School of Basic Medical Sciences, Qingdao University, Qingdao 266071, China.
Biomolecules. 2022 Dec 13;12(12):1863. doi: 10.3390/biom12121863.
Mitochondria are the energy production center in cells, which regulate aerobic metabolism, calcium balance, gene expression and cell death. Their homeostasis is crucial for cell viability. Although mitochondria own a nucleus-independent and self-replicating genome, most of the proteins, which fulfill mitochondrial functions and mitochondrial quality control, are encoded by the nuclear genome and are imported into mitochondria. Hence, the regulation of mitochondrial protein expression and translocation is considered essential for mitochondrial homeostasis. By means of high-throughput RNA sequencing and bioinformatic analysis, non-coding RNAs localized in mitochondria have been generally identified. They are either generated from the mitochondrial genome or the nuclear genome. The mitochondrial non-coding RNAs can directly interact with mitochondrial DNAs or transcripts to affect gene expression. They can also bind nuclear genome-encoded mitochondrial proteins to regulate their mitochondrial import, protein level and combination. Generally, mitochondrial non-coding RNAs act as regulators for mitochondrial processes including oxidative phosphorylation and metabolism. In this review, we would like to introduce the latest research progressions regarding mitochondrial non-coding RNAs and summarize their identification, biogenesis, translocation, molecular mechanism and function.
线粒体是细胞的能量产生中心,调节有氧代谢、钙平衡、基因表达和细胞死亡。它们的内稳态对细胞活力至关重要。尽管线粒体拥有独立于细胞核的自我复制基因组,但完成线粒体功能和线粒体质量控制的大多数蛋白质都是由核基因组编码的,并被导入线粒体。因此,线粒体蛋白表达和易位的调节被认为是线粒体内稳态所必需的。通过高通量 RNA 测序和生物信息学分析,已普遍鉴定出定位于线粒体的非编码 RNA。它们要么来自线粒体基因组,要么来自核基因组。线粒体非编码 RNA 可以直接与线粒体 DNA 或转录本相互作用,影响基因表达。它们还可以与核基因组编码的线粒体蛋白结合,调节其线粒体导入、蛋白水平和结合。一般来说,线粒体非编码 RNA 作为包括氧化磷酸化和代谢在内的线粒体过程的调节剂。在这篇综述中,我们将介绍线粒体非编码 RNA 的最新研究进展,并总结它们的鉴定、生物发生、易位、分子机制和功能。