INSERM U781 Hôpital Necker-Enfants Malades, Université Paris Descartes-Sorbonne Cité, Institut Imagine, 75015, Paris, France.
Free Radic Biol Med. 2013 Sep;64:12-9. doi: 10.1016/j.freeradbiomed.2013.06.013. Epub 2013 Jun 18.
Mitochondria play a crucial role in energetic metabolism, signaling pathways, and overall cell viability. Mitochondrial dysfunctions are known to cause a wide range of human diseases that affect tissues especially those with high energetic requirements, such as skeletal muscle, heart, kidney, and central nervous system, while being involved in cancer, aging, and metabolic processes. At the same time, the microRNA (miRNA) gene family has been demonstrated to be involved in most cellular processes through modulation of proteins critical for cellular homeostasis. Given the broad scope of reactivity profiles and the ability of miRNAs to modify numerous proteomic and genomic processes, new emphasis is being placed on the influence of miRNAs at the mitochondrial level. Recently, the localization of miRNAs in mitochondria was characterized in different species. This raises the idea that those miRNAs, noted "mitomiRs," could act as "vectors" that sense and respond dynamically to the changing microenvironment of mitochondria at the cellular level. Reciprocally, we present the involvement of mitochondria in small RNA biogenesis. With the aim of deciphering the significance of this localization, we discuss the putative mechanism of import of miRNAs at mitochondria, their origin, and their hypothetical roles within the organelle.
线粒体在能量代谢、信号通路和细胞活力方面起着至关重要的作用。已知线粒体功能障碍会导致广泛的人类疾病,这些疾病会影响组织,特别是那些需要高能量的组织,如骨骼肌、心脏、肾脏和中枢神经系统,同时也与癌症、衰老和代谢过程有关。同时,微 RNA (miRNA) 基因家族已被证明通过调节细胞内稳态的关键蛋白参与大多数细胞过程。鉴于反应性谱的广泛范围以及 miRNA 修饰众多蛋白质组学和基因组学过程的能力,人们越来越重视 miRNA 在线粒体水平的影响。最近,在不同物种中鉴定了 miRNA 在线粒体中的定位。这就提出了这样一种观点,即那些被称为“mitomiRs”的 miRNA 可以作为“载体”,在细胞水平上动态感知和响应线粒体微环境的变化。反过来,我们介绍了线粒体在小 RNA 生物发生中的参与。为了解释这种定位的意义,我们讨论了 miRNA 在进入线粒体的可能机制、它们的起源以及它们在细胞器中的假设作用。