Bi-ancestral depression GWAS in the Million Veteran Program and meta-analysis in >1.2 million individuals highlight new therapeutic directions.
- Authors
- Levey, Daniel F; Stein, Murray B; Wendt, Frank R; Pathak, Gita A; Zhou, Hang; Aslan, Mihaela; Quaden, Rachel; Harrington, Kelly M; NuΓ±ez, Yaira Z; Overstreet, Cassie; Radhakrishnan, Krishnan; Sanacora, Gerard; McIntosh, Andrew M; Shi, Jingchunzi; Shringarpure, Suyash S; 23andMe Research Team; Million Veteran Program; Concato, John; Polimanti, Renato; Gelernter, Joel
- Year
- 2021
- Journal
- Nature neuroscience
- PMID
- 34045744
- DOI
- 10.1038/s41593-021-00860-2
- PMCID
- PMC8404304
Major depressive disorder is the most common neuropsychiatric disorder, affecting 11% of veterans. Here we report results of a large meta-analysis of depression using data from the Million Veteran Program, 23andMe, UK Biobank and FinnGen, including individuals of European ancestry (nβ=β1,154,267; 340,591 cases) and African ancestry (nβ=β59,600; 25,843 cases). Transcriptome-wide association study analyses revealed significant associations with expression of NEGR1 in the hypothalamus and DRD2 in the nucleus accumbens, among others. We fine-mapped 178 genomic risk loci, and we identified likely pathogenicity in these variants and overlapping gene expression for 17 genes from our transcriptome-wide association study, including TRAF3. Finally, we were able to show substantial replications of our findings in a large independent cohort (nβ=β1,342,778) provided by 23andMe. This study sheds light on the genetic architecture of depression and provides new insight into the interrelatedness of complex psychiatric traits.
Design of the study and circular Manhattan Plot.Left Panel: Design of the study (top). Three phenotypes were evaluated within MVP: MDD-META (outermost ring, right panel) which was derived from ICD codes, SR-Depression (middle ring, right panel) which was defined by self-reported diagnosis of depression in the MVP survey, and Depressive symptoms (innermost ring, right panel) which come from the PHQ2 2-item scale found in the MVP survey. MVP-MDD and SR-Depression were each meta-analyzed with depression results from:23andMe, PGC, and FinnGen. MVP PHQ2 was meta-analyzed with results from the PHQ2 2-item scale from UK biobank. Right Panel: Circular Manhattan Plot. Significant results are highlighted in purple. Lower left Panel: Accelerating pace of loci discovery in depression GWAS. Y axis indicates the number of discovered loci in a study, with the X axis showing the number of cases included in each study. Red text and yellow markers indicate original analyses conducted for this study using MVP data for EA, AA and the overall MDD-META meta-analysis of EAs.
Genetic Correlation.Upper Panel. Genetic correlations between depression phenotypes, with subjective well-being included as a negative correlation comparator. Heritability (z-score) is given along the left axis of the matrix for each depression phenotype. Values within the matrix represent rg. All correlations are significant following Bonferroni correction for multiple comparisons (0.05/28=p<0.0018). The largest p-value was for the correlation between FinnGen and UKB Depressive symptoms (p=4.06Γ10β05). P-values and 95% CI are reported in Table S6. Lower Panel. Summary of genetic correlation between MDD-META and 1,457 phenotypes from large-scale genetic studies of mental health and behavior. The Psychiatry category contains phenotypes from the Psychiatric Genomics Consortium, GWAS & Sequencing Consortium of Alcohol and Nicotine use, Million Veteran Program, and International Cannabis Consortium. The labels Tired and left subcallosal cortex grey matter volume represent UKB Field ID 2080 and BIG Field ID 0078, respectively. P-values are two-sided.
Top: Tissue-based gene association study (TWAS).The genes were tested using MetaXcan for 13 brain tissues and whole blood from the GTEx-v8. The genes were compared across tissues to identify best representative tissues for each gene using SMultiXcan. Genes are arranged in order from left to right by respective tissue specific p-value, with the lowest value on the left. The color scale for the gene matrix is based on mean z-score. The values are reported in Supplementary file 2. Bottom: SNP prioritization using fine Mapping and functional scoring. Bottom panel: Manhattan plot showing each genomic risk locus in violet. Middle panel: Each locus was fine mapped, and the causal posterior probability (CPP) on the y-axis is shown for SNPs from the causal set. The SNPs which had CPP β₯0.3 (30%) were annotated using Combined Annotation Dependent Depletion (CADD) scores. Top panel: The SNPs with CADD β₯ 10 are highlighted in purple; these SNPs were positionally mapped to 107 genes within 100kb. Only positional genes overlapping with multi-tissue TWAS results (Supplementary Figure 1) are annotated with vertical lines. Details of the prioritized SNPs are reported in Supplementary file 2.
Genomic SEM.Genomic structural equation modeling of MDD-META (DEP) plus 14 additional traits. Exploratory factor analysis converged on a three-factor model. Arrows represent loading of each phenotype onto a connected factor with loading value and standard error provided for each. Multi-colored phenotypes indicate loading onto more than one factor while monochromatic phenotypes were unique to a single factor. Factor 1 generally represents internalizing symptoms, Factor 2 externalizing behaviors, and Factor 3, education/cognition. The correlation between factors is shown. Phenotype acronyms are: attention deficit hyperactivity disorder (ADHD), MVP MDD-META (DEP), bipolar disorder (BIP), schizophrenia (SCZ), problematic alcohol use (PAU), cannabis use disorder (CUD), anxiety symptoms (GAD), depressive symptoms (DSYM), reexperiencing (REXP), neuroticism (NEU), posttraumatic stress disorder (PTSD), risk tolerance (RTOL), risky behavior (RBEH), educational attainment (EA), and cognitive performance (CP).
Similar-ancestry and Transancestry Replication Analyses.A. Left panel: Scatter plot for z-score effect sizes for 211 GWS SNPs (Spearmanβs Ο=0.87) from the primary MDD-META GWAS on the y axis and the independent 23andMe replication cohort African ancestry (only) GWAS on the x axis. Right panel: Overlap of SNPs from European and African ancestry GWASs. 223 GWS SNPs from the primary analysis, of which 211 were available in the independent 23andMe GWAS. 209 (99%) of the remaining SNPs had the same effect direction, 192 were nominally significant p<0.05 (91%), 144 were Bonferroni significant after correcting for 211 comparisons (68%), and 81 were independently genome-wide significant (38%). B. Left panel: Scatter plot for z-score effect sizes for 206 GWS SNPs (Spearmanβs Ο=0.39) from the primary MDD-META GWAS of different ancestries, plotting z-score for European ancestry (only) GWAS on the y axis and African ancestry (only) GWAS on the x axis. Right panel: Overlap of SNPs from European and African ancestry GWASs. 223 GWS SNPs from the primary analysis, of which 206 are available in the AA GWAS following QC. 125 (61%) of the remaining SNPs had the same effect direction, 20 were nominally significant (p<0.05) and one was Bonferroni significant after correcting for 206 comparisons.
