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Specific targeting of pro-death NMDA receptor signals with differing reliance on the NR2B PDZ ligand

机译:依赖于NR2B PDZ配体的死亡前NMDA受体信号的特异性靶向

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摘要

NMDA receptors (NMDARs) mediate ischemic brain damage, for which interactions between the C termini of NR2 subunits and PDZ domain proteins within the NMDAR signaling complex (NSC) are emerging therapeutic targets. However, expression of NMDARs in a non-neuronal context, lacking many NSC components, can still induce cell death. Moreover, it is unclear whether targeting the NSC will impair NMDAR-dependent prosurvival and plasticity signaling. We show that the NMDAR can promote death signaling independently of the NR2 PDZ ligand, when expressed in non-neuronal cells lacking PSD-95 and neuronal nitric oxide synthase (nNOS), key PDZ proteins that mediate neuronal NMDAR excitotoxicity. However, in a non-neuronal context, the NMDAR promotes cell death solely via c-Jun N-terminal protein kinase (JNK), whereas NMDAR-dependent cortical neuronal death is promoted by both JNK and p38. NMDAR-dependent pro-death signaling via p38 relies on neuronal context, although death signaling by JNK, triggered by mitochondrial reactive oxygen species production, does not. NMDAR-dependent p38 activation in neurons is triggered by submembranous Ca(2+), and is disrupted by NOS inhibitors and also a peptide mimicking the NR2B PDZ ligand (TAT-NR2B9c). TAT-NR2B9c reduced excitotoxic neuronal death and p38-mediated ischemic damage, without impairing an NMDAR-dependent plasticity model or prosurvival signaling to CREB or Akt. TAT-NR2B9c did not inhibit JNK activation, and synergized with JNK inhibitors to ameliorate severe excitotoxic neuronal loss in vitro and ischemic cortical damage in vivo. Thus, NMDAR-activated signals comprise pro-death pathways with differing requirements for PDZ protein interactions. These signals are amenable to selective inhibition, while sparing synaptic plasticity and prosurvival signaling.
机译:NMDA受体(NMDAR)介导缺血性脑损伤,为此,NR2亚基的C末端与NMDAR信号复合物(NSC)中的PDZ域蛋白之间的相互作用成为新兴的治疗靶点。但是,在缺少许多NSC成分的非神经元环境中表达NMDAR仍然可以诱导细胞死亡。而且,尚不清楚靶向NSC是否会损害依赖于NMDAR的生存和可塑性信号。我们显示,当在缺乏PSD-95和神经元一氧化氮合酶(nNOS),介导神经元NMDAR兴奋性毒性的关键PDZ蛋白的非神经元细胞中表达时,NMDAR可以独立于NR2 PDZ配体促进死亡信号传导。然而,在非神经元的情况下,NMDAR仅通过c-Jun N端蛋白激酶(JNK)促进细胞死亡,而NMDAR依赖性皮质神经元的死亡则由JNK和p38促进。通过p38依赖于NMDAR的促死亡信号依赖于神经元环境,尽管线粒体活性氧的产生触发了JNK的死亡信号,但并非如此。 NMDAR依赖神经元中的p38激活被膜下Ca(2+)触发,并被NOS抑制剂和模拟NR2B PDZ配体的肽(TAT-NR2B9c)破坏。 TAT-NR2B9c可减少兴奋性神经元死亡和p38介导的缺血性损伤,而不会损害NMDAR依赖性可塑性模型或CREB或Akt的生存信号。 TAT-NR2B9c不抑制JNK活化,并与JNK抑制剂协同作用,以减轻体外严重的兴奋性毒性神经元损失和体内的缺血性皮层损害。因此,NMDAR激活的信号包括促死亡途径,对PDZ蛋白相互作用具有不同的要求。这些信号易于选择性抑制,同时不影响突触可塑性和生存信号。

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