Study / S7PYNFP8J2021-07-22

Transcriptional-regulatory convergence across functional MDD risk variants identified by massively parallel reporter assays

Bernard Mulvey, Joseph D Dougherty

About this study

Family and population studies indicate clear heritability of major depressive disorder (MDD), though its underlying biology remains unclear. The majority of single-nucleotide polymorphism (SNP) linkage blocks associated with MDD by genome-wide association studies (GWASes) are believed to alter transcriptional regulators (e.g., enhancers, promoters) based on enrichment of marks correlated with these functions. A key to understanding MDD pathophysiology will be elucidation of which SNPs are functional and how such functional variants biologically converge to elicit the disease. Furthermore, retinoids can elicit MDD in patients and promote depressive-like behaviors in rodent models, acting via a regulatory system of retinoid receptor transcription factors (TFs). We therefore sought to simultaneously identify functional genetic variants and assess retinoid pathway regulation of MDD risk loci. Using Massively Parallel Reporter Assays (MPRAs), we functionally screened over 1000 SNPs prioritized from 39 neuropsychiatric trait/disease GWAS loci, selecting SNPs based on overlap with predicted regulatory features—including expression quantitative trait loci (eQTL) and histone marks—from human brains and cell cultures. We identified >100 SNPs with allelic effects on expression in a retinoid-responsive model system. Functional SNPs were enriched for binding sequences of retinoic acid-receptive transcription factors (TFs), with additional allelic differences unmasked by treatment with all-trans retinoic acid (ATRA). Finally, motifs overrepresented across functional SNPs corresponded to TFs highly specific to serotonergic neurons, suggesting an in vivo site of action. Our application of MPRAs to screen MDD-associated SNPs suggests a shared transcriptional-regulatory program across loci, a component of which is unmasked by retinoids.

Full author list & citation

Bernard Mulvey, Joseph D Dougherty. Transcriptional-regulatory convergence across functional MDD risk variants identified by massively parallel reporter assays. 2021-07-22. https://doi.org/10.1038/s41398-021-01493-6

Experiments 2

E45U0UUWC

Baseline plasmid MPRA of psychiatric risk SNPs in Neuro-2a cells

A pooled library of human hg19 SNP-centered allele tiles was transfected into mouse Neuro-2a cells without drug treatment. Each allele was represented by up to ten unique 10-bp barcodes, and reporter RNA activity was quantified relative to delivered plasmid DNA across six replicate wells.

Episomal Plasmid MPRAMousehg19
Explore data

Raw source data 26 files

Original supplemental and deposited inputs retained for this study. Download files individually or together as a ZIP; nested folders are preserved. Source reuse terms apply, and sequencing reads may be omitted.

Download all 26 files (ZIP)all_significant_SNPs_full_stats.txtATRA_allele_TF_enrichment.txtATRA_expression_calculations_BH_corrected.txtATRA_interaction_TF_enrichment.txtATRA_MPRA_analysis_results.rdsATRA_vehicle_LMM_input_matrix.txtauthors_analysis_readme.mdauthors_barcode_alignment.shauthors_MPRA4MPRA_source.Rfirst_MPRA_TF_enrichment.txtGSE167517_family.soft.gzGSE167517_reference_barcode_sequences.txt.gzGSE167517_unfiltered_barcode_counts.txt.gzGSE167518_family.soft.gzGSE167518_reference_barcode_sequences.txt.gzGSE167518_unfiltered_barcode_counts.txt.gzGSE167519_family.soft.gzlibrary_design_SNP_annotations.txtlibrary_reference_sheet_hg19_hg38.txtsupplemental_methods_and_legends.docxsupplemental_table_10.xlsxsupplemental_table_7.xlsxsupplemental_table_8.xlsxsupplemental_table_9.xlsxvehicle_expression_calculations_empirical_q_corrected.txtvehicle_MPRA_analysis_results.rds

Cite OpenMPRA

Cite the OpenMPRA database. Include your access date because the collection changes over time.

Please also cite the source studies when using their data.