| Name | Type |
|---|---|
| 1000 Genomes Project European linkage disequilibrium reference panel local | cohort |
| 1000 Genomes Project Phase 3 European reference panel local | cohort |
| 23andMe | cohort |
| 23andMe phenotype local | phenotype |
| 35 cohorts local | cohort |
| ADNI local | cohort |
| African American | cohort |
| Alcohol Use Disorder | phenotype |
| amygdala | anatomy |
| amyotrophic lateral sclerosis | phenotype |
| anhedonia | phenotype |
| anorexia nervosa | phenotype |
| anterior cingulate cortex | anatomy |
| anti-depressant medication prescription local | phenotype |
| anxiety-like features local | phenotype |
| anxiety symptoms | phenotype |
| attention deficit hyperactivity disorder | phenotype |
| autism spectrum disorder | phenotype |
| bipolar disorder | phenotype |
| Bonferroni correction | drug |
| brain image derived phenotypes local | phenotype |
| brain tissue | anatomy |
| broad depression | phenotype |
| Broad depression phenotype local | phenotype |
| broader definitions local | phenotype |
| Brodmann area 9 | anatomy |
| CADD | drug |
| cannabis use | phenotype |
| cannabis use disorder | phenotype |
| case-control phenotypes | phenotype |
| cases | cohort |
| caudate nucleus | anatomy |
| CAVIAR local | drug |
| CCDC71 | gene |
| CELF4 | gene |
| cerebellar hemisphere | anatomy |
| cerebellum | anatomy |
| clinical depression | phenotype |
| Clinical diagnosis of depression local | phenotype |
| cocaine | phenotype |
| cognition | phenotype |
| Coloc | drug |
| conditioned depression GWAS local | cohort |
| controls | cohort |
| core depression phenotype local | phenotype |
| cortex | anatomy |
| cyclothiazide | drug |
| DAP-G local | drug |
| depression | phenotype |
| depression diagnosis local | phenotype |
| Depression (ICD definition) local | phenotype |
| depression-like behaviors local | phenotype |
| depression-like features local | phenotype |
| depression medication prescription local | phenotype |
| depression medications local | phenotype |
| depressive symptom burden local | phenotype |
| depressive symptoms | phenotype |
| Depressive symptoms by PHQ local | phenotype |
| Depressive symptoms (PHQ) local | phenotype |
| Depressive symptoms (PHQ-2) local | phenotype |
| diethylstilbestrol local | drug |
| Digestive Disorders local | phenotype |
| DRD2 | gene |
| educational attainment | phenotype |
| elastic net | drug |
| epilepsy | phenotype |
| estrogen | drug |
| European ancestry | cohort |
| externalizing disorders | phenotype |
| F5 Mood category local | phenotype |
| F5 Mood phenotype local | phenotype |
| FADS1 | gene |
| FAM120A | gene |
| felbamate local | drug |
| Fibromyalgia local | phenotype |
| FinnGen | cohort |
| FinnGen Mood affective disorders local | phenotype |
| FinnGen sample local | cohort |
| frequency of tiredness/lethargy in last 2 weeks local | phenotype |
| frontal cortex | anatomy |
| FUMA | drug |
| GCTA | drug |
| genetic loci | cohort |
| glutamate | drug |
| GTEx v8 | cohort |
| GWAS | cohort |
| GWS_SNP local | variant |
| Heidi local | drug |
| hippocampus | anatomy |
| HIST1H1B local | gene |
| HRS | cohort |
| hypothalamus | anatomy |
| ICD code-based algorithm local | phenotype |
| ICD derived MDD local | phenotype |
| IMAS local | cohort |
| Implanon local | drug |
| independent SNPs | cohort |
| interferon | drug |
| internalizing disorders | phenotype |
| JNJ-67953964 local | drug |
| ketamine | drug |
| KOR | drug |
| L3MBTL2 local | gene |
| LAMB2 local | gene |
| LCV model local | drug |
| LDSC | drug |
| left subcallosal cortex grey matter volume local | anatomy |
| LIN28B-AS1 local | gene |
| Linkage Disequilibrium Score Regression local | drug |
| LocusCompareR local | drug |
| LRFN5 | gene |
| major depressive disorder | phenotype |
| Major Depressive Disorder (MDD-META) local | phenotype |
| Manic episode | phenotype |
| MASHR-based model local | drug |
| MDD-META local | cohort |
| MDD-META meta-analysis local | cohort |
| MDD-META meta-analysis local | phenotype |
| MDD-META phenotype local | phenotype |
| Mendelian Randomization local | drug |
| mesolimbic dopamine reward circuit local | anatomy |
| MetaXcan | drug |
| Million Veteran Program | cohort |
| mood disorders | phenotype |
| mtCOJO local | drug |
| MVP | cohort |
| MVP African American sample local | cohort |
| MVP African ancestry sample local | cohort |
| MVP cohort | cohort |
| MVP cohorts local | cohort |
| MVP tranche 1 local | cohort |
| MVP tranche 2 local | cohort |
| NEGR1 | gene |
| Negr -/β mice local | cohort |
| Neurocognitive domain local | phenotype |
| neuroticism | phenotype |
| nicotine | drug |
| non-social interest abnormalities local | phenotype |
| nucleus accumbens | anatomy |
| omega-3 local | drug |
| Omega-3 local | drug |
| OPRK1 | cohort |
| Oxford Brain Imaging Genetics local | cohort |
| Oxford Brain Imaging Genetics (BIG) project local | cohort |
| Persistent mood disorder local | phenotype |
| PGBD1 local | gene |
| PGC | cohort |
| PGC+UKB local | cohort |
| PGC/UKB local | cohort |
| PGC/UKB broad depression local | cohort |
| PGC/UK Biobank local | cohort |
| PGC-UKB MDD-META meta-analysis local | cohort |
| phenotype | phenotype |
| Phenotype_from9 local | phenotype |
| PHQ-2 local | phenotype |
| PHQ2 local | phenotype |
| pituitary gland | anatomy |
| posttraumatic stress disorder | phenotype |
| Posttraumatic Stress Disorder (PTSD) local | phenotype |
| Primary MDD-META meta-analysis local | cohort |
| problematic alcohol use | phenotype |
| psychiatric disorders | phenotype |
| Psychiatric Genomics Consortium | cohort |
| Psychiatry local | cohort |
| putamen | anatomy |
| quantitative phenotypes | phenotype |
| raloxifene local | drug |
| Reexperiencing | phenotype |
| riluzole local | drug |
| Riluzole local | drug |
| risk-taking behavior | phenotype |
| risk tolerance | phenotype |
| RP11β318C24.2 local | gene |
| rs1950829 local | variant |
| rs7531118 local | variant |
| rs7617480 local | variant |
| schizophrenia | phenotype |
| Scn8a | gene |
| self-reported depression local | phenotype |
| Self-reported Depression local | phenotype |
| Self-Reported Depression local | phenotype |
| Self-reported diagnosis local | phenotype |
| Self-reported physician diagnosis of depression local | phenotype |
| Self-reported treatment local | phenotype |
| S-MultiXcan | drug |
| SNP | cohort |
| social behavior abnormalities local | phenotype |
| Social Science Genetic Association Consortium | cohort |
| spinal cord c-1 local | anatomy |
| SPPL3 local | gene |
| SR-Depression local | phenotype |
| SR-Depression GWAS local | phenotype |
| subjective well-being | phenotype |
| substance use | phenotype |
| substantia nigra | anatomy |
| suicide | phenotype |
| tamoxifen | drug |
| TMEM161B | gene |
| total brain volume | anatomy |
| TRAF3 | gene |
| trait | phenotype |
| Transancestral meta-analysis local | cohort |
| treatment-resistant depression local | phenotype |
| Treatment-resistant depression local | phenotype |
| UKB | cohort |
| UKB8 local | cohort |
| UK Biobank | cohort |
| UKB-PGC local | cohort |
| United States | cohort |
| Unspecified mood affective disorder local | phenotype |
| ventral tegmental area | anatomy |
| VTA | anatomy |
| whole blood | anatomy |
| ZKSCAN4 local | gene |
| ZNF165 local | gene |
| ZNF184 | gene |
| ZSCAN12 local | gene |
| ZSCAN9 local | gene |
No uploaded files.
