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首页> 外文期刊>Frontiers in Molecular Neuroscience >Melatonin Mitigates Kainic Acid-Induced Neuronal Tau Hyperphosphorylation and Memory Deficits through Alleviating ER Stress
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Melatonin Mitigates Kainic Acid-Induced Neuronal Tau Hyperphosphorylation and Memory Deficits through Alleviating ER Stress

机译:褪黑素通过减轻ER应力减轻海因酸诱导的神经元Tau过度磷酸化和记忆障碍。

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Kainic acid (KA) exposure causes neuronal degeneration featured by Alzheimer-like tau hyperphosphorylation and memory deficits. Melatonin (Mel) is known to protect hippocampal neurons against KA-induced damage. However, the underlying mechanisms remain elusive. In the current study, we investigated the protective effect of melatonin on KA-induced tau hyperphosphorylation by focusing on endoplasmic reticulum (ER) stress-mediated signaling pathways. By using primary hippocampal neurons and mouse brain, we showed that KA treatment specifically induced ER stress and activated GSK-3β and CDK5, two major kinases responsible for tau phosphorylation. Inhibition of ER stress efficiently inactivated GSK-3β and CDK5. Mechanistically, we found that KA-induced ER stress significantly activated calpain, a calcium-dependent protease. Inhibition of ER stress or calpain leads to the reduction in KA-induced GSK-3β and CDK5 activities and tau phosphorylation. Moreover, GSK-3β or CDK5 inhibition failed to downregulate ER stress efficiently, suggesting that ER stress functions upstream of GSK-3β or CDK5. Notably, our results revealed that melatonin acts against KA-induced neuronal degeneration and tau hyperphosphorylation via easing ER stress, further highlighting the protective role of melatonin in the KA-induced neuronal defects.
机译:海藻酸(KA)暴露会导致神经元变性,其特征是像阿尔茨海默氏样的tau蛋白过度磷酸化和记忆力减退。众所周知,褪黑素(Mel)可保护海马神经元免受KA诱导的损伤。但是,基本机制仍然难以捉摸。在当前的研究中,我们通过关注内质网(ER)应激介导的信号通路,研究了褪黑素对KA诱导的tau过度磷酸化的保护作用。通过使用原代海马神经元和小鼠大脑,我们表明KA治疗可特异性诱导内质网应激并激活GSK-3β和CDK5,这两种主要激酶负责tau磷酸化。内质网应激的抑制有效地使GSK-3β和CDK5失活。从机理上讲,我们发现KA诱导的内质网应激可显着激活钙依赖性蛋白酶钙蛋白酶。内质网应激或钙蛋白酶的抑制导致KA诱导的GSK-3β和CDK5活性降低以及tau磷酸化。此外,GSK-3β或CDK5抑制不能有效地下调ER应激,表明ER应激在GSK-3β或CDK5的上游起作用。值得注意的是,我们的研究结果表明褪黑素通过缓解ER应激来抵抗KA诱导的神经元变性和tau过度磷酸化,进一步凸显了褪黑素在KA诱导的神经元缺损中的保护作用。

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