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Article

Functional Genomics Analysis to Disentangle the Role of Genetic Variants in Major Depression

by
Judith Pérez-Granado
1,
Janet Piñero
1,2,
Alejandra Medina-Rivera
3,* and
Laura I. Furlong
1,2,*
1
Research Programme on Biomedical Informatics (GRIB), Hospital del Mar Medical Research Institute (IMIM), Department of Medicine and Life Sciences (MELIS), Universitat Pompeu Fabra (UPF), Dr. Aiguader 88, 08003 Barcelona, Spain
2
MedBioinformatics Solutions SL, Almogàvers 165, 08018 Barcelona, Spain
3
Laboratorio Internacional de Investigación sobre el Genoma Humano, Universidad Nacional Autónoma de México, Campus Juriquilla, Blvd Juriquilla 3001, Santiago de Querétaro 76230, Mexico
*
Authors to whom correspondence should be addressed.
Genes 2022, 13(7), 1259; https://doi.org/10.3390/genes13071259
Submission received: 17 June 2022 / Revised: 12 July 2022 / Accepted: 14 July 2022 / Published: 15 July 2022
(This article belongs to the Special Issue Advances in Genetics of Psychiatric Disorders)

Abstract

Understanding the molecular basis of major depression is critical for identifying new potential biomarkers and drug targets to alleviate its burden on society. Leveraging available GWAS data and functional genomic tools to assess regulatory variation could help explain the role of major depression-associated genetic variants in disease pathogenesis. We have conducted a fine-mapping analysis of genetic variants associated with major depression and applied a pipeline focused on gene expression regulation by using two complementary approaches: cis-eQTL colocalization analysis and alteration of transcription factor binding sites. The fine-mapping process uncovered putative causally associated variants whose proximal genes were linked with major depression pathophysiology. Four colocalizing genetic variants altered the expression of five genes, highlighting the role of SLC12A5 in neuronal chlorine homeostasis and MYRF in nervous system myelination and oligodendrocyte differentiation. The transcription factor binding analysis revealed the potential role of rs62259947 in modulating P4HTM expression by altering the YY1 binding site, altogether regulating hypoxia response. Overall, our pipeline could prioritize putative causal genetic variants in major depression. More importantly, it can be applied when only index genetic variants are available. Finally, the presented approach enabled the proposal of mechanistic hypotheses of these genetic variants and their role in disease pathogenesis.
Keywords: major depression; genetic variants; eQTL; colocalization analysis; transcription factors; genetic regulation major depression; genetic variants; eQTL; colocalization analysis; transcription factors; genetic regulation
Graphical Abstract

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MDPI and ACS Style

Pérez-Granado, J.; Piñero, J.; Medina-Rivera, A.; Furlong, L.I. Functional Genomics Analysis to Disentangle the Role of Genetic Variants in Major Depression. Genes 2022, 13, 1259. https://doi.org/10.3390/genes13071259

AMA Style

Pérez-Granado J, Piñero J, Medina-Rivera A, Furlong LI. Functional Genomics Analysis to Disentangle the Role of Genetic Variants in Major Depression. Genes. 2022; 13(7):1259. https://doi.org/10.3390/genes13071259

Chicago/Turabian Style

Pérez-Granado, Judith, Janet Piñero, Alejandra Medina-Rivera, and Laura I. Furlong. 2022. "Functional Genomics Analysis to Disentangle the Role of Genetic Variants in Major Depression" Genes 13, no. 7: 1259. https://doi.org/10.3390/genes13071259

APA Style

Pérez-Granado, J., Piñero, J., Medina-Rivera, A., & Furlong, L. I. (2022). Functional Genomics Analysis to Disentangle the Role of Genetic Variants in Major Depression. Genes, 13(7), 1259. https://doi.org/10.3390/genes13071259

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