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线粒体相关的微小RNA及其在细胞衰老中的作用。

Mitochondrial-related microRNAs and their roles in cellular senescence.

作者信息

Luo Ling, An Xingna, Xiao Yinghui, Sun Xiguang, Li Sijie, Wang Yingzhao, Sun Weixia, Yu Dehai

机构信息

Public Research Platform, The First Hospital of Jilin University, Changchun, Jilin, China.

Department of Hand Surgery, The First Hospital of Jilin University, Changchun, Jilin, China.

出版信息

Front Physiol. 2024 Jan 5;14:1279548. doi: 10.3389/fphys.2023.1279548. eCollection 2023.

Abstract

Aging is a natural aspect of mammalian life. Although cellular mortality is inevitable, various diseases can hasten the aging process, resulting in abnormal or premature senescence. As cells age, they experience distinctive morphological and biochemical shifts, compromising their functions. Research has illuminated that cellular senescence coincides with significant alterations in the microRNA (miRNA) expression profile. Notably, a subset of aging-associated miRNAs, originally encoded by nuclear DNA, relocate to mitochondria, manifesting a mitochondria-specific presence. Additionally, mitochondria themselves house miRNAs encoded by mitochondrial DNA (mtDNA). These mitochondria-residing miRNAs, collectively referred to as mitochondrial miRNAs (mitomiRs), have been shown to influence mtDNA transcription and protein synthesis, thereby impacting mitochondrial functionality and cellular behavior. Recent studies suggest that mitomiRs serve as critical sensors for cellular senescence, exerting control over mitochondrial homeostasis and influencing metabolic reprogramming, redox equilibrium, apoptosis, mitophagy, and calcium homeostasis-all processes intimately connected to senescence. This review synthesizes current findings on mitomiRs, their mitochondrial targets, and functions, while also exploring their involvement in cellular aging. Our goal is to shed light on the potential molecular mechanisms by which mitomiRs contribute to the aging process.

摘要

衰老乃哺乳动物生命的自然现象。尽管细胞死亡无可避免,但多种疾病会加速衰老进程,导致异常或过早衰老。随着细胞衰老,它们会经历独特的形态和生化变化,从而损害其功能。研究表明,细胞衰老与微小RNA(miRNA)表达谱的显著改变同时发生。值得注意的是,一部分最初由核DNA编码的与衰老相关的miRNA会转移到线粒体,呈现出线粒体特异性存在。此外,线粒体自身也含有由线粒体DNA(mtDNA)编码的miRNA。这些驻留在线粒体中的miRNA统称为线粒体miRNA(mitomiRs),已被证明会影响mtDNA转录和蛋白质合成,进而影响线粒体功能和细胞行为。最近的研究表明,mitomiRs作为细胞衰老的关键传感器,对线粒体稳态发挥控制作用,并影响代谢重编程、氧化还原平衡、细胞凋亡、线粒体自噬和钙稳态——所有这些过程都与衰老密切相关。本综述综合了关于mitomiRs、其线粒体靶点及功能的当前研究结果,同时探讨了它们在细胞衰老中的作用。我们的目标是阐明mitomiRs促成衰老过程的潜在分子机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f461/10796628/eb6e0d43adc7/fphys-14-1279548-g001.jpg

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