Department of Pharmacology, College of Medicine, Seoul National University, Seoul, 110-799, Republic of Korea.
Department of Life Science, POSTECH, Pohang, Gyeongbuk, 790-784, Republic of Korea.
Sci Rep. 2016 Oct 6;6:34433. doi: 10.1038/srep34433.
MicroRNAs have emerged as key factors in development, neurogenesis and synaptic functions in the central nervous system. In the present study, we investigated a pathophysiological significance of microRNA-188-5p (miR-188-5p) in Alzheimer's disease (AD). We found that oligomeric Aβ treatment diminished miR-188-5p expression in primary hippocampal neuron cultures and that miR-188-5p rescued the Aβ-mediated synapse elimination and synaptic dysfunctions. Moreover, the impairments in cognitive function and synaptic transmission observed in 7-month-old five familial AD (5XFAD) transgenic mice, were ameliorated via viral-mediated expression of miR-188-5p. miR-188-5p expression was down-regulated in the brain tissues from AD patients and 5XFAD mice. The addition of miR-188-5p rescued the reduction in dendritic spine density in the primary hippocampal neurons treated with oligomeric Aβ and cultured from 5XFAD mice. The reduction in the frequency of mEPSCs was also restored by addition of miR-188-5p. The impairments in basal fEPSPs and cognition observed in 7-month-old 5XFAD mice were ameliorated via the viral-mediated expression of miR-188-5p in the hippocampus. Furthermore, we found that miR-188 expression is CREB-dependent. Taken together, our results suggest that dysregulation of miR-188-5p expression contributes to the pathogenesis of AD by inducing synaptic dysfunction and cognitive deficits associated with Aβ-mediated pathophysiology in the disease.
微小 RNA 已成为中枢神经系统发育、神经发生和突触功能的关键因素。在本研究中,我们研究了微小 RNA-188-5p(miR-188-5p)在阿尔茨海默病(AD)中的病理生理意义。我们发现寡聚体 Aβ 处理会降低原代海马神经元培养物中 miR-188-5p 的表达,而 miR-188-5p 可挽救 Aβ 介导的突触消除和突触功能障碍。此外,通过病毒介导的 miR-188-5p 表达,可改善 7 月龄 5 家族 AD(5XFAD)转基因小鼠认知功能和突触传递的损伤。AD 患者和 5XFAD 小鼠脑组织中 miR-188-5p 的表达下调。寡聚体 Aβ 处理和源自 5XFAD 小鼠的原代海马神经元培养物中,miR-188-5p 的添加可挽救树突棘密度的降低。添加 miR-188-5p 还可以恢复 mEPSC 频率的降低。通过病毒介导的 miR-188-5p 在海马中的表达,可改善 7 月龄 5XFAD 小鼠基础 fEPSP 和认知的损伤。此外,我们发现 miR-188 的表达依赖于 CREB。综上所述,我们的研究结果表明,miR-188-5p 表达失调通过诱导与疾病中 Aβ 介导的病理生理学相关的突触功能障碍和认知缺陷,促进 AD 的发病机制。