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首页> 外文期刊>FEBS letters. >SUMOylation of the kainate receptor subunit GluK2 contributes to the activation of the MLK3-JNK3 pathway following kainate stimulation
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SUMOylation of the kainate receptor subunit GluK2 contributes to the activation of the MLK3-JNK3 pathway following kainate stimulation

机译:海藻酸酯受体亚基GluK2的SUMOylation有助于海藻酸酯刺激后MLK3-JNK3途径的激活

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摘要

Protein SUMOylation has been implicated in the pathogenesis of ischemic stroke. However, the underlying mechanisms remain unclear. Here, we found that global brain ischemia evokes a sustained elevation of GluK2 SUMOylation in the rat hippocampal CA1 region. Over-expression of wild-type GluK2, but not SUMOylation-deficient mutant, significantly increased the activity of MLK3 and JNK3 after kainate stimulation. SUMOylation deficiency attenuated the kainate-stimulated interaction between MLK3 and GluK2. In addition, inhibition of kainate-evoked GluK2 endocytosis decreased the activation of MLK3-JNK3 signaling and the binding of MLK3-GluK2 in cultured cortical neurons. These results suggest that the internalization of GluK2 following SUMO modification promotes its binding with MLK3, thereby activating the MLK3-JNK3 pathway, which may be responsible for ischemic neuronal cell death. Structured summary of protein interactions: MLK3 physically interacts with GluK2 by anti bait coimmunoprecipitation (View Interaction: 1, 2) SUMO1 physically interacts with GluK2 by anti bait coimmunoprecipitation (View interaction) MLK3 physically interacts with GluK2 by anti bait coimmunoprecipitation (View interaction).
机译:蛋白SUMOylation已牵涉缺血性中风的发病机理。但是,其潜在机制仍不清楚。在这里,我们发现全球脑缺血引起大鼠海马CA1区GluK2 SUMOylation的持续升高。在过海藻酸盐刺激后,野生型GluK2的过表达而不是SUMOylation缺陷型突变体的过表达显着增加了MLK3和JNK3的活性。 SUMOylation缺乏削弱了MLK3和GluK2之间的红藻氨酸刺激的相互作用。此外,抑制海藻酸盐诱发的GluK2内吞作用可降低培养的皮层神经元中MLK3-JNK3信号的激活和MLK3-GluK2的结合。这些结果表明,SUMO修饰后GluK2的内在化促进了它与MLK3的结合,从而激活了MLK3-JNK3途径,这可能是缺血性神经元细胞死亡的原因。蛋白质相互作用的结构总结:MLK3通过抗诱饵免疫共沉淀与GluK2物理相互作用(查看相互作用:1、2)SUMO1通过抗诱饵免疫共沉淀与GluK2物理相互作用(查看相互作用)MLK3通过抗诱饵免疫共沉淀与GluK2物理相互作用。

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