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Journal Article

Whole genome DNA methylation profiles define Meniere’s disease subclusters

Vibha Patil; Pablo Cruz-Granados; Francisca E. Cara; Juan Carlos Amor-Dorado; Ismael Aran; Andres Soto-Varela; Patricia Perez-Carpena; Jose Antonio Lopez-Escamez
Journal of Molecular Medicine · Vol. 103, Issue 10 · pp. 1191-1204 · 2025

Abstract

Meniere disease (MD) is a cochleo-vestibular syndrome defined by episodes of vertigo associated with tinnitus and sensorineural hearing loss. While MD immune response has been linked to autoinflammation and type 2 cytokines, other molecular mechanisms such as DNA methylation have an emerging yet underexplored role in MD pathophysiology.To understand the role of DNA methylation in MD, we performed whole-genome bisulphite sequencing in MD patients ( n = 40) and controls ( n = 13) and used differentially methylated cytosines (DMCs) to define clusters, cell types, and biochemical pathways in MD. We found three MD subclusters: Cluster 1 (40% of patients) and Cluster 3 (25%) showed DMC profiles against controls, while Cluster 2 (35%) did not. Significant DMCs from Cluster 1 and Cluster 3 versus Control analysis were annotated to 3033 and 59 unique genes, respectively. Each cluster showed a different gene enrichment; however, the KDMB4 gene had significant upregulated DNA accessibility in a complementary ATAC-seq dataset and showed significant DMCs in both Cluster 1 and Cluster 3. DNA methylation patterns in MD reveal three clusters which are reflective of an underlying difference in pathways related to cytokine stimulus, immunity T-cell, and NK-cell pathways. KDMB4 emerges as a critical MD gene which deserves further research. Key messages We asked if DNA methylation can help understand Meniere’s Disease (MD) pathophysiology. DNA methylomes group MD patients into three distinct sub-clusters. DNA methylation in MD reflect difference in pathways related to neurons and cytokine stimulus. The data shows KDMB4 emerging as a key gene that requires further multi-modal investigation.

Bibliographic Information

JournalJournal of Molecular Medicine
PublisherSpringer
Publication Date2025-10-01
Publication Year2025
Volume103
Issue10
Pages1191-1204
Document TypeJournal Article
Print ISSN0946-2716
eISSN1432-1440
DOI10.1007/s00109-025-02581-6

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NARA Access Coverage1922-01-01~Current
Journal Homepagehttps://www.springer.com/journal/109
Publisher PageOpen Publisher Page
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