German Center for Neurodegenerative Diseases, Department for Epigenetics and Systems Medicine in Neurodegenerative Diseases, Von Siebold Str 3A, 37075, Goettingen, Germany.
Developmental Neurobiology Laboratory, European Neuroscience Institute, Grisebachstrasse 5, 37077, Goettingen, Germany.
Transl Psychiatry. 2021 Oct 8;11(1):514. doi: 10.1038/s41398-021-01627-w.
MicroRNAs have been linked to synaptic plasticity and memory function and are emerging as potential biomarkers and therapeutic targets for cognitive diseases. Most of these data stem from the analysis of model systems or postmortem tissue from patients which mainly represents an advanced stage of pathology. Due to the in-accessibility of human brain tissue upon experimental manipulation, it is still challenging to identify microRNAs relevant to human cognition, which is however a key step for future translational studies. Here, we employ exercise as an experimental model for memory enhancement in healthy humans with the aim to identify microRNAs linked to memory function. By analyzing the circulating smallRNAome we find a cluster of 18 microRNAs that are highly correlated to cognition. MicroRNA-409-5p and microRNA-501-3p were the most significantly regulated candidates. Functional analysis revealed that the two microRNAs are important for neuronal integrity, synaptic plasticity, and morphology. In conclusion, we provide a novel approach to identify microRNAs linked to human memory function.
MicroRNAs 与突触可塑性和记忆功能有关,它们正成为认知疾病潜在的生物标志物和治疗靶点。这些数据大多来自于对模型系统或患者死后组织的分析,而这些组织主要代表了病理的晚期阶段。由于人类大脑组织在实验操作时无法获取,因此仍然难以确定与人类认知相关的 microRNAs,而这是未来转化研究的关键步骤。在这里,我们采用运动作为健康人类记忆增强的实验模型,旨在确定与记忆功能相关的 microRNAs。通过分析循环的 smallRNAome,我们发现了一组与认知高度相关的 18 个 microRNAs。microRNA-409-5p 和 microRNA-501-3p 是调节最显著的候选 microRNAs。功能分析表明,这两个 microRNAs 对神经元完整性、突触可塑性和形态学都很重要。总之,我们提供了一种新的方法来识别与人类记忆功能相关的 microRNAs。