| Citation | PMID | DOI | Status |
|---|---|---|---|
| AltA, NisenbaumES, BleakmanD & WitkinJM A role for AMPA receptors in mood disorders. Biochem Pharmacol 71, 1273β88 (2006).1644208010.1016/j.bcp.2005.12.022 | β | β | β |
| AschardH, VilhjalmssonBJ, JoshiAD, PriceAL & KraftP. Adjusting for Heritable Covariates Can Bias Effect Estimates in Genome-Wide Association Studies. American Journal of Human Genetics 96, 329β339 (2015).2564067610.1016/j.ajhg.2014.12.021PMC4320269 | β | β | β |
| BarbeiraANExploring the phenotypic consequences of tissue specific gene expression variation inferred from GWAS summary statistics. Nat Commun9, 1825 (2018).2973993010.1038/s41467-018-03621-1PMC5940825 | β | β | β |
| BarbeiraANIntegrating predicted transcriptome from multiple tissues improves association detection. PLoS Genet15, e1007889 (2019).10.1371/journal.pgen.1007889PMC635810030668570 | β | β | β |
| BaselmansBMLMultivariate genome-wide analyses of the well-being spectrum. Nat Genet51, 445β451 (2019).3064325610.1038/s41588-018-0320-8 | β | β | β |
| Bulik-SullivanBKLD Score regression distinguishes confounding from polygenicity in genome-wide association studies. Nat Genet47, 291β5 (2015).2564263010.1038/ng.3211PMC4495769 | β | β | β |
| BycroftC. The UK Biobank resource with deep phenotyping and genomic data. Nature562, 203β209 (2018).3030574310.1038/s41586-018-0579-zPMC6786975 | β | β | β |
| CaiN. Minimal phenotyping yields genome-wide association signals of low specificity for major depression. Nat Genet52, 437β447 (2020).3223127610.1038/s41588-020-0594-5PMC7906795 | β | β | β |
| CarlezonWAJr., BeguinC, KnollAT & CohenBM Kappa-opioid ligands in the study and treatment of mood disorders. Pharmacol Ther 123, 334β43 (2009).1949733710.1016/j.pharmthera.2009.05.008PMC2740476 | β | β | β |
| ChiuWC, SuYP, SuKP & ChenPC Recurrence of depressive disorders after interferon-induced depression. Transl Psychiatry 7, e1026 (2017).2817000510.1038/tp.2016.274PMC5438022 | β | β | β |
| ChowdhuryGMTransiently increased glutamate cycling in rat PFC is associated with rapid onset of antidepressant-like effects. Mol Psychiatry22, 120β126 (2017).2706701310.1038/mp.2016.34PMC5345902 | β | β | β |
| DescalziG. Neuropathic pain promotes adaptive changes in gene expression in brain networks involved in stress and depression. Sci Signal10(2017).10.1126/scisignal.aaj1549PMC552497528325815 | β | β | β |
| DochertyARGenome-Wide Association Study of Suicide Death and Polygenic Prediction of Clinical Antecedents. Am J Psychiatry177, 917β927 (2020).3299855110.1176/appi.ajp.2020.19101025PMC7872505 | β | β | β |
| GazianoJMMillion Veteran Program: A mega-biobank to study genetic influences on health and disease. J Clin Epidemiol70, 214β23 (2016).2644128910.1016/j.jclinepi.2015.09.016 | β | β | β |
| GelernterJ. Genome-wide association study of post-traumatic stress disorder reexperiencing symptoms in >165,000 US veterans. Nat Neurosci (2019).10.1038/s41593-019-0447-7PMC695363331358989 | β | β | β |
| GeSX, JungD & YaoR. ShinyGO: a graphical enrichment tool for animals and plants. Bioinformatics (2019).10.1093/bioinformatics/btz931PMC717841531882993 | β | β | β |
| GiambartolomeiC. Bayesian test for colocalisation between pairs of genetic association studies using summary statistics. PLoS Genet10, e1004383 (2014).10.1371/journal.pgen.1004383PMC402249124830394 | β | β | β |
| GillingM. A 3.2 Mb deletion on 18q12 in a patient with childhood autism and high-grade myopia. Eur J Hum Genet16, 312β9 (2008).1818304110.1038/sj.ejhg.5201985 | β | β | β |
| GrotzingerADGenomic structural equation modelling provides insights into the multivariate genetic architecture of complex traits. Nat Hum Behav3, 513β525 (2019).3096261310.1038/s41562-019-0566-xPMC6520146 | β | β | β |
| GuntherS. SuperTarget and Matador: resources for exploring drug-target relationships. Nucleic Acids Res36, D919β22 (2008).1794242210.1093/nar/gkm862PMC2238858 | β | β | β |
| HackerH, TsengPH & KarinM. Expanding TRAF function: TRAF3 as a tri-faced immune regulator. Nat Rev Immunol 11, 457β68 (2011).2166005310.1038/nri2998 | β | β | β |
| HarringtonKMGender Differences in Demographic and Health Characteristics of the Million Veteran Program Cohort. Womens Health Issues29, S56βS66 (2019).3125324310.1016/j.whi.2019.04.012PMC7061933 | β | β | β |
| HasinDSEpidemiology of Adult DSM-5 Major Depressive Disorder and Its Specifiers in the United States. JAMA Psychiatry75, 336β346 (2018).2945046210.1001/jamapsychiatry.2017.4602PMC5875313 | β | β | β |
| HormozdiariF, KostemE, KangEY, PasaniucB & EskinE. Identifying causal variants at loci with multiple signals of association. Genetics 198, 497β508 (2014).2510451510.1534/genetics.114.167908PMC4196608 | β | β | β |
| HowardDMGenome-wide association study of depression phenotypes in UK Biobank identifies variants in excitatory synaptic pathways. Nat Commun9, 1470 (2018).2966205910.1038/s41467-018-03819-3PMC5902628 | β | β | β |
| HowardDMGenome-wide meta-analysis of depression identifies 102 independent variants and highlights the importance of the prefrontal brain regions. Nat Neurosci22, 343β352 (2019).3071890110.1038/s41593-018-0326-7PMC6522363 | β | β | β |
| HydeCLIdentification of 15 genetic loci associated with risk of major depression in individuals of European descent. Nat Genet48, 1031β6 (2016).2747990910.1038/ng.3623PMC5706769 | β | β | β |
| KroenkeK, SpitzerRL & WilliamsJB The Patient Health Questionnaire-2: validity of a two-item depression screener. Med Care 41, 1284β92 (2003).1458369110.1097/01.MLR.0000093487.78664.3C | β | β | β |
| KrystalADA randomized proof-of-mechanism trial applying the βfast-failβ approach to evaluating kappa-opioid antagonism as a treatment for anhedonia. Nat Med (2020).10.1038/s41591-020-0806-7PMC994977032231295 | β | β | β |
| LeveyDFGenetic associations with suicide attempt severity and genetic overlap with major depression. Transl Psychiatry9, 22 (2019).3065550210.1038/s41398-018-0340-2PMC6336846 | β | β | β |
| LeveyDFReproducible Genetic Risk Loci for Anxiety: Results From approximately 200,000 Participants in the Million Veteran Program. Am J Psychiatry, appiajp201919030256 (2020).10.1176/appi.ajp.2019.19030256PMC786950231906708 | β | β | β |
| MullinsN. GWAS of Suicide Attempt in Psychiatric Disorders and Association With Major Depression Polygenic Risk Scores. Am J Psychiatry176, 651β660 (2019).3116400810.1176/appi.ajp.2019.18080957PMC6675659 | β | β | β |
| NestlerEJ & CarlezonWAJr. The mesolimbic dopamine reward circuit in depression. Biol Psychiatry 59, 1151β9 (2006).1656689910.1016/j.biopsych.2005.09.018 | β | β | β |
| NhoK. Comprehensive gene- and pathway-based analysis of depressive symptoms in older adults. J Alzheimers Dis45, 1197β206 (2015).2569066510.3233/JAD-148009PMC4398648 | β | β | β |
| NohK. Negr1 controls adult hippocampal neurogenesis and affective behaviors. Mol Psychiatry24, 1189β1205 (2019).3065160210.1038/s41380-018-0347-3 | β | β | β |
| OβConnorLJ & PriceAL Distinguishing genetic correlation from causation across 52 diseases and complex traits. Nat Genet 50, 1728β1734 (2018).3037407410.1038/s41588-018-0255-0PMC6684375 | β | β | β |
| PersTH, TimshelP & HirschhornJN SNPsnap: a Web-based tool for identification and annotation of matched SNPs. Bioinformatics 31, 418β420 (2015).2531667710.1093/bioinformatics/btu655PMC4308663 | β | β | β |
| PittengerC. Riluzole in the treatment of mood and anxiety disorders. CNS Drugs22, 761β86 (2008).1869887510.2165/00023210-200822090-00004 | β | β | β |
| RentzschP, WittenD, CooperGM, ShendureJ & KircherM. CADD: predicting the deleteriousness of variants throughout the human genome. Nucleic Acids Res 47, D886βD894 (2019).3037182710.1093/nar/gky1016PMC6323892 | β | β | β |
| RoehrigC. Mental Disorders Top The List Of The Most Costly Conditions In The United States: $201 Billion. Health Affairs35, 1130β1135 (2016).2719302710.1377/hlthaff.2015.1659 | β | β | β |
| SakuraiH. Longer-term open-label study of adjunctive riluzole in treatment-resistant depression. J Affect Disord258, 102β108 (2019).3140062410.1016/j.jad.2019.06.065PMC6710149 | β | β | β |
| SinghK. Neural cell adhesion molecule Negr1 deficiency in mouse results in structural brain endophenotypes and behavioral deviations related to psychiatric disorders. Sci Rep9, 5457 (2019).3093200310.1038/s41598-019-41991-8PMC6443666 | β | β | β |
