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秀丽隐杆线虫衰老过程中的 microRNAs:稳健性的分子保险?

MicroRNAs in C. elegans Aging: Molecular Insurance for Robustness?

机构信息

Department of Molecular Biology & Biochemistry, Rutgers, The State University of New Jersey, A232 Nelson Biological Laboratories, 604 Allison Road, Piscataway, New Jersey 08854, USA.

出版信息

Curr Genomics. 2009 May;10(3):144-53. doi: 10.2174/138920209788185243.

Abstract

The last decade has witnessed a revolution in our appreciation of the extensive regulatory gene expression networks modulated by small untranslated RNAs. microRNAs (miRNAs), ~22 nt RNAs that bind imperfectly to partially homologous sites on target mRNAs to regulate transcript expression, are now known to influence a broad range of biological processes germane to development, homeostatic regulation and disease. It has been proposed that miRNAs ensure biological robustness, and aging has been described as a progressive loss of system and cellular robustness, but relatively little work to date has addressed roles of miRNAs in longevity and healthspan (the period of youthful vigor and disease resistance that precedes debilitating decline in basic functions). The C. elegans model is highly suitable for testing hypotheses regarding miRNA impact on aging biology: the lifespan of the animal is approximately three weeks, there exist a wealth of genetic mutations that alter lifespan through characterized pathways, biomarkers that report strong healthspan have been defined, and many miRNA genes have been identified, expression-profiled, and knocked out. 50/114 C. elegans miRNAs change in abundance during adult life, suggesting significant potential to modulate healthspan and lifespan. Indeed, miRNA lin-4 has been elegantly shown to influence lifespan and healthspan via its lin-14 mRNA target and the insulin signaling pathway. 27 of the C. elegans age-regulated miRNAs have sequence similarity with both fly and human miRNAs. We review current understanding of a field poised to reveal major insights into potentially conserved miRNA-regulated networks that modulate aging.

摘要

过去十年见证了我们对广泛的调控基因表达网络的认识发生了革命性的变化,这些网络由小非编码 RNA 调控。microRNAs(miRNAs)是大约 22 个核苷酸的 RNA,它们与靶 mRNA 上不完全同源的位点结合,从而调节转录表达,现在已知它们影响到一系列与发育、体内平衡调节和疾病相关的广泛生物学过程。有人提出,miRNAs 确保了生物的稳健性,衰老被描述为系统和细胞稳健性的逐渐丧失,但迄今为止,相对较少的工作涉及 miRNA 在长寿和健康跨度(即年轻活力和对削弱基本功能的疾病抵抗力之前的时期)中的作用。秀丽隐杆线虫模型非常适合测试关于 miRNA 对衰老生物学影响的假设:该动物的寿命约为三周,存在大量通过特征化途径改变寿命的遗传突变,已经定义了报告健康跨度的生物标志物,并且已经鉴定、表达谱分析和敲除了许多 miRNA 基因。50/114 种秀丽隐杆线虫 miRNA 在成年期的丰度发生变化,这表明其具有显著调节健康跨度和寿命的潜力。事实上,miRNA lin-4 通过其 lin-14 mRNA 靶标和胰岛素信号通路,已经被证明可以影响寿命和健康跨度。27 种秀丽隐杆线虫年龄调节 miRNA 与果蝇和人类 miRNA 具有序列相似性。我们回顾了当前对这一领域的理解,该领域有望揭示潜在保守的 miRNA 调节网络,这些网络调节衰老。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c6a5/2705848/210f37f1d638/CG-10-144_F1.jpg

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