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Activation of MT2 receptor ameliorates dendritic abnormalities in Alzheimer’s disease via C/EBPα/miR‐125b pathway

机译:MT2受体的激活通过C /EBPα/ miR-125b途径改善了阿尔茨海默氏病的树突状异常

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摘要

Impairments of dendritic trees and spines have been found in many neurodegenerative diseases, including Alzheimer's disease (AD), in which the deficits of melatonin signal pathway were reported. Melatonin receptor 2 (MT2) is widely expressed in the hippocampus and mediates the biological functions of melatonin. It is known that melatonin application is protective to dendritic abnormalities in AD. However, whether MT2 is involved in the neuroprotection and the underlying mechanisms are not clear. Here, we first found that MT2 is dramatically reduced in the dendritic compartment upon the insult of oligomer Aβ. MT2 activation prevented the Aβ‐induced disruption of dendritic complexity and spine. Importantly, activation of MT2 decreased cAMP, which in turn inactivated transcriptional factor CCAAT/enhancer‐binding protein α(C/EBPα) to suppress miR‐125b expression and elevate the expression of its target, GluN2A. In addition, miR‐125b mimics fully blocked the protective effects of MT2 activation on dendritic trees and spines. Finally, injection of a lentivirus containing a miR‐125b sponge into the hippocampus of APP/PS1 mice effectively rescued the dendritic abnormalities and learning/memory impairments. Our data demonstrated that the cAMP‐C/EBPα/miR‐125b/GluN2A signaling pathway is important to the neuroprotective effects of MT2 activation in Aβ‐induced dendritic injuries and learning/memory disorders, providing a novel therapeutic target for the treatment of AD synaptopathy.
机译:在许多神经退行性疾病(包括阿尔茨海默氏病(AD))中发现了树突树和棘突的损伤,其中报道了褪黑激素信号通路的缺陷。褪黑激素受体2(MT2)在海马中广泛表达,并介导褪黑激素的生物学功能。众所周知,褪黑激素的应用可以保护AD中的树突异常。但是,MT2是否参与神经保护及其潜在机制尚不清楚。在这里,我们首先发现在寡聚物Aβ侵害后,MT2在树突状区室中显着减少。 MT2激活阻止了Aβ诱导的树突复杂性和脊柱的破坏。重要的是,MT2的激活降低了cAMP,从而使转录因子CCAAT /增强子结合蛋白α(C /EBPα)失活,从而抑制了miR-125b的表达并提高了其靶标GluN2A的表达。此外,miR-125b模拟物完全阻断了MT2激活对树状树和棘的保护作用。最后,将含有miR-125b海绵的慢病毒注射到APP / PS1小鼠的海马体中,可以有效地挽救树突异常和学习/记忆障碍。我们的数据表明cAMP-C /EBPα/ miR-125b / GluN2A信号通路对于MT2激活对Aβ引起的树突状损伤和学习/记忆障碍的神经保护作用很重要,为AD突触病的治疗提供了新的治疗靶点。

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