| StrawbridgeRJIdentification of novel genome-wide associations for suicidality in UK Biobank, genetic correlation with psychiatric disorders and polygenic association with completed suicide. EBioMedicine41, 517β525 (2019).3074517010.1016/j.ebiom.2019.02.005PMC6442001 | β | β | β |
| SunW. Aberrant sodium channel activity in the complex seizure disorder of Celf4 mutant mice. J Physiol591, 241β55 (2013).2309095210.1113/jphysiol.2012.240168PMC3630783 | β | β | β |
| TyeKMDopamine neurons modulate neural encoding and expression of depression-related behaviour. Nature493, 537β541 (2013).2323582210.1038/nature11740PMC4160519 | β | β | β |
| WaniAL, BhatSA & AraA. Omega-3 fatty acids and the treatment of depression: a review of scientific evidence. Integr Med Res 4, 132β141 (2015).2866411910.1016/j.imr.2015.07.003PMC5481805 | β | β | β |
| WatanabeK, TaskesenE, van BochovenA & PosthumaD. Functional mapping and annotation of genetic associations with FUMA. Nat Commun 8, 1826 (2017).2918405610.1038/s41467-017-01261-5PMC5705698 | β | β | β |
| WillerCJNewly identified loci that influence lipid concentrations and risk of coronary artery disease. Nat Genet40, 161β9 (2008).1819304310.1038/ng.76PMC5206900 | β | β | β |
| WrayNRGenome-wide association analyses identify 44 risk variants and refine the genetic architecture of major depression. Nat Genet50, 668β681 (2018).2970047510.1038/s41588-018-0090-3PMC5934326 | β | β | β |
| ZhuZHCausal associations between risk factors and common diseases inferred from GWAS summary data. Nature Communications9(2018).10.1038/s41467-017-02317-2PMC576871929335400 | β | β | β |
In this knowledge base
| Title | Year | PMID |
|---|---|---|
| Guidelines for Evaluating the Comparability of Down-Sampled GWAS Summary Statistics. | 2023 | 37713023 |
External
| Title | Authors | Journal | Year | Link |
|---|---|---|---|---|
| A multi-cohort assessment of the polygenic prediction in ADHD treatment response. | Rovaris DL et al. | β | 2026 | β |
| Deep Phenotyping at Scale: Study Protocol for the Korean Mood Disorder Genetic Study-Depression (KOMOGEN-D). | Min S et al. | β | 2026 | β |
| Dissecting the genetic relationship between severe mental disorders and autoimmune diseases. | WistrΓΆm ED et al. | β | 2026 | β |
| Dysfunctional circular RNA network in major depressive disorder: dissecting the cell identity and potential clinical applications. | Tan L et al. | β | 2026 | β |
| Evaluating genetic-based disease prediction approaches through simulation. | Shpak M et al. | β | 2026 | β |
| Genetic and epigenetic analysis of plasma glial fibrillary acidic protein (GFAP) levels in PTSD. | Miller MW et al. | β | 2026 | β |
| Genetics of SSRI antidepressant use and relationship to psychiatric and medical traits. | Levey D et al. | β | 2026 | β |
| Genome-wide association study of social isolation in 63,497 Japanese individuals from the general population. | Ohseto H et al. | β | 2026 | β |
| Genomic Study of Resilience to Posttraumatic Stress Disorder in the Million Veteran Program. | Overstreet C et al. | β | 2026 | β |
| Human-specific features of the cerebellum and ZP2-regulated synapse development. | Kim SK et al. | β | 2026 | β |
| Negr1 deficiency alters glutamate signalling and kynurenine pathway in a mouse model of psychiatric disorders. | KuuskmΓ€e C et al. | β | 2026 | β |
| Prediction of adolescent internalizing disorder risk: Evidence from the Norwegian mother, father, and child cohort study. | Frei E et al. | β | 2026 | β |
| Psychiatry at the turn of the century and a vision for future developments. | Oquendo MA et al. | β | 2026 | β |
| The genetics of cannabis lifetime use. | Bright U et al. | β | 2026 | β |
| The potential role of ANXA11/ANXA3 protein level ratio in predicting antidepressant treatment outcomes. | Zhou X et al. | β | 2026 | β |
| Transdiagnostic and Disorder-Level Genome-Wide Association Studies Enhance Precision of Substance Use and Psychiatric Genetic Risk Profiles in African and European Ancestries. | Khan Y et al. | β | 2026 | β |
| Ultrasound Applications in the Treatment of Major Depressive Disorder: A Systematic Review of Techniques and Therapeutic Potentials in Clinical Trials and Animal Model Studies. | Tan G et al. | β | 2026 | β |
| A Comprehensive 4-layered <i>In Silico</i> Pharmacogenomics Analysis of the Genetic Addiction Risk Severity (GARS) Test: Strong Genetic Evidence Supporting GARS as a Novel Personalized Pre-addiction Assessment Tool in the Opioid Crisis Era. | Sharafshah A et al. | β | 2025 | β |
| Adolescent Depressive Symptom Trajectories From Before to After the COVID-19 Pandemic. | GatavinΕ‘ MM et al. | β | 2025 | β |
| Advances in discerning the mechanisms underlying depression and resiliency: relation to the neurobiology of stress and the effects of antidepressants. | Gold PW et al. | β | 2025 | β |
| A genome-wide analysis of the shared genetic risk architecture of complex neurological and psychiatric disorders. | Smeland OB et al. | β | 2025 | β |
| A multi-omic approach implicates novel protein dysregulation in post-traumatic stress disorder. | Wang J et al. | β | 2025 | β |
| Analysis of Genomic and Transcriptomic Data Revealed Key Genes and Processes in the Development of Major Depressive Disorder. | Ivanov SM et al. | β | 2025 | β |
| Antidepressants account for the causal effect of major depressive disorder on type 2 diabetes. | Baranova A et al. | β | 2025 | β |
| Assessment and ascertainment in psychiatric molecular genetics: challenges and opportunities for cross-disorder research. | Cai N et al. | β | 2025 | β |
| A unified framework for cell-type-specific eQTL prioritization by integrating bulk and scRNA-seq data. | Yu X et al. | β | 2025 | β |
| Blunted cortisol as a biomarker of depression based on the attenuation hypothesis: A Mendelian randomization analysis using depression as exposure. | Chan II | β | 2025 | β |
| Cerebellar neurocan gene expression is a common pathogenic factor of trigeminal neuralgia and depression. | Zeng Z et al. | β | 2025 | β |
| Characterizing the HLA region's genetic architecture through local heritability and correlation analyses across complex traits in diverse ancestries. | Wei M et al. | β | 2025 | β |
| Clinical, Genomic, and Neurophysiological Correlates of Lifetime Suicide Attempts among Individuals with an Alcohol Use Disorder. | Barr PB et al. | β | 2025 | β |
| Cross-ancestry genome-wide association study and systems-level integrative analyses implicate new risk genes and therapeutic targets for depression. | Li Y et al. | β | 2025 | β |
| Detection of positive selection on depression-associated genes. | Yang S et al. | β | 2025 | β |
| Differences and similarities between the genetic architecture of lifetime substance use across different substances. | Bright U et al. | β | 2025 | β |
| Distinguishing clinical and genetic risk factors for suicidal ideation and behavior in a diverse hospital population. | Colbert SMC et al. | β | 2025 | β |
| Do Common Genetic Factors Underlie Comorbidity Between Migraine and Major Depressive Disorder in Youth? | Merikangas AK et al. | β | 2025 | β |
| Dynamic changes in hemispheric lateralization in major depressive disorder correlate with neurotransmitter and genetic profiles: a DIRECT consortium study. | Ping LL et al. | β | 2025 | β |
| Elevated NEGR1 in brain induces anxiety or depression-like phenotypes and synaptic dysfunction. | Zhang YQ et al. | β | 2025 | β |
| Evaluating metabolome-wide causal effects on risk for psychiatric and neurodegenerative disorders. | Gilchrist L et al. | β | 2025 | β |
| Examining polygenic scores for depression, depressive symptoms from childhood to adolescence, and adolescent substance use in a diverse sample: The moderating impact of a family-centered intervention. | Elam KK et al. | β | 2025 | β |
| Externalizing as a common genetic influence for a broad spectrum of substance use and behavioral conditions: A developmental perspective from the Avon Longitudinal Study of Parents and Children. | Deng WQ et al. | β | 2025 | β |
| Genetic Confounding of the Association Between Age at First Hormonal Contraception and Depression. | Mundy J et al. | β | 2025 | β |
