MiR-203 improves cardiac dysfunction by targeting PARP1-NAD<sup>+</sup> axis in aging murine.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 38098220.
- Also identified by DOI 10.1111/acel.14063 and PMC identifier 10928583.
- Licence recorded as CC BY.
- The licence permits redistribution, so the abstract is shown in full and the full text is available from the publisher.
Abstract
Heart aging is a prevalent cause of cardiovascular diseases among the elderly. NAD<sup>+</sup> depletion is a hallmark feature of aging heart, however, the molecular mechanisms that affect NAD<sup>+</sup> depletion remain unclear. In this study, we identified microRNA-203 (miR-203) as a senescence-associated microRNA that regulates NAD<sup>+</sup> homeostasis. We found that the blood miR-203 level negatively correlated with human age and its expression significantly decreased in the hearts of aged mice and senescent cardiomyocytes. Transgenic mice with overexpressed miR-203 (TgN (miR-203)) showed resistance to aging-induced cardiac diastolic dysfunction, cardiac remodeling, and myocardial senescence. At the cellular level, overexpression of miR-203 significantly prevented D-gal-induced cardiomyocyte senescence and mitochondrial damage, while miR-203 knockdown aggravated these effects. Mechanistically, miR-203 inhibited PARP1 expression by targeting its 3'UTR, which helped to reduce NAD<sup>+</sup> depletion and improve mitochondrial function and cell senescence. Overall, our study first identified miR-203 as a genetic tool for anti-heart aging by restoring NAD<sup>+</sup> function in cardiomyocytes.
Medical subject headings
- MicroRNAs
- Heart Diseases