首页> 美国卫生研究院文献>Evidence-based Complementary and Alternative Medicine : eCAM >Curcumin Protects Neurons from Glutamate-Induced Excitotoxicity by Membrane Anchored AKAP79-PKA Interaction Network
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Curcumin Protects Neurons from Glutamate-Induced Excitotoxicity by Membrane Anchored AKAP79-PKA Interaction Network

机译:姜黄素通过膜锚定的AKAP79-PKA相互作用网络保护神经元免受谷氨酸诱导的兴奋性毒性

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摘要

Now stimulation of AMPA receptor as well as its downstream pathways is considered as potential central mediators in antidepressant mechanisms. As a signal integrator which binds to AMPA receptor, A-kinase anchoring protein 79-(AKAP79-) PKA complex is regarded as a potential drug target to exert neuroprotective effects. A well-tolerated and multitarget drug curcumin has been confirmed to exert antidepressant-like effects. To explore whether AKAP79-PKA complex is involved in curcumin-mediated antiexcitotoxicity, we detected calcium signaling, subcellular location of AKAP79-PKA complex, phosphorylation of glutamate receptor, and ERK and AKT cascades. In this study, we found that curcumin protected neurons from glutamate insult by reducing Ca2+ influx and blocking the translocation of AKAP79 from cytomembrane to cytoplasm. In parallel, curcumin enhanced the phosphorylation of AMPA receptor and its downstream pathways in PKA-dependent manner. If we pretreated cells with PKA anchoring inhibitor Ht31 to disassociate PKA from AKAP79, no neuroprotective effects were observed. In conclusion, our results show that AKAP79-anchored PKA facilitated the signal relay from AMPA receptor to AKT and ERK cascades, which may be crucial for curcumin-mediated antiexcitotoxicity.
机译:现在,对A​​MPA受体及其下游途径的刺激被认为是抗抑郁机制中的潜在中心介质。作为与AMPA受体结合的信号整合剂,A激酶锚定蛋白79-(​​AKAP79-)PKA复合物被认为是发挥神经保护作用的潜在药物靶标。已确认耐受性良好的多靶点姜黄素可发挥抗抑郁样作用。为探讨AKAP79-PKA复合物是否参与姜黄素介导的抗兴奋性毒性,我们检测了钙信号传导,AKAP79-PKA复合物的亚细胞定位,谷氨酸受体的磷酸化以及ERK和AKT级联反应。在这项研究中,我们发现姜黄素可通过减少Ca 2 + 流入并阻止AKAP79从细胞膜向细胞质的转运来保护神经元免受谷氨酸的侵害。同时,姜黄素以PKA依赖性方式增强了AMPA受体及其下游途径的磷酸化。如果我们用PKA锚定抑制剂Ht31预处理细胞以使PKA与AKAP79分离,则未观察到神经保护作用。总之,我们的结果表明,AKAP79锚定的PKA促进了从AMPA受体到AKT和ERK级联的信号转导,这对于姜黄素介导的抗兴奋性毒性可能至关重要。

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