Neuroscience Center; University of North Carolina, Chapel Hill, NC, USA.
Neurobiology Curriculum; University of North Carolina, Chapel Hill, NC, USA.
Commun Biol. 2024 Aug 27;7(1):1055. doi: 10.1038/s42003-024-06735-z.
Aging is a consequence of complex molecular changes, but whether a single microRNA (miRNA) can drive aging remains unclear. A miRNA known to be upregulated during both normal and premature aging is miR-29. We find miR-29 to also be among the top miRNAs predicted to drive aging-related gene expression changes. We show that partial loss of miR-29 extends the lifespan of Zmpste24 mice, an established model of progeria, indicating that miR-29 is functionally important in this accelerated aging model. To examine whether miR-29 alone is sufficient to promote aging-related phenotypes, we generated mice in which miR-29 can be conditionally overexpressed (miR-29TG). miR-29 overexpression is sufficient to drive many aging-related phenotypes and led to early lethality. Transcriptomic analysis of both young miR-29TG and old WT mice reveals shared downregulation of genes associated with extracellular matrix organization and fatty acid metabolism, and shared upregulation of genes in pathways linked to inflammation. These results highlight the functional importance of miR-29 in controlling a gene expression program that drives aging-related phenotypes.
衰老是复杂分子变化的结果,但单一 microRNA(miRNA)是否能驱动衰老仍不清楚。已知在正常和过早衰老过程中上调的 miRNA 是 miR-29。我们发现 miR-29 也是预测能驱动与衰老相关的基因表达变化的顶级 miRNA 之一。我们表明,miR-29 的部分缺失延长了 Zmpste24 小鼠的寿命,Zmpste24 小鼠是一种公认的早衰模型,这表明 miR-29 在这个加速衰老模型中具有功能重要性。为了研究 miR-29 本身是否足以促进与衰老相关的表型,我们生成了可以条件性过表达 miR-29 的小鼠(miR-29TG)。miR-29 的过表达足以驱动许多与衰老相关的表型,并导致早期死亡。对年轻的 miR-29TG 和老年 WT 小鼠的转录组分析揭示了与细胞外基质组织和脂肪酸代谢相关的基因的共同下调,以及与炎症相关途径的基因的共同上调。这些结果突出了 miR-29 在控制驱动与衰老相关的表型的基因表达程序中的功能重要性。