| Genetic Interplay Between Attention-Deficit/Hyperactivity Disorder and Pain Suggests Neurodevelopmental Pathways and Comorbidity Risk. | Ciochetti NP et al. | β | 2025 | β |
| Genetic liability to depression and cerebral small vessel disease: A mendelian randomization study. | Wang M et al. | β | 2025 | β |
| Genetic risk scores of psychiatric phenotypes are associated with depression risk in a prospective Dutch population-based cohort. | Hofman A et al. | β | 2025 | β |
| Genome-wide analysis of screen behaviors among adolescents identifies novel loci and overlap with educational attainment and mental disorders. | Frei E et al. | β | 2025 | β |
| Genome-wide association analyses identify distinct genetic architectures for early-onset and late-onset depression. | Shorter JR et al. | β | 2025 | β |
| Genome-wide association meta-analysis and rare copy number variant analysis of treatment-resistant depression. | Xiong Y et al. | β | 2025 | β |
| GWAS identifies genetic loci, lifestyle factors and circulating biomarkers that are risk factors for sarcoidosis. | Yuan S et al. | β | 2025 | β |
| Hippocampal Zkscan4 confers resilience to chronic stress-induced depression-like behaviors. | Gao K et al. | β | 2025 | β |
| Identification and validation of depression-associated genetic variants in the UK Biobank cohort with transcriptome and DNA methylation analyses in independent cohorts. | Lafta MS et al. | β | 2025 | β |
| Immune and metabolic disturbance as a function of genetic risk and phase of illness in major depression. | Howard DM et al. | β | 2025 | β |
| Insights from a methylome-wide association study of antidepressant exposure. | Davyson E et al. | β | 2025 | β |
| Just a SNP away: The future of <i>in vivo</i> massively parallel reporter assay. | Degner KN et al. | β | 2025 | β |
| Leveraging genomic and transcriptomic data of diverse ancestry to uncover mechanisms of psychiatric risk in the adult and developing brain. | Jajoo A et al. | β | 2025 | β |
| Low Stability and Specificity of Polygenic Risk Scores for Major Psychiatric Disorders Limit Their Clinical Utility. | Mollon J et al. | β | 2025 | β |
| Mapping DNA Methylation Signatures to Identify Epigenetic Variation Across Subcortical Regions of the Human Posttraumatic Stress Disorder Brain. | Li H et al. | β | 2025 | β |
| Mediating Role of Trauma Connecting Psychiatric Family History and Adolescent Mental Health. | Chaiyachati BH et al. | β | 2025 | β |
| metaGE: Investigating genotype x environment interactions through GWAS meta-analysis. | De Walsche A et al. | β | 2025 | β |
| miRNA dysregulation in depression: unraveling the interplay between neuroplasticity, HPA axis dysfunction, and neuroinflammation. | Mansour RM et al. | β | 2025 | β |
| Multi-ancestry investigation of the genomics of erectile dysfunction. | Bright U et al. | β | 2025 | β |
| Novel Gene-Informed Regional Brain Targets for Clinical Screening for Major Depression. | Odierna GL et al. | β | 2025 | β |
| Observer-rated environmental sensitivity and its characterization at behavioral, genetic, and physiological levels. | Weyn S et al. | β | 2025 | β |
| Optimism moderates the relationship between inflammatory polygenic risk and major depressive disorder in U.S. Military veterans. | Fischer IC et al. | β | 2025 | β |
| Overexpression of OTX2 in human neural cells links depression risk genes. | Feng Y et al. | β | 2025 | β |
| Prevalence and correlates of common mental disorders among participants of the Uganda Genome Resource: Opportunities for psychiatric genetics research. | Kalungi A et al. | β | 2025 | β |
| Psychiatric genetics in the diverse landscape of Latin American populations. | Bruxel EM et al. | β | 2025 | β |
| Psychiatric genome-wide association study enrichment shows promise for future psychopharmaceutical discoveries. | Hatoum AS et al. | β | 2025 | β |
| Sex-stratified Genomic Structural Equation Models of Posttraumatic Stress Inform PTSD Etiology: L'utilisation de la modΓ©lisation gΓ©nomique par Γ©quations structurelles stratifiΓ©e par sexe du stress post-traumatique pour expliquer l'Γ©tiologie du TSPT. | Moo-Choy A et al. | β | 2025 | β |
| Shared polygenic susceptibility to treatment response in severe affective and psychotic disorders: Evidence from GWAS data sets. | Facal F et al. | β | 2025 | β |
| Single-cell transcriptomics reveals Sox6 positive interneurons enriched in the prefrontal cortex of female mice vulnerable to chronic social stress. | Ma G et al. | β | 2025 | β |
| Single-nucleus chromatin accessibility profiling identifies cell types and functional variants contributing to major depression. | Chawla A et al. | β | 2025 | β |
| Single-Nucleus Transcriptomics of the Nucleus Accumbens Reveals Cell-Type-Specific Dysregulation in Adolescent Macaques with Depressive-Like Behaviors. | Teng T et al. | β | 2025 | β |
| Structural neural plasticity evoked by rapid-acting antidepressant interventions. | Liao C et al. | β | 2025 | β |
| Targeting pro-dopaminergic agonism to attenuate depression in patients displaying genetic/epigenetic predisposition to hypodopaminergia. | Lewandrowski KU et al. | β | 2025 | β |
| The genetic overlap between major depressive disorder, white blood cell counts and interleukin 6. | WistrΓΆm ED et al. | β | 2025 | β |
| The genetics of severe depression. | Franklin CE et al. | β | 2025 | β |
| The neurobiology of major depressive disorder: Updates and perspectives from proteomics. | Spero V et al. | β | 2025 | β |
| The regulatory variant rs1950834 confers the risk of depressive disorder by reducing LRFN5 expression. | Luan D et al. | β | 2025 | β |
| The Role and Mechanisms of Probiotic Supplementation on Depressive Symptoms: A Narrative Review. | Dacaya P et al. | β | 2025 | β |
| The Role of Genetic Data in Dissecting Depression Heterogeneity. | Mitchell BL et al. | β | 2025 | β |
| Trans-ancestry genome-wide study of depression identifies 697 associations implicating cell types and pharmacotherapies. | Major Depressive Disorder Working Group of the Psychiatric Genomics Consortium. Electronic address: andrew.mcintosh@ed.ac.uk et al. | β | 2025 | β |
| Translating Molecular Psychiatry: From Biomarkers to Personalized Therapies-A Narrative Review. | Capatina TF et al. | β | 2025 | β |
| Understanding the Comorbidities Among Psychiatric Disorders, Chronic Low Back Pain, and Spinal Degenerative Disease Using Observational and Genetically Informed Analyses. | Qiu D et al. | β | 2025 | β |
| Unraveling the genetics of gulf war illness in diverse participants enrolled in the million veteran program. | Pathak GA et al. | β | 2025 | β |
| Unveiling the enigma of anxiety disorders and depression: from pathogenesis to treatment. | Pan HQ et al. | β | 2025 | β |
| Whole exome sequencing identified six novel genes for depressive symptoms. | Li ZY et al. | β | 2025 | β |
| Addressing cortex dysregulation in youth through brain health check coaching and prophylactic brain development. | Blum K et al. | β | 2024 | β |
| Advancing preclinical chronic stress models to promote therapeutic discovery for human stress disorders. | Gyles TM et al. | β | 2024 | β |
| A genome-wide investigation into the underlying genetic architecture of personality traits and overlap with psychopathology. | Gupta P et al. | β | 2024 | β |
| A Gpr35-tuned gut microbe-brain metabolic axis regulates depressive-like behavior. | Cheng L et al. | β | 2024 | β |
| Alcohol milestones and internalizing, externalizing, and executive function: longitudinal and polygenic score associations. | Paul SE et al. | β | 2024 | β |
| Ancestry-independent risk of venous thromboembolism in individuals with sickle cell trait vs factor V Leiden. | Lin KH et al. | β | 2024 | β |
| Annual Research Review: Sex, gender, and internalizing conditions among adolescents in the 21st century - trends, causes, consequences. | Keyes KM et al. | β | 2024 | β |
| Anti-inflammatory Drugs in the Treatment of Depression. | Cavanagh JT | β | 2024 | β |
| A perspective on translating genomic discoveries into targets for brain-machine interface and deep brain stimulation devices. | Valentim WL et al. | β | 2024 | β |
| Application of polygenic scores to a deeply phenotyped sample enriched for substance use disorders reveals extensive pleiotropy with psychiatric and somatic traits. | Hartwell EE et al. | β | 2024 | β |
