PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
January 24, 2026Journal of the American Heart Association0 citationsOpen Access

CAV1 —A Susceptibility Gene for Atrial Fibrillation: The Impact of Coding and Noncoding Variants

View Full Paper
KRKristin RädeckeDRD. RheinertALAnnette Löwen

Key Result

CAV1 was identified as an atrial fibrillation susceptibility gene, with 4 of 5 noncoding variants showing significant associations with AF and PR interval.

Key Points

  • This research aims to identify the role of CAV1 genetic variants in the susceptibility to atrial fibrillation.
  • Examined CAV1 expression in a porcine model of induced AF alongside SHOX2.
  • Screened 282 patients with early-onset AF for CAV1 genetic variants.
  • Functionally investigated a coding variant using zebrafish models.
  • Conducted comprehensive analysis of noncoding variants and their effects on transcription factor activity.
  • CAV1 and SHOX2 were significantly downregulated in the porcine AF model's right atrium.
  • Overexpression of the coding variant in zebrafish increased heart rate and caused fibrillatory waves.
  • Four out of five noncoding variants correlated with AF and PR interval in previous datasets, one achieving genome-wide significance.
  • Three noncoding variants notably altered transcription factor activity in luciferase assays.

Structured PICO

Does CAV1 genetic variation increase susceptibility to atrial fibrillation?

P
Population
282 German individuals with early-onset atrial fibrillation (onset <60 years), 74.1% male. Additionally, a porcine model of induced AF (n=12) and a zebrafish model.
I
Intervention
Screening for CAV1 variants in humans; cardiac-specific overexpression of CAV1 coding variant (c.54C>G) in zebrafish; rapid atrial burst stimulation in pigs.
C
Comparator
Healthy controls (DZHKomics/gnomAD databases for humans, sinus rhythm for pigs, WT CAV1 for zebrafish).
O
Outcome
Identification of CAV1 variants, CAV1 expression levels, and electrophysiological effects (heart rate, PR interval, fibrillatory waves) in zebrafish.surrogate

CAV1 is identified as an atrial fibrillation susceptibility gene, with both coding and noncoding variants contributing to disease mechanisms through altered expression and electrophysiological changes.

Abstract

Background Atrial fibrillation (AF) is the most common sustained cardiac arrhythmia with a strong genetic predisposition. Genome‐wide association studies have highlighted CAV1 (caveolin 1), a caveolar protein involved in various signaling pathways, as a candidate for cardiac conduction disorders. Methods We explored the role of CAV1 in AF in various models to dissect possible disease mechanisms. First, CAV1 expression was examined together with the AF risk gene SHOX2 in a porcine model of induced AF. Then we screened a cohort of 282 patients with early‐onset AF to identify genetic variants within CAV1 and found 1 coding and 5 noncoding variants. The coding variant was functionally investigated in zebrafish, and a comprehensive analysis panel was applied to investigate the noncoding variants. Results In the porcine AF model, CAV1 and SHOX2 were significantly downregulated in the right atrium and atrioventricular node. Cardiac‐specific overexpression of the coding variant in zebrafish increased heart rate and caused fibrillatory waves and loss of the PR interval, supporting a pathogenic effect. Four of the 5 novel identified noncoding variants showed an association with AF and PR interval in published data sets, including 1 with genome‐wide significance. The noncoding variants localized to binding sites of transcription factors EOMES, RFX5, TEAD4 and MAX. Luciferase reporter gene assays demonstrated that 3 variants significantly altered the ability of those transcription factors to activate reporter gene expression. Conclusions This work underscores CAV1 as an AF susceptibility gene and highlights the critical role of coding and noncoding variants in AF disease mechanisms.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Rädecke et al. (2026) studied this question. CAV1 was identified as an atrial fibrillation susceptibility gene, with 4 of 5 noncoding variants showing significant associations with AF and PR interval.

synapsesocial.com/papers/69746149bb9d90c67120b1dehttps://doi.org/10.1161/jaha.125.041586
Ask AI
Helpful
Bookmark
Share
View Full Paper