterogeneity in depression: operationalizations, manifestations and etiologies. | Cai N et al. | β | 2020 | β |
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| The Genetics of Epilepsy. | Perucca P et al. | β | 2020 | β |
| The Genetics of the Mood Disorder Spectrum: Genome-wide Association Analyses of More Than 185,000 Cases and 439,000 Controls. | Coleman JRI et al. | β | 2020 | β |
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| A genome-wide association study identifies genetic loci associated with specific lobar brain volumes. | van der Lee SJ et al. | β | 2019 | β |
| Are rumination and neuroticism genetically or environmentally distinct risk factors for psychopathology? | du Pont A et al. | β | 2019 | β |
| Association mapping in plants in the post-GWAS genomics era. | Gupta PK et al. | β | 2019 | β |
| Association of response to TNF inhibitors in rheumatoid arthritis with quantitative trait loci for <i>CD40</i> and CD39. | Spiliopoulou A et al. | β | 2019 | β |
| Associations of variants In the hexokinase 1 and interleukin 18 receptor regions with oxyhemoglobin saturation during sleep. | Cade BE et al. | β | 2019 | β |
| Association studies of up to 1.2 million individuals yield new insights into the genetic etiology of tobacco and alcohol use. | Liu M et al. | β | 2019 | β |
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| Cardiovascular Predictive Value and Genetic Basis of Ventricular Repolarization Dynamics. | RamΓrez J et al. | β | 2019 | β |
| Centromeric Satellite DNAs: Hidden Sequence Variation in the Human Population. | Miga KH | β | 2019 | β |
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| Complex Trait Prediction from Genome Data: Contrasting EBV in Livestock to PRS in Humans: Genomic Prediction. | Wray NR et al. | β | 2019 | β |
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| Detecting potential pleiotropy across cardiovascular and neurological diseases using univariate, bivariate, and multivariate methods on 43,870 individuals from the eMERGE network. | Zhang X et al. | β | 2019 | β |
| Discovery of the first genome-wide significant risk loci for attention deficit/hyperactivity disorder. | Demontis D et al. | β | 2019 | β |
| Dissecting the genetics underlying the relationship between protein content and grain yield in a large hybrid wheat population. | Thorwarth P et al. | β | 2019 | β |
| Efficient cross-trait penalized regression increases prediction accuracy in large cohorts using secondary phenotypes. | Chung W et al. | β | 2019 | β |
| Functional annotation and Bayesian fine-mapping reveals candidate genes for important agronomic traits in Holstein bulls. | Jiang J et al. | β | 2019 | β |
| Genetic Association of Phosphodiesterases With Human Cognitive Performance. | Gurney ME | β | 2019 | β |
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| Genetics of alcohol use disorder: a review. | Deak JD et al. | β | 2019 | β |
| Genetics of Anxiety Disorders. | Meier SM et al. | β | 2019 | β |
| Genome-wide analysis identifies molecular systems and 149 genetic loci associated with income. | Hill WD et al. | β | 2019 | β |
| Genome-wide association analyses of risk tolerance and risky behaviors in over 1 million individuals identify hundreds of loci and shared genetic influences. | Karlsson LinnΓ©r R et al. | β | 2019 | β |
| Genome-wide association analysis of 19,629 individuals identifies variants influencing regional brain volumes and refines their genetic co-architecture with cognitive and mental health traits. | Zhao B et al. | β | 2019 | β |
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| Genome-wide association analysis suggests novel loci underlying thyroid antibodies in Hashimoto's thyroiditis. | BrΔiΔ L et al. | β | 2019 | β |
| Genome-wide association studies targeting the yield of extraembryonic fluid and production traits in Russian White chickens. | Kudinov AA et al. | β | 2019 | β |
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| Genomics and psychological resilience: a research agenda. | Choi KW et al. | β | 2019 | β |
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| Identification of common genetic risk variants for autism spectrum disorder. | Grove J et al. | β | 2019 | β |
| Integrate multiple traits to detect novel trait-gene association using GWAS summary data with an adaptive test approach. | Guo B et al. | β | 2019 | β |
| Joint analysis of individual-level and summary-level GWAS data by leveraging pleiotropy. | Dai M et al. | β | 2019 | β |
| Joint Analysis of Multiple Phenotypes in Association Studies based on Cross-Validation Prediction Error. | Yang X et al. | β | 2019 | β |
| Joint Association Analysis Identified 18 New Loci for Bone Mineral Density. | Pei YF et al. | β | 2019 | β |
| Large-scale GWAS reveals insights into the genetic architecture of same-sex sexual behavior. | Ganna A et al. | β | 2019 | β |
| Low-frequency variation in TP53 has large effects on head circumference and intracranial volume. | Haworth S et al. | β | 2019 | β |
| Methods for the Analysis and Interpretation for Rare Variants Associated with Complex Traits. | Weissenkampen JD et al. | β | 2019 | β |