| Applying an ELSI lens to real-world data and novel genomic insights for personalized mental healthcare. | Hendricks-Sturrup RM et al. | β | 2024 | β |
| Approaches to enable equitable psychiatric genetic research in Africa. | Kalungi A et al. | β | 2024 | β |
| Assessing the validity of a self-reported clinical diagnosis of schizophrenia. | Woolway GE et al. | β | 2024 | β |
| Association between pre-dementia psychiatric diagnoses and all-cause dementia is independent from polygenic dementia risks in the UK Biobank. | Freudenberg-Hua Y et al. | β | 2024 | β |
| Association of HHVβ6 reactivation and SLC6A3 (C>T, rs40184), BDNF (C>T, rs6265), and JARID2 (G>A, rs9383046) single nucleotide polymorphisms in depression. | Bumrungthai S et al. | β | 2024 | β |
| Associations between attention-deficit hyperactivity disorder genetic liability and ICD-10 medical conditions in adults: utilizing electronic health records in a Phenome-Wide Association Study. | Haan E et al. | β | 2024 | β |
| A zebrafish-based acoustic motor response (AMR) assay to evaluate chemical-induced developmental neurotoxicity. | McAtee D et al. | β | 2024 | β |
| Biomarker-Guided Tailored Therapy in Major Depression. | Perna G et al. | β | 2024 | β |
| Clinical associations with treatment resistance in depression: An electronic health record study. | Coombes BJ et al. | β | 2024 | β |
| Common polygenic variation in the early medication change (EMC) cohort affects disorder risk, but not the antidepressant treatment response. | MΓΌller S et al. | β | 2024 | β |
| Critical genes in genitourinary embryogenesis are related to the development of adult hydrocele. | Roberson JL et al. | β | 2024 | β |
| Cross-ancestry genetic investigation of schizophrenia, cannabis use disorder, and tobacco smoking. | Johnson EC et al. | β | 2024 | β |
| Deciphering the genetic interplay between depression and dysmenorrhea: a Mendelian randomization study. | Liu S et al. | β | 2024 | β |
| Effects of sex and gender on the etiologies and presentation of select internalizing psychopathologies. | Singh K et al. | β | 2024 | β |
| Evidence Based Clinical Analytics Supporting the Genetic Addiction Risk Severity (GARS) Assessment to Early Identify Probands in Preaddiction. | Blum K et al. | β | 2024 | β |
| Gene discovery and biological insights into anxiety disorders from a large-scale multi-ancestry genome-wide association study. | Friligkou E 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 Architectures of Adolescent Depression Trajectories in 2 Longitudinal Population Cohorts. | Grimes PZ et al. | β | 2024 | β |
| Genetic contribution to the comorbidity between attention-deficit/hyperactivity disorder and substance use disorders. | Koller D et al. | β | 2024 | β |
| Genetic vulnerability and adverse mental health outcomes following mild traumatic brain injury: a meta-analysis of CENTER-TBI and TRACK-TBI cohorts. | Kals M et al. | β | 2024 | β |
| Genome-wide association study of the common retinal disorder epiretinal membrane: Significant risk loci in each of three American populations. | Gelernter J et al. | β | 2024 | β |
| Genome-wide meta-analysis, functional genomics and integrative analyses implicate new risk genes and therapeutic targets for anxiety disorders. | Li 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 |
| Genomics Research of Lifetime Depression in the Netherlands: The BIObanks Netherlands Internet Collaboration (BIONIC) Project. | Huider F et al. | β | 2024 | β |
| Individual Trajectories of Depressive Symptoms Within Racially-Ethnically Diverse Youth: Associations with Polygenic Risk for Depression and Substance Use Intent and Perceived Harm. | Elam KK et al. | β | 2024 | β |
| Integrating human endogenous retroviruses into transcriptome-wide association studies highlights novel risk factors for major psychiatric conditions. | Duarte RRR et al. | β | 2024 | β |
| Investigating the Shared Genetic Etiology Between Parkinson's Disease and Depression. | Reyes-PΓ©rez P et al. | β | 2024 | β |
| INviting Veterans InTo Enrollment in Alzheimer's Disease Research Centers (INVITE-ADRC): An NIA and VA-sponsored initiative to increase veteran participation in aging and dementia research. | Padula CB et al. | β | 2024 | β |
| Is There a Natural, Non-addictive, and Non-anti-reward, Safe, Gene-based Solution to Treat Reward Deficiency Syndrome? KB220 Variants vs GLP-1 Analogs. | Modestino EJ et al. | β | 2024 | β |
| Major depressive disorder: hypothesis, mechanism, prevention and treatment. | Cui L et al. | β | 2024 | β |
| Mendelian randomization analyses reveal causal relationships between brain functional networks and risk of psychiatric disorders. | Mu C et al. | β | 2024 | β |
| Mood and microbes: a comprehensive review of intestinal microbiota's impact on depression. | Luqman A et al. | β | 2024 | β |
| Multi-ancestry genome-wide association study of major depression aids locus discovery, fine mapping, gene prioritization and causal inference. | Meng X et al. | β | 2024 | β |
| Mutational landscape of risk variants in comorbid depression and obesity: a next-generation sequencing approach. | PΓ©rez-GutiΓ©rrez AM et al. | β | 2024 | β |
| Naltrexone blocks alcohol-induced effects on kappa-opioid receptors in the plasma membrane. | Oasa S et al. | β | 2024 | β |
| Relative synonymous codon usage and codon pair analysis of depression associated genes. | Khandia R et al. | β | 2024 | β |
| Search for signals of positive selection of circadian rhythm genes PER1, PER2, PER3 in different human populations. | Mishina AI et al. | β | 2024 | β |
| Sex-specific associations between circadian-related genes and depression in UK Biobank participants highlight links to glucose metabolism, inflammation and neuroplasticity pathways. | Minbay M et al. | β | 2024 | β |
| Social connection as a critical factor for mental and physical health: evidence, trends, challenges, and future implications. | Holt-Lunstad J | β | 2024 | β |
| Solving the Global Opioid Crisis: Incorporating Genetic Addiction Risk Assessment with Personalized Dopaminergic Homeostatic Therapy and Awareness Integration Therapy. | Zeine F et al. | β | 2024 | β |
| Summary Document Research on RDS Anti-addiction Modeling: Annotated Bibliography. | Blum K et al. | β | 2024 | β |
| Systems biology dissection of PTSD and MDD across brain regions, cell types, and blood. | Daskalakis NP et al. | β | 2024 | β |
| The impact of assortative mating, participation bias and socioeconomic status on the polygenic risk of behavioural and psychiatric traits. | Cabrera-Mendoza B et al. | β | 2024 | β |
| The Mood and Resilience in Offspring (MARIO) project: a longitudinal cohort study among offspring of parents with and without a mood disorder. | Vreeker A et al. | β | 2024 | β |
| The Risk Genes for Neuropsychiatric Disorders <i>negr1</i> and <i>opcml</i> Are Expressed throughout Zebrafish Brain Development. | Habicher J et al. | β | 2024 | β |
| Using Alternative Definitions of Controls to Increase Statistical Power in GWAS. | Benstock SE et al. | β | 2024 | β |
| Using Medical Records to Investigate the Genetics of Treatment-Resistant Depression Across Health Care Systems. | Polimanti R | β | 2024 | β |
| Whole-exome sequencing in UK Biobank reveals rare genetic architecture for depression. | Tian R et al. | β | 2024 | β |
| A comparison of anatomic and cellular transcriptome structures across 40 human brain diseases. | Zeighami Y et al. | β | 2023 | β |
| A multivariate blood metabolite algorithm stably predicts risk and resilience to major depressive disorder in the general population. | Radford-Smith DE 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 |
| Are We Getting High Cause the Thrill is Gone? | Blum K et al. | β | 2023 | β |
| A sex-specific genome-wide association study of depression phenotypes in UK Biobank. | Silveira PP et al. | β | 2023 | β |
| Association between programmed death-1 pathway and major depression. | Huang KW et al. | β | 2023 | β |
| Body mass index and inflammation in depression and treatment-resistant depression: a Mendelian randomisation study. | Karageorgiou V et al. | β | 2023 | β |
