Department of Biology, University of Pennsylvania, Philadelphia, Pennsylvania 19104, USA.
Nature. 2012 Feb 15;482(7386):519-23. doi: 10.1038/nature10810.
Human neurodegenerative diseases have the temporal hallmark of afflicting the elderly population. Ageing is one of the most prominent factors to influence disease onset and progression, yet little is known about the molecular pathways that connect these processes. To understand this connection it is necessary to identify the pathways that functionally integrate ageing, chronic maintenance of the brain and modulation of neurodegenerative disease. MicroRNAs (miRNA) are emerging as critical factors in gene regulation during development; however, their role in adult-onset, age-associated processes is only beginning to be revealed. Here we report that the conserved miRNA miR-34 regulates age-associated events and long-term brain integrity in Drosophila, providing a molecular link between ageing and neurodegeneration. Fly mir-34 expression exhibits adult-onset, brain-enriched and age-modulated characteristics. Whereas mir-34 loss triggers a gene profile of accelerated brain ageing, late-onset brain degeneration and a catastrophic decline in survival, mir-34 upregulation extends median lifespan and mitigates neurodegeneration induced by human pathogenic polyglutamine disease protein. Some of the age-associated effects of miR-34 require adult-onset translational repression of Eip74EF, an essential ETS domain transcription factor involved in steroid hormone pathways. Our studies indicate that miRNA-dependent pathways may have an impact on adult-onset, age-associated events by silencing developmental genes that later have a deleterious influence on adult life cycle and disease, and highlight fly miR-34 as a key miRNA with a role in this process.
人类神经退行性疾病具有影响老年人群体的时间标志。衰老是影响疾病发病和进展的最显著因素之一,但人们对连接这些过程的分子途径知之甚少。为了理解这种联系,有必要确定在功能上整合衰老、大脑慢性维持和神经退行性疾病调节的途径。MicroRNAs(miRNA)在发育过程中的基因调控中作为关键因素出现;然而,它们在成年发病、与年龄相关的过程中的作用才刚刚开始被揭示。在这里,我们报告保守的 miRNA miR-34 调节果蝇中与年龄相关的事件和大脑的长期完整性,为衰老和神经退行性变之间提供了分子联系。果蝇 mir-34 的表达表现出成年发病、大脑丰富和年龄调节的特征。虽然 mir-34 的缺失会引发大脑衰老加速、迟发性大脑退化和生存能力灾难性下降的基因谱,但 mir-34 的上调延长了中位寿命并减轻了人类致病性多聚谷氨酰胺疾病蛋白诱导的神经退行性变。miR-34 的一些与年龄相关的影响需要成年期翻译抑制 Eip74EF,Eip74EF 是一种参与类固醇激素途径的必需 ETS 结构域转录因子。我们的研究表明,miRNA 依赖性途径可能通过沉默发育基因对成年发病、与年龄相关的事件产生影响,这些基因后来对成年生命周期和疾病产生有害影响,并突出了果蝇 miR-34 在该过程中的关键作用。