Lettieri-Barbato Daniele, Aquilano Katia, Punziano Carolina, Minopoli Giuseppina, Faraonio Raffaella
Department of Biology, University of Rome Tor Vergata, 00133 Rome, Italy.
IRCCS Santa Lucia, 00179 Rome, Italy.
Antioxidants (Basel). 2022 Feb 28;11(3):480. doi: 10.3390/antiox11030480.
Cell senescence is critical in diverse aspects of organism life. It is involved in tissue development and homeostasis, as well as in tumor suppression. Consequently, it is tightly integrated with basic physiological processes during life. On the other hand, senescence is gradually being considered as a major contributor of organismal aging and age-related diseases. Increased oxidative stress is one of the main risk factors for cellular damages, and thus a driver of senescence. In fact, there is an intimate link between cell senescence and response to different types of cellular stress. Oxidative stress occurs when the production of reactive oxygen species/reactive nitrogen species (ROS/RNS) is not adequately detoxified by the antioxidant defense systems. Non-coding RNAs are endogenous transcripts that govern gene regulatory networks, thus impacting both physiological and pathological events. Among these molecules, microRNAs, long non-coding RNAs, and more recently circular RNAs are considered crucial mediators of almost all cellular processes, including those implicated in oxidative stress responses. Here, we will describe recent data on the link between ROS/RNS-induced senescence and the current knowledge on the role of non-coding RNAs in the senescence program.
细胞衰老在生物体生命的各个方面都至关重要。它参与组织发育和稳态维持,以及肿瘤抑制。因此,它在生命过程中与基本生理过程紧密结合。另一方面,衰老正逐渐被视为生物体衰老和与年龄相关疾病的主要促成因素。氧化应激增加是细胞损伤的主要风险因素之一,因此也是衰老的驱动因素。事实上,细胞衰老与对不同类型细胞应激的反应之间存在密切联系。当抗氧化防御系统不能充分清除活性氧/活性氮(ROS/RNS)的产生时,就会发生氧化应激。非编码RNA是调控基因调控网络的内源性转录本,从而影响生理和病理事件。在这些分子中,微小RNA、长链非编码RNA以及最近发现的环状RNA被认为是几乎所有细胞过程的关键调节因子,包括那些与氧化应激反应有关的过程。在这里,我们将描述关于ROS/RNS诱导的衰老与非编码RNA在衰老程序中作用的当前知识之间联系的最新数据。