| Burning down the house: reinventing drug discovery in psychiatry for the development of targeted therapies. | Miller AH et al. | β | 2023 | β |
| Candidate biomarkers in psychiatric disorders: state of the field. | Abi-Dargham A et al. | β | 2023 | β |
| Causal association between subtypes of osteoarthritis and common comorbidities: A Mendelian randomisation study. | Thompson W et al. | β | 2023 | β |
| Characterizing Alcohol Expectancies in the ABCD Study: Associations with Sociodemographic Factors, the Immediate Social Environment, and Genetic Propensities. | Johnson EC et al. | β | 2023 | β |
| Characterizing the polygenic architecture of complex traits in populations of East Asian and European descent. | De Lillo A et al. | β | 2023 | β |
| Comparative neurogenetics of dog behavior complements efforts towards human neuropsychiatric genetics. | Morrill K et al. | β | 2023 | β |
| Current State of Modeling Human Psychiatric Disorders Using Zebrafish. | Costa FV et al. | β | 2023 | β |
| Depression pathophysiology, risk prediction of recurrence and comorbid psychiatric disorders using genome-wide analyses. | Als TD et al. | β | 2023 | β |
| Dimensional and transdiagnostic phenotypes in psychiatric genome-wide association studies. | Waszczuk MA et al. | β | 2023 | β |
| Dimensional clinical phenotyping using <i>post-mortem</i> brain donor medical records: <i>post-mortem</i> RDoC profiling is associated with Alzheimer's disease neuropathology. | Vogelgsang J et al. | β | 2023 | β |
| Dopaminergic dysfunction: Role for genetic & epigenetic testing in the new psychiatry. | Blum K et al. | β | 2023 | β |
| Effects of physical activity and sedentary time on depression, anxiety and well-being: a bidirectional Mendelian randomisation study. | Casanova F et al. | β | 2023 | β |
| Epidemiologic and Genetic Associations of Endometriosis With Depression, Anxiety, and Eating Disorders. | Koller D et al. | β | 2023 | β |
| Epigenetic regulation in major depression and other stress-related disorders: molecular mechanisms, clinical relevance and therapeutic potential. | Yuan M 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 |
| Evidence for the <i>DRD2</i> Gene as a Determinant of Reward Deficiency Syndrome (RDS). | Blum K et al. | β | 2023 | β |
| Examining the shared etiology of psychopathology with genome-wide association studies. | Mallard TT et al. | β | 2023 | β |
| Functional and molecular characterization of suicidality factors using phenotypic and genome-wide data. | Quintero Reis A et al. | β | 2023 | β |
| Genetic liability to suicidal thoughts and behaviors and risk of suicide attempt in US military veterans: moderating effects of cumulative trauma burden. | Nichter B et al. | β | 2023 | β |
| Genome-wide association studies and cross-population meta-analyses investigating short and long sleep duration. | Austin-Zimmerman I et al. | β | 2023 | β |
| Genome-wide association studies: utility and limitations for research in physiology. | Pereira Ciochetti N et al. | β | 2023 | β |
| Genome-wide association study of cerebellar white matter microstructure and genetic overlap with common brain disorders. | Wu BS et al. | β | 2023 | β |
| Genome-wide significant risk loci for mood disorders in the Old Order Amish founder population. | Humphries EM et al. | β | 2023 | β |
| Genomics of psychiatric disorders: Regional challenges and opportunities | Forero DA | β | 2023 | β |
| Guidelines for Evaluating the Comparability of Down-Sampled GWAS Summary Statistics. | Williams CM et al. | β | 2023 | β |
| Gut microbiome at the crossroad of genetic variants and behavior disorders. | Cheng L et al. | β | 2023 | β |
| High genetic risk for depression as an independent risk factor for mortality in patients referred for coronary angiography. | KrΓ€mer RM et al. | β | 2023 | β |
| High intensity interval training exercise increases dopamine D2 levels and modulates brain dopamine signaling. | Tyler J et al. | β | 2023 | β |
| Identification of novel genomic risk loci shared between common epilepsies and psychiatric disorders. | Karadag N et al. | β | 2023 | β |
| Identification of novel targets and pathways to distinguish suicide dependent or independent on depression diagnosis. | Peng S et al. | 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 |
| Immune mechanisms of depression in rheumatoid arthritis. | Brock J et al. | β | 2023 | β |
| Impact of Copy Number Variants and Polygenic Risk Scores on Psychopathology in the UK Biobank. | Mollon J 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 |
| Integrating genetics and transcriptomics to study major depressive disorder: a conceptual framework, bioinformatic approaches, and recent findings. | Hicks EM et al. | β | 2023 | β |
| Invited Expert Opinion- Bioinformatic and Limitation Directives to Help Adopt Genetic Addiction Risk Screening and Identify Preaddictive Reward Dysregulation: Required Analytic Evidence to Induce Dopamine Homeostatsis. | Blum K et al. | β | 2023 | β |
| Loneliness and depression: bidirectional mendelian randomization analyses using data from three large genome-wide association studies. | Sbarra DA et al. | β | 2023 | β |
| Metabolomic Investigation of Major Depressive Disorder Identifies a Potentially Causal Association With Polyunsaturated Fatty Acids. | Davyson E et al. | β | 2023 | β |
| Methylation in MAD1L1 is associated with the severity of suicide attempt and phenotypes of depression. | Sokolov AV et al. | β | 2023 | β |
| Molecular pathways of major depressive disorder converge on the synapse. | Fries GR et al. | β | 2023 | β |
| Mothers' symptoms of anxiety and depression and the development of child temperament: A genetically informative, longitudinal investigation. | Ahmadzadeh YI 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-omics cannot replace sample size in genome-wide association studies. | Baranger DAA et al. | β | 2023 | β |
| Multi-omics data integration methods and their applications in psychiatric disorders. | Sathyanarayanan A et al. | β | 2023 | β |
| Neurological and psychiatric comorbidities of migraine: Concepts and future perspectives. | Pelzer N et al. | β | 2023 | β |
| New insights from the last decade of research in psychiatric genetics: discoveries, challenges and clinical implications. | Andreassen OA 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 |
| Polygenic Contributions to Suicidal Thoughts and Behaviors in a Sample Ascertained for Alcohol Use Disorders. | Colbert SMC et al. | β | 2023 | β |
| Polygenicity of Comorbid Depression in Multiple Sclerosis. | Kowalec K et al. | β | 2023 | β |
| Polygenic risk for mental disorders as predictors of posttraumatic stress disorder after mild traumatic brain injury. | Stein MB et al. | β | 2023 | β |
| Polygenic Risk for Schizophrenia, Major Depression, and Post-traumatic Stress Disorder and Hippocampal Subregion Volumes in Middle Childhood. | Pine JG et al. | β | 2023 | β |
| Prebiotic and Probiotic Modulation of the Microbiota-Gut-Brain Axis in Depression. | Radford-Smith DE et al. | β | 2023 | β |
| Reply to: Multivariate BWAS can be replicable with moderate sample sizes. | Tervo-Clemmens B et al. | β | 2023 | β |
| Sex and cell-specific gene expression in corticolimbic brain regions associated with psychiatric disorders revealed by bulk and single-nuclei RNA sequencing. | Fitzgerald E et al. | β | 2023 | β |
| Sex Differences in Depression and Anxiety. | Pavlidi P et al. | β | 2023 | β |
| Sex Significantly Impacts the Function of Major Depression-Linked Variants InΒ Vivo. | Mulvey B et al. | β | 2023 | β |
| Sex-Specific Genetic and Transcriptomic Liability to Neuroticism. | Wendt FR et al. | β | 2023 | β |
| Single-Nucleus Transcriptome Profiling of Dorsolateral Prefrontal Cortex: Mechanistic Roles for Neuronal Gene Expression, Including the 17q21.31 Locus, in PTSD Stress Response. | Chatzinakos C et al. | β | 2023 | β |
| Stress-related exposures amplify the effects of genetic susceptibility on depression and anxiety. | Wang R et al. | β | 2023 | β |
| The evolution of Big Data in neuroscience and neurology. | Dipietro L et al. | β | 2023 | β |
| The First Exploratory Personalized Medicine Approach to Improve Bariatric Surgery Outcomes Utilizing Psychosocial and Genetic Risk Assessments: Encouraging Clinical Research. | Thanos PK et al. | β | 2023 | β |
