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环状RNA作为生命活动的多面分子调节因子和衰老的潜在生物标志物。

Circular RNAs as multifaceted molecular regulators of vital activity and potential biomarkers of aging.

作者信息

Zharova Anna-Maria D, Perenkov Alexey D, Vedunova Maria V

机构信息

Institute of Biology and Biomedicine, National Research Lobachevsky State University of Nizhny Novgorod, Nizhny Novgorod, Russia.

Biophotonics Center, Prokhorov General Physics Institute of the Russian Academy of Sciences, Moscow, Russia.

出版信息

Epigenomics. 2024 Dec-Dec;16(23-24):1465-1475. doi: 10.1080/17501911.2024.2430165. Epub 2024 Nov 26.

Abstract

Aging presents a significant challenge to health and social care systems due to the increasing proportion of the elderly population. The identification of reliable biomarkers to assess the progression of aging remains an unresolved question. Circular RNAs (circRNAs) are single-stranded covalently closed RNAs. They have been found to regulate various biological processes. CircRNAs are present in human biological fluids, are relatively stable, and accumulate with age, making them promising as biomarkers of aging. Current information on the expression of circRNAs in aging was analyzed using scientific databases. In this review, we have identified key stages in the study of circRNAs during aging and summarized the current understanding of their biogenesis. By focusing on the role of circRNAs in processes that contribute to aging - such as genomic stability, metabolism, cell death, and signaling pathways - we hypothesize that circRNAs may drive the aging process through their age-related accumulation and resultant deregulation. Examples of age-related differential expression of circRNAs in various species, including humans, are provided. This review highlights the importance of finding novel epigenetic biomarkers of aging, beyond the already identified molecules (circFOXO3, circRNA100783, circPVT1), and highlights circRNAs as a potential therapeutic target for the treatment of age-associated diseases.

摘要

由于老年人口比例不断增加,老龄化给卫生和社会护理系统带来了重大挑战。确定可靠的生物标志物以评估衰老进程仍然是一个未解决的问题。环状RNA(circRNA)是单链共价闭合RNA。已发现它们可调节各种生物过程。CircRNA存在于人体生物体液中,相对稳定,并随年龄积累,使其有望成为衰老的生物标志物。利用科学数据库分析了目前关于circRNA在衰老过程中表达的信息。在这篇综述中,我们确定了衰老过程中circRNA研究的关键阶段,并总结了目前对其生物合成的理解。通过关注circRNA在导致衰老的过程中的作用,如基因组稳定性、代谢、细胞死亡和信号通路,我们假设circRNA可能通过其与年龄相关的积累和由此导致的失调来驱动衰老过程。提供了包括人类在内的各种物种中circRNA与年龄相关差异表达的例子。这篇综述强调了寻找除已确定的分子(circFOXO3、circRNA100783、circPVT1)之外的新型衰老表观遗传生物标志物的重要性,并强调circRNA作为治疗与年龄相关疾病的潜在治疗靶点。

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