Health Science Interdisciplinary Center, Sant'Anna School of Advanced Studies, 56124 Pisa, Italy.
CNR Institute of Clinical Physiology, 56124 Pisa, Italy.
Int J Mol Sci. 2024 Jun 16;25(12):6620. doi: 10.3390/ijms25126620.
MicroRNAs (miRNAs) are small non-coding RNAs that play an important role by controlling gene expression in the cytoplasm in almost all biological pathways. Recently, scientists discovered that miRNAs are also found within mitochondria, the energy-producing organelles of cells. These mitochondrial miRNAs, known as mitomiRs, can originate from the nuclear or mitochondrial genome, and they are pivotal in controlling mitochondrial function and metabolism. New insights indicate that mitomiRs may influence key aspects of the onset and progression of cardiovascular disease, especially concerning mitochondrial function and metabolic regulation. While the importance of mitochondria in cardiovascular health and disease is well-established, our understanding of mitomiRs' specific functions in crucial biological pathways, including energy metabolism, oxidative stress, inflammation, and cell death, is still in its early stages. Through this review, we aimed to delve into the mechanisms of mitomiR generation and their impacts on mitochondrial metabolic pathways within the context of vascular cell aging and atherosclerotic cardiovascular disease. The relatively unexplored field of mitomiR biology holds promise for future research investigations, with the potential to yield novel diagnostic tools and therapeutic interventions.
微小 RNA(miRNAs)是一类小的非编码 RNA,通过在细胞质中调控基因表达,在几乎所有的生物学途径中发挥重要作用。最近,科学家们发现 miRNAs 也存在于线粒体中,线粒体是细胞的能量产生细胞器。这些存在于线粒体中的 miRNAs 被称为 mitomiRs,可以来源于核基因组或线粒体基因组,它们在调控线粒体功能和代谢中起着关键作用。新的研究结果表明,mitomiRs 可能影响心血管疾病发病和进展的关键方面,特别是与线粒体功能和代谢调节有关。虽然线粒体在心血管健康和疾病中的重要性已经得到充分证实,但我们对 mitomiRs 在包括能量代谢、氧化应激、炎症和细胞死亡等关键生物学途径中的特定功能的理解仍处于早期阶段。通过本次综述,我们旨在深入探讨 mitomiR 生成的机制及其在血管细胞衰老和动脉粥样硬化性心血管疾病背景下对线粒体代谢途径的影响。mitomiR 生物学这一相对未被探索的领域具有很大的研究潜力,有可能为未来的诊断工具和治疗干预措施提供新的研究方向。