Family-based RNA sequencing in bipolar disorder points to novel candidate genes and dysregulated pathways

Genetic risk variants in bipolar disorder (BD) may lead to substantial gene expression changes. Transcriptomic studies employing multiplex BD families are extremely scarce. Here, we performed RNAseq on total mRNA of 31 lymphoblastoid cell lines from a cohort of eight multiplex BD families. We conducted differential gene expression and Weighted Gene Co-expression Network Analysis (WGCNA) for candidate genes and pathways identification. The results were validated by three methods: i) replication in an independent cohort using brain-derived RNAseq data from 71 BD and 252 control individuals; ii) MAGMA gene-based association using GWAS summary statistics data; iii) gene prioritization via Polygenic Priority Score (PoPS). DEGs and co-expression modules were examined for biological enrichments and validated through gene-set analysis. We found 60 significant DEGs after comparing 16 BD cases and 15 unaffected relatives, with the long non-coding RNA (lncRNA) LINC01237 being the most significant ( adjP = 4.1E-07). Five DEGs were prioritized, including ENSG00000279277 , a lncRNA mapping in a BD GWAS locus. Enrichment analyses linked DEGs to nervous system and gated channel activities. WGCNA identified five BD-associated expression modules, with the most significant module related to ion transmembrane transport, corpus callosum hypoplasia, and a protein network related to solute carriers. This study suggests that lncRNAs may play a role in BD pathophysiology. Additionally, alterations in ion homeostasis, driven by the dysregulation of gated channels, appear a plausible impaired process in BD.

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Journal
Translational Psychiatry
Published
2026-09-28
DOI
https://doi.org/10.1038/s41398-026-04473-w
Primary Topic
Genetic Associations and Epidemiology
Type
article
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article

Family-based RNA sequencing in bipolar disorder points to novel candidate genes and dysregulated pathways

Diego Romero‐Miguel, Tomas Kavanagh, Peter R. Schofield, José J. Lucas et al.
Translational Psychiatry
Genetic Associations and Epidemiology
article

Family-based RNA sequencing in bipolar disorder points to novel candidate genes and dysregulated pathways

Diego Romero‐Miguel, Tomas Kavanagh, Peter R. Schofield, José J. Lucas, Janice M. Fullerton, Claudio Toma, Antony A. Cooper, Inés García-Ortiz, Philip Bowden Mitchell, Miriam Lucas-Santamaría, Lee L. Marshall
article en

Abstract

Genetic risk variants in bipolar disorder (BD) may lead to substantial gene expression changes. Transcriptomic studies employing multiplex BD families are extremely scarce. Here, we performed RNAseq on total mRNA of 31 lymphoblastoid cell lines from a cohort of eight multiplex BD families. We conducted differential gene expression and Weighted Gene Co-expression Network Analysis (WGCNA) for candidate genes and pathways identification. The results were validated by three methods: i) replication in an independent cohort using brain-derived RNAseq data from 71 BD and 252 control individuals; ii) MAGMA gene-based association using GWAS summary statistics data; iii) gene prioritization via Polygenic Priority Score (PoPS). DEGs and co-expression modules were examined for biological enrichments and validated through gene-set analysis. We found 60 significant DEGs after comparing 16 BD cases and 15 unaffected relatives, with the long non-coding RNA (lncRNA) LINC01237 being the most significant ( adjP = 4.1E-07). Five DEGs were prioritized, including ENSG00000279277 , a lncRNA mapping in a BD GWAS locus. Enrichment analyses linked DEGs to nervous system and gated channel activities. WGCNA identified five BD-associated expression modules, with the most significant module related to ion transmembrane transport, corpus callosum hypoplasia, and a protein network related to solute carriers. This study suggests that lncRNAs may play a role in BD pathophysiology. Additionally, alterations in ion homeostasis, driven by the dysregulation of gated channels, appear a plausible impaired process in BD.

Translational Psychiatry
The University of Sydney (AU), Garvan Institute of Medical Research (AU), Instituto de Salud Carlos III (ES), UNSW Sydney (AU), Biomedical Research Networking Center on Neurodegenerative Diseases (ES), St Vincent's Clinic (AU), Centro de Biología Molecular Severo Ochoa (ES), Swinburne University of Technology (AU), Neuroscience Research Australia (AU)
Good health and well-being
Openalex Percentile: Top 12%
Genetic Associations and Epidemiology
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