首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >NF-kappaB p50/RelA and c-Rel-containing dimers: opposite regulators of neuron vulnerability to ischaemia.
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NF-kappaB p50/RelA and c-Rel-containing dimers: opposite regulators of neuron vulnerability to ischaemia.

机译:NF-κBp50 / RelA和含c-Rel的二聚体:神经元对缺血的脆弱性的相反调节剂。

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摘要

Diverse nuclear factor-kappaB subunits mediate opposite effects of extracellular signals on neuron survival. While RelA is activated by neurotoxic agents, c-Rel drives neuroprotective effects. In brain ischaemia RelA and p50 factors rapidly activate, but how they associate with c-Rel to form active dimers and contribute to the changes in diverse dimer activation for neuron susceptibility is unknown. We show that in both cortical neurons exposed to oxygen glucose deprivation (OGD) and mice subjected to brain ischaemia, activation of p50/RelA was associated with inhibition of c-Rel/RelA dimer and no change p50/c-Rel. Targeting c-Rel and RelA expression revealed that c-Rel dimers reduced while p50/RelA enhanced neuronal susceptibility to anoxia. Activation of p50/RelA complex is known to induce the pro-apoptotic Bim and Noxa genes. We now show that c-Rel-containing dimers, p50/c-Rel and RelA/c-Rel, but not p50/RelA, promoted Bcl-xL transcription. Accordingly, the OGD exposure induced Bim, but reduced Bcl-xL promoter activity and decreased the content of endogenous Bcl-xL protein. These findings demonstrate that within the same neuronal cell, the balance between activation of p50/RelA and c-Rel-containing complexes fine tunes the threshold of neuron vulnerability to the ischaemic insult. Selective targeting of different dimers will unravel new approaches to limit ischaemia-associated apoptosis.
机译:不同的核因子-κB亚基介导细胞外信号对神经元存活的相反作用。当RelA被神经毒性剂激活时,c-Rel会驱动神经保护作用。在脑缺血中,RelA和p50因子迅速激活,但是它们如何与c-Rel结合形成活性二聚体并促进神经元易感性的各种二聚体激活变化。我们显示在暴露于氧葡萄糖剥夺(OGD)的皮质神经元和遭受脑缺血的小鼠中,p50 / RelA的激活均与c-Rel / RelA二聚体的抑制有关,而p50 / c-Rel无变化。靶向c-Rel和RelA表达表明,c-Rel二聚体减少,而p50 / RelA增强神经元对缺氧的敏感性。已知p50 / RelA复合物的激活可诱导促凋亡的Bim和Noxa基因。我们现在显示,包含c-Rel的二聚体,p50 / c-Rel和RelA / c-Rel,而不是p50 / RelA,促进了Bcl-xL转录。因此,OGD暴露诱导Bim,但降低了Bcl-xL启动子活性,并降低了内源性Bcl-xL蛋白的含量。这些发现表明,在同一神经元细胞内,p50 / RelA和含c-Rel的复合物激活之间的平衡可微调神经元对缺血性损伤的阈值。选择性靶向不同的二聚体将揭示限制缺血相关凋亡的新方法。

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