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首页> 外文期刊>Brain research >Transduced PDZ1 domain of PSD-95 decreases Src phosphorylation and increases nNOS (Ser847) phosphorylation contributing to neuroprotection after cerebral ischemia.
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Transduced PDZ1 domain of PSD-95 decreases Src phosphorylation and increases nNOS (Ser847) phosphorylation contributing to neuroprotection after cerebral ischemia.

机译:PSD-95的PDZ1转导域可降低Src磷酸化并增加nNOS(Ser847)磷酸化,从而有助于脑缺血后的神经保护。

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摘要

Over-activation of NMDA receptor has been widely believed to be the main signal resulting in ischemic cell injury. We recently reported that the triplicate complex NR2A-PSD-95-Src is a signaling module to facilitate NMDA receptor over-activation. In addition, over-activation of NMDA receptor can activate another signaling molecule nNOS, which is also mediated by PSD-95 after cerebral ischemia. Here, we examined whether overexpression of the PDZ1 domain of PSD-95 could disrupt the functional interaction between NMDA receptor and PSD-95 in rat hippocampal CA1 region, and whether or not it could exert a neuroprotective effect against cerebral ischemia. Our results showed that overexpression of PDZ1 domain not only decreased the assembly of NR2A-PSD-95-Src signaling module and the auto-phosphorylation of Src, which mediates NMDA receptor phosphorylation, but also enhanced nNOS (Ser847) phosphorylation. Most importantly, overexpression of PDZ1 domain protected rat hippocampal CA1 neurons against cerebral ischemia injury. These results suggest that overexpression of the PDZ1 domain can perturb the binding of PSD-95 to NMDA receptor, suppress the activity of both NMDA receptor and nNOS, and thus have a neuroprotective effect.
机译:广泛认为NMDA受体的过度活化是导致缺血性细胞损伤的主要信号。我们最近报道,一式三份的复合物NR2A-PSD-95-Src是促进NMDA受体过度激活的信号传导模块。此外,NMDA受体的过度激活可以激活另一个信号分子nNOS,这也由脑缺血后PSD-95介导。在这里,我们检查了PSD-95的PDZ1结构域的过表达是否会破坏大鼠海马CA1区的NMDA受体和PSD-95之间的功能相互作用,以及它是否可对脑缺血发挥神经保护作用。我们的结果表明,PDZ1结构域的过表达不仅降低了NR2A-PSD-95-Src信号模块的组装和Src的自磷酸化,介导了NMDA受体的磷酸化,而且增强了nNOS(Ser847)的磷酸化。最重要的是,PDZ1结构域的过表达保护大鼠海马CA1神经元免受脑缺血损伤。这些结果表明PDZ1结构域的过表达可以干扰PSD-95与NMDA受体的结合,抑制NMDA受体和nNOS的活性,因此具有神经保护作用。

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