Monocyte OR6A2 Promotes Cardiac Ischemia‑Reperfusion Injury via NR4A1/p53‑Driven Mitochondrial Dyshomeostasis and IL‑1α–Mediated Endothelial Adhesion
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ABSTRACT: Myocardial ischemia-reperfusion (IR) injury is exacerbated by inflammatory monocytes. Here, we report that the olfactory receptor OR6A2, activated by octanal, promotes mitochondrial fission while suppressing mitophagy via the NR4A1/p53 axis in monocytes under hypoxia/reoxygenation stress. This uncoupling generates sustained mitochondrial reactive oxygen species (mtROS), licensing surface pro-IL-1α expression, which engages endothelial IL-1R1 to drive monocyte-endothelial adhesion, microvascular injury, and cardiac dysfunction. Single-cell transcriptomics of IR hearts revealed that Or6a2 deletion enriched autophagy/p53 pathways in monocytes and suppressed monocyte-endothelial communication. Myeloid-restricted Or6a2 silencing or systemic IL-1R1 neutralization preserved microvascular integrity and protected against left ventricular dysfunction in vivo. Our findings define the OR6A2/NR4A1/p53/pro-IL-1α/IL-1R1 axis as a therapeutically tractable pathway in myocardial IR injury.
ORGANISM(S): Mus musculus
PROVIDER: GSE345586 | GEO | 2026/09/04
REPOSITORIES: GEO
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