| Multi-trait genome-wide association study identifies new loci associated with optic disc parameters. | Bonnemaijer PWM et al. | β | 2019 | β |
| Multivariate genome-wide analyses of the well-being spectrum. | Baselmans BML et al. | β | 2019 | β |
| Multivariate Genome-wide Association Analysis of a Cytokine Network Reveals Variants with Widespread Immune, Haematological, and Cardiometabolic Pleiotropy. | Nath AP et al. | β | 2019 | β |
| Novel Gene-Based Analysis of ASD GWAS: Insight Into the Biological Role of Associated Genes. | Alonso-Gonzalez A et al. | β | 2019 | β |
| Novel hypotheses emerging from GWAS in migraine? | van den Maagdenberg AMJM et al. | β | 2019 | β |
| Phenotypic Annotation: Using Polygenic Scores to Translate Discoveries From Genome-Wide Association Studies From the Top Down. | Belsky DW et al. | β | 2019 | β |
| Pleiotropic Meta-Analysis of Cognition, Education, and Schizophrenia Differentiates Roles of Early Neurodevelopmental and Adult Synaptic Pathways. | Lam M et al. | β | 2019 | β |
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| Polygenic risk associated with post-traumatic stress disorder onset and severity. | Misganaw B et al. | β | 2019 | β |
| Polygenic Risk Scores for Psychiatric Disorders Reveal Novel Clues About the Genetics of Disordered Gambling. | Piasecki TM et al. | β | 2019 | β |
| Predicting Polygenic Risk of Psychiatric Disorders. | Martin AR et al. | β | 2019 | β |
| RAISS: robust and accurate imputation from summary statistics. | Julienne H et al. | β | 2019 | β |
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| The role of genetics in subjective well-being. | RΓΈysamb E et al. | β | 2019 | β |
| The virtuous cycle of human genetics and mouse models in drug discovery. | Nadeau JH et al. | β | 2019 | β |
| Three Novel Loci for Infant Head Circumference Identified by a Joint Association Analysis. | Yang XL et al. | β | 2019 | β |
| Towards clinical utility of polygenic risk scores. | Lambert SA et al. | β | 2019 | β |
| Unraveling the genetic architecture of major depressive disorder: merits and pitfalls of the approaches used in genome-wide association studies. | Schwabe I et al. | β | 2019 | β |
| Using a two-sample Mendelian randomization design to investigate a possible causal effect of maternal lipid concentrations on offspring birth weight. | Hwang LD et al. | β | 2019 | β |
| Adjustment for covariates using summary statistics of genome-wide association studies. | Wang T et al. | β | 2018 | β |
| A Further Comment on 'Large-Scale Cognitive GWAS Meta-Analysis Reveals Tissue-Specific Neural Expression and Potential Nootropic Drug Targets' by Lam et al. | Hill WD | β | 2018 | β |
| A multi-trait Bayesian method for mapping QTL and genomic prediction. | Kemper KE et al. | β | 2018 | β |
| Beyond heritability: improving discoverability in imaging genetics. | Fan CC et al. | β | 2018 | β |
| Bivariate genome-wide association analysis strengthens the role of bitter receptor clusters on chromosomes 7 and 12 in human bitter taste. | Hwang LD et al. | β | 2018 | β |
| Comment on 'Large-Scale Cognitive GWAS Meta-Analysis Reveals Tissue-Specific Neural Expression and Potential Nootropic Drug Targets' by Lam et al. | Hill WD | β | 2018 | β |
| Education can reduce health differences related to genetic risk of obesity. | Barcellos SH et al. | β | 2018 | β |
| Elucidating the genetic basis of social interaction and isolation. | Day FR et al. | β | 2018 | β |
| Gene discovery and polygenic prediction from a genome-wide association study of educational attainment in 1.1 million individuals. | Lee JJ et al. | β | 2018 | β |
| Genetic correlations among psychiatric and immune-related phenotypes based on genome-wide association data. | Tylee DS et al. | β | 2018 | β |
| Genetic nature or genetic nurture? Introducing social genetic parameters to quantify bias in polygenic score analyses. | Trejo S et al. | β | 2018 | β |
| Genome-wide mega-analysis identifies 16 loci and highlights diverse biological mechanisms in the common epilepsies. | International League Against Epilepsy Consortium on Complex Epilepsies | β | 2018 | β |
| Identifying gene targets for brain-related traits using transcriptomic and methylomic data from blood. | Qi T et al. | β | 2018 | β |
| Improving genetic prediction by leveraging genetic correlations among human diseases and traits. | Maier RM et al. | β | 2018 | β |
| Meta-analysis of genome-wide association studies for height and body mass index in βΌ700000 individuals of European ancestry. | Yengo L et al. | β | 2018 | β |
| Multi-Trait Analysis of GWAS and Biological Insights Into Cognition: A Response to Hill (2018). | Lam M et al. | β | 2018 | β |
| Multitrait genome association analysis identifies new susceptibility genes for human anthropometric variation in the GCAT cohort. | GalvΓ‘n-FemenΓa I et al. | β | 2018 | β |
| Replicability and Prediction: Lessons and Challenges from GWAS. | Marigorta UM et al. | β | 2018 | β |
| Statistical power and utility of meta-analysis methods for cross-phenotype genome-wide association studies. | Zhu Z et al. | β | 2018 | β |