| The Genetically Informed Neurobiology of Addiction (GINA) model. | Bogdan R et al. | β | 2023 | β |
| The genetic basis of major depressive disorder. | Flint J | β | 2023 | β |
| The genetic contribution to the comorbidity of depression and anxiety: a multi-site electronic health records study of almost 178 000 people. | Coombes BJ et al. | β | 2023 | β |
| The Role of IgLON Cell Adhesion Molecules in Neurodegenerative Diseases. | Salluzzo M et al. | β | 2023 | β |
| "TO BE OR NOT TO BE" GWAS Ends the Controversy about the DRD2 Gene as a Determinant of Reward Deficiency Syndrome (RDS). | Blum K et al. | β | 2023 | β |
| Transcriptomic and Macroscopic Architectures of Multimodal Covariance Network Reveal Molecular-Structural-Functional Co-alterations. | Jiang L et al. | β | 2023 | β |
| Understanding the mechanism of action and clinical effects of neuroactive steroids and GABAergic compounds in major depressive disorder. | Cutler AJ et al. | β | 2023 | β |
| Unrevealing the shared genetic mechanisms underlying C-reactive protein and schizophrenia. | Yang Z et al. | β | 2023 | β |
| Associations of Polygenic Risk Score for Late-Onset Alzheimer's Disease With Biomarkers. | Li Q et al. | β | 2022 | β |
| Blockade of kappa-opioid receptors amplifies microglia-mediated inflammatory responses. | Missig G et al. | β | 2022 | β |
| Clinical, environmental, and genetic risk factors for substance use disorders: characterizing combined effects across multiple cohorts. | Barr PB et al. | β | 2022 | β |
| Collective genomic segments with differential pleiotropic patterns between cognitive dimensions and psychopathology. | Lam M et al. | β | 2022 | β |
| Comprehensive genome-wide association study of different forms of hernia identifies more than 80 associated loci. | Fadista J et al. | β | 2022 | β |
| Depression-Associated <i>Negr1</i> Gene-Deficiency Induces Alterations in the Monoaminergic Neurotransmission Enhancing Time-Dependent Sensitization to Amphetamine in Male Mice. | Kaare M et al. | β | 2022 | β |
| Dissecting the heterogeneity of posttraumatic stress disorder: differences in polygenic risk, stress exposures, and course of PTSD subtypes. | Campbell-Sills L et al. | β | 2022 | β |
| Evaluation of animal model congruence to human depression based on large-scale gene expression patterns of the CNS. | Gammie SC | β | 2022 | β |
| Exploring polygenic-environment and residual-environment interactions for depressive symptoms within the UK Biobank. | Gillett AC et al. | β | 2022 | β |
| Feasibility and application of polygenic score analysis to the morphology of human-induced pluripotent stem cells. | Coleman JRI | β | 2022 | β |
| Genetics of age-at-onset in major depression. | Harder A et al. | β | 2022 | β |
| Genetic variants associated with psychiatric disorders are enriched at epigenetically active sites in lymphoid cells. | Lynall ME et al. | β | 2022 | β |
| Genome-wide association studies in non-anxiety individuals identified novel risk loci for depression. | Cheng B et al. | β | 2022 | β |
| Genome-Wide Investigation of Maximum Habitual Alcohol Intake in US Veterans in Relation to Alcohol Consumption Traits and Alcohol Use Disorder. | Deak JD et al. | β | 2022 | β |
| Gut Microbiota Metabolites in Major Depressive Disorder-Deep Insights into Their Pathophysiological Role and Potential Translational Applications. | Ortega MA et al. | β | 2022 | β |
| Identification of 64 new risk loci for major depression, refinement of the genetic architecture and risk prediction of recurrence and comorbidities | Als TD et al. | β | 2022 | β |
| Major Depressive Disorder: Existing Hypotheses about Pathophysiological Mechanisms and New Genetic Findings. | Kamran M et al. | β | 2022 | β |
| Meta-analysis fine-mapping is often miscalibrated at single-variant resolution. | Kanai M et al. | β | 2022 | β |
| Multi-Omics Characterization of Early- and Adult-Onset Major Depressive Disorder. | Grant CW et al. | β | 2022 | β |
| Neandertal introgression partitions the genetic landscape of neuropsychiatric disorders and associated behavioral phenotypes. | Dannemann M et al. | β | 2022 | β |
| Neurobiological, familial and genetic risk factors for dimensional psychopathology in the Adolescent Brain Cognitive Development study. | Wainberg M et al. | β | 2022 | β |
| Not Only Gene Discovery: Genome-wide Association Studies and Polygenic Risk Scores as Tools to Dissect the Heterogeneity of Major Depressive Disorder. | Polimanti R | β | 2022 | β |
| Parsing genetically influenced risk pathways: genetic loci impact problematic alcohol use via externalizing and specific risk. | Barr PB et al. | β | 2022 | β |
| Phenome-wide screening of the putative causal determinants of depression using genetic data. | Aman AM et al. | β | 2022 | β |
| Psychiatric genomics, mental health equity, and intersectionality: A framework for research and practice. | Brown JEH et al. | β | 2022 | β |
| Putting Genetics to Work in the Psychiatric Clinic. | McMahon FJ | β | 2022 | β |
| Regional gene expression signatures are associated with sex-specific functional connectivity changes in depression. | Talishinsky A et al. | β | 2022 | β |
| Reward Deficiency Syndrome (RDS) Surprisingly Is Evolutionary and Found Everywhere: Is It "Blowin' in the Wind"? | Blum K et al. | β | 2022 | β |
| Shared brain and genetic architectures between mental health and physical activity. | Zhang W et al. | β | 2022 | β |
| Shared genetic loci between depression and cardiometabolic traits. | Torgersen K et al. | β | 2022 | β |
| Should Reward Deficiency Syndrome (RDS) Be Considered an Umbrella Disorder for Mental Illness and Associated Genetic and Epigenetic Induced Dysregulation of Brain Reward Circuitry? | Blum K et al. | β | 2022 | β |
| Synaptic Mechanisms Regulating Mood State Transitions in Depression. | Parekh PK et al. | β | 2022 | β |
| Ten challenges for clinical translation in psychiatric genetics. | Derks EM et al. | β | 2022 | β |
| The Australian Genetics of Depression Study: New Risk Loci and Dissecting Heterogeneity Between Subtypes. | Mitchell BL et al. | β | 2022 | β |
| The Cannabis-Induced Epigenetic Regulation of Genes Associated with Major Depressive Disorder. | Mohammad GS et al. | β | 2022 | β |
| The Hierarchical Taxonomy of Psychopathology (HiTOP) in psychiatric practice and research. | Kotov R et al. | β | 2022 | β |
| The pharmacogenomics of selective serotonin reuptake inhibitors. | GarcΓa-MarΓn LM et al. | β | 2022 | β |
| Time for united action on depression: a Lancet-World Psychiatric Association Commission. | Herrman H et al. | β | 2022 | β |
| Understanding the genetics of peripartum depression: Research challenges, strategies, and opportunities. | Lancaster EE et al. | β | 2022 | β |
| Validation of Candidate Sleep Disorder Risk Genes Using Zebrafish. | Tran S et al. | β | 2022 | β |
| Why haven't we solved the addiction crisis? | Blum K et al. | β | 2022 | β |
| Air pollution interacts with genetic risk to influence cortical networks implicated in depression. | Li Z et al. | β | 2021 | β |
| A Review of DNA Risk Alleles to Determine Epigenetic Repair of mRNA Expression to Prove Therapeutic Effectiveness in Reward Deficiency Syndrome (RDS): Embracing "Precision Behavioral Management". | Blum K et al. | β | 2021 | β |
| From genetics to systems biology of stress-related mental disorders. | Dalvie S et al. | β | 2021 | β |
| High-Fat Diet Induces Pre-Diabetes and Distinct Sex-Specific Metabolic Alterations in Negr1-Deficient Mice. | Kaare M et al. | β | 2021 | β |
| Large-scale whole-exome sequencing association study identifies FOXH1 gene and sphingolipid metabolism pathway influencing major depressive disorder. | Zhou W et al. | β | 2021 | β |
| Polygenic Risk Scores Derived From Varying Definitions of Depression and Risk of Depression. | Mitchell BL et al. | β | 2021 | β |
| Transcriptional-regulatory convergence across functional MDD risk variants identified by massively parallel reporter assays. | Mulvey B et al. | β | 2021 | β |
| Translational and Molecular Cytoarchitectural Genetic Guided Therapy to Induce Dopamine Homeostatic Neuro-signaling in Reward Deficiency and Associated Drug and Behavioral Addiction Seeking: A 60 Year Sojourn the Future is Now. | Blum K et al. | β | 2021 | β |