Maes Olivier C, An Jin, Sarojini Harshini, Wang Eugenia
Gheens Center on Aging & Department of Biochemistry and Molecular Biology, University of Louisville, Louisville, KY 40202, USA.
Mech Ageing Dev. 2008 Sep;129(9):534-41. doi: 10.1016/j.mad.2008.05.004. Epub 2008 May 14.
Small non-coding microRNAs (miRNAs) are involved in gene regulation in various cellular and developmental processes, including mechanisms of aging. Here, the mouse liver was used as a paradigm for the study of miRNAs implicated in the aging process in mammals. Expression profiling of 367 murine miRNAs (Sanger Version 8.2) was assessed in livers from 4 to 33 months old mice, and their predicted targets were compared with proteomic profiling data generated from the same animals. Gradual increases in the levels of miR-669c and miR-709 were observed from mid-age of 18-33 months, while miR-93 and miR-214 were significantly up-regulated only in extremely old liver. In contrast, we did not identify any miRNAs showing significant down-regulation with age. Interestingly, the up-regulated miRNAs' targets are associated with detoxification activity and regeneration capacity functions known to decline in old liver. In particular, three up-regulated miRNAs may contribute to the aging-related decline in oxidative defense by targeting various classes of glutathione S-transferases. Other proteins in decline in old liver and targeted by the up-regulated miRNAs are involved in mitochondrial functions or maintenance. Taken together, we identified the up-regulation of key miRNAs that may participate in the decline of regeneration and oxidative defense mechanisms in aging liver.
小型非编码微小RNA(miRNA)参与多种细胞和发育过程中的基因调控,包括衰老机制。在此,小鼠肝脏被用作研究哺乳动物衰老过程中所涉及miRNA的范例。对4至33月龄小鼠肝脏中367种鼠源miRNA(桑格版本8.2)的表达谱进行了评估,并将其预测靶标与同一批动物产生的蛋白质组学分析数据进行比较。从18至33月龄的中年期开始,观察到miR-669c和miR-709水平逐渐升高,而miR-93和miR-214仅在极老龄肝脏中显著上调。相比之下,未发现有任何miRNA随年龄增长而显著下调。有趣的是,上调的miRNA靶标与已知在老龄肝脏中下降的解毒活性和再生能力功能相关。特别是,三种上调的miRNA可能通过靶向各类谷胱甘肽S-转移酶,导致与衰老相关的氧化防御能力下降。老龄肝脏中下降且被上调的miRNA靶向的其他蛋白质则参与线粒体功能或维持。综上所述,我们鉴定出关键miRNA的上调可能参与了衰老肝脏中再生和氧化防御机制的衰退。