首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Fas/CD95 regulatory protein Faim2 is neuroprotective after transient brain ischemia.
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Fas/CD95 regulatory protein Faim2 is neuroprotective after transient brain ischemia.

机译:Fas / CD95调节蛋白Faim2在短暂性脑缺血后具有神经保护作用。

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摘要

Death receptor (DR) signaling has a major impact on the outcome of numerous neurological diseases, including ischemic stroke. DRs mediate not only cell death signals, but also proinflammatory responses and cell proliferation. Identification of regulatory proteins that control the switch between apoptotic and alternative DR signaling opens new therapeutic opportunities. Fas apoptotic inhibitory molecule 2 (Faim2) is an evolutionary conserved, neuron-specific inhibitor of Fas/CD95-mediated apoptosis. To investigate its role during development and in disease models, we generated Faim2-deficient mice. The ubiquitous null mutation displayed a viable and fertile phenotype without overt deficiencies. However, lack of Faim2 caused an increase in susceptibility to combined oxygen-glucose deprivation in primary neurons in vitro as well as in caspase-associated cell death, stroke volume, and neurological impairment after cerebral ischemia in vivo. These processes were rescued by lentiviral Faim2 gene transfer. In summary, we provide evidence that Faim2 is a novel neuroprotective molecule in the context of cerebral ischemia.
机译:死亡受体(DR)信号传导对包括缺血性中风在内的许多神经系统疾病的结果产生重大影响。 DR不仅介导细胞死亡信号,而且介导促炎反应和细胞增殖。识别控制细胞凋亡和替代性DR信号之间转换的调节蛋白,开辟了新的治疗机会。 Fas凋亡抑制分子2(Faim2)是Fas / CD95介导的凋亡的进化保守神经元特异性抑制剂。为了研究其在发育中和疾病模型中的作用,我们产生了Faim2缺陷小鼠。普遍存在的无效突变表现出可行且可育的表型,没有明显的缺陷。但是,缺乏Faim2会导致体外原发神经元对氧-葡萄糖剥夺的敏感性增加,以及体内脑缺血后与半胱天冬酶相关的细胞死亡,中风量和神经系统损伤的敏感性增加。慢病毒Faim2基因转移可拯救这些过程。总之,我们提供的证据表明Faim2是脑缺血情况下的一种新型神经保护分子。

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