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The BMAL1/HIF2A heterodimer modulates circadian variations of myocardial injury

GSE255307 Mus musculus Expression profiling by high throughput sequencing 6 samples Submitted 2024/03/20 Platform GPL21626
Summary
Cardiac injury following myocardial infarction exhibits a circadian pattern, yet the underlying mechanism remains unclear. To elucidate genes governing circadian variation of myocardial injury, we conducted transcriptomic profiling of left-ventricular tissues from mice or humans experiencing myocardial injury at different daytimes. Through comprehensive analyses, including transgenic mouse models and functional studies, we identified BMAL1 as a pivotal transcription factor modulating diurnal variation of myocardial injury. Remarkably, we discovered that BMAL1 regulates circadian-dependent cardiac injury by forming a transcriptionally active heterodimer with HIF2A. Substantiating this finding, we determined the cryo-EM structure of the BMAL1/HIF2F/DNA complex, revealing a previously unknown capacity for structural rearrangement within BMAL1. Furthermore, we confirmed amphiregulin (AREG) as a transcriptional target of the BMAL1/HIF2A heterodimer, critical for modulating circadian variation of myocardial injury. Finally, targeting the BMAL1/HIF2A-AREG pathway via timed AREG administration or enhancing circadian rhythm pharmacologically offered significant cardioprotection, implicating this pathway in treating ischemic heart disease.
Published in
The BMAL1/HIF2A heterodimer modulates circadian variations of myocardial injury
Ruan W, Li T, Lee J et al. · Research square 2024 · PMID 38464103 · doi:10.21203/rs.3.rs-3938716/v1
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Also filed as BioProject PRJNA1074411 and SRA study SRP488785. Searching any of these in the dataset finder brings you back here.

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