SynthesisThe British journal of dermatology2025
Genomic loci and molecular genetic mechanisms for hidradenitis suppurativa.
Synthesis in The British journal of dermatology, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 8 papers.
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Who cites it
8 citing papers in PubMed.
- Intrinsic Dysregulation and Environmental Modifiers in Hidradenitis Suppurativa: Toward an Integrated Pathophysiologic Model.Journal of clinical medicine · 2026Review
- Exposome Versus Genome in HS: How Do We Currently Explain Where Disease Arises from?Journal of clinical medicine · 2026Review
- Integrated Proteogenomics and Single-Cell Transcriptomics Prioritize Putative Protective Plasma Proteins for Hidradenitis Suppurativa.Experimental dermatology · 2026Article
- Reducing Unmet Needs in Hidradenitis Suppurativa by Including the Hair Follicle Among an Arsenal of Targets.Experimental dermatology · 2026Review
- The Genetics of Hidradenitis Suppurativa.Clinical, cosmetic and investigational dermatology · 2026Review
- A Genome-Wide Association Study of Hidradenitis Suppurativa from the VA's Million Veteran Program.Dermatology (Basel, Switzerland) · 2026Article
- Uncovering the genetic architecture of hidradenitis suppurativa.The British journal of dermatology · 2025Article
- Trained Immunity and Its Potential Implications in the Etiopathogenesis of Hidradenitis Suppurativa: A New Paradigm in Chronic Inflammation?Experimental dermatology · 2025Review
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Authors and funding
28 authors.
Funding
Abstract
backgroundHidradenitis suppurativa (HS) is a common, chronic and debilitating inflammatory disease that most commonly affects intertriginous skin. Despite its high heritability, the genetic underpinnings of HS remain poorly understood.
objectivesTo identify genetic signals associated with HS, determine genetic relationships with other diseases and investigate potential molecular genetic mechanisms.
methodsWe performed a genome-wide association meta-analysis of six studies, totalling 4540 patients with HS and > 1 million control participants, and identified genetic correlations with other common diseases. We integrated the HS data with expression quantitative trait loci from 10 trait-relevant tissues, epigenomic and transcriptomic data from human scalp, differential expression data from HS lesions vs. adjacent skin and mesenchymal Hi-C chromatin looping data. To identify functional noncoding variants, we performed transcriptional reporter assays for signals near KLF5 and SOX9.
resultsWe identified 11 significant HS signals across 7 loci: 4 corresponded to previously reported associations, 4 represented novel signals within known loci and 3 were signals in newly implicated loci. We identified significant genetic correlations between HS and other inflammatory conditions, particularly inflammatory bowel disease, rheumatoid arthritis, type 2 diabetes mellitus and asthma. We prioritized candidate genes for the 11 signals. The risk allele at KLF5 exhibited 10-fold greater transcriptional activity than the nonrisk allele, while risk alleles at SOX9 showed significantly reduced transcriptional activity.
conclusionsOur results provide insights into potential genetic mechanisms underlying HS and suggest potential therapeutic targets for this challenging condition.
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