Sherazi Syed Aoun Mehmood, Abbasi Asim, Jamil Abdullah, Uzair Mohammad, Ikram Ayesha, Qamar Shanzay, Olamide Adediji Ayomide, Arshad Muhammad, Fried Peter J, Ljubisavljevic Milos, Wang Ran, Bashir Shahid
Department of Biological Sciences, Faculty of Basic & Applied Sciences, International Islamic University, Islamabad, Pakistan.
Department of Biological Sciences, University of Arkansas, Fayetteville, AR, USA.
Neural Regen Res. 2023 May;18(5):959-968. doi: 10.4103/1673-5374.355751.
Aging is linked to the deterioration of many physical and cognitive abilities and is the leading risk factor for Alzheimer's disease. The growing aging population is a significant healthcare problem globally that researchers must investigate to better understand the underlying aging processes. Advances in microarrays and sequencing techniques have resulted in deeper analyses of diverse essential genomes (e.g., mouse, human, and rat) and their corresponding cell types, their organ-specific transcriptomes, and the tissue involved in aging. Traditional gene controllers such as DNA- and RNA-binding proteins significantly influence such programs, causing the need to sort out long non-coding RNAs, a new class of powerful gene regulatory elements. However, their functional significance in the aging process and senescence has yet to be investigated and identified. Several recent researchers have associated the initiation and development of senescence and aging in mammals with several well-reported and novel long non-coding RNAs. In this review article, we identified and analyzed the evolving functions of long non-coding RNAs in cellular processes, including cellular senescence, aging, and age-related pathogenesis, which are the major hallmarks of long non-coding RNAs in aging.
衰老与许多身体和认知能力的衰退有关,是阿尔茨海默病的主要风险因素。全球老龄化人口的增长是一个重大的医疗保健问题,研究人员必须对此进行调查,以更好地了解潜在的衰老过程。微阵列和测序技术的进步使得对多种重要基因组(如小鼠、人类和大鼠)及其相应细胞类型、器官特异性转录组以及与衰老相关的组织进行更深入的分析成为可能。传统的基因调控因子,如DNA和RNA结合蛋白,对这些程序有显著影响,这就需要对一类新的强大基因调控元件——长链非编码RNA进行梳理。然而,它们在衰老过程和细胞衰老中的功能意义尚未得到研究和确定。最近的一些研究将哺乳动物细胞衰老和衰老的起始与发展与一些已被充分报道的以及新发现的长链非编码RNA联系起来。在这篇综述文章中,我们确定并分析了长链非编码RNA在细胞过程中的不断演变的功能,包括细胞衰老、衰老以及与年龄相关的发病机制,这些都是长链非编码RNA在衰老过程中的主要特征。