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脑缺血中的核因子-κB信号传导

NF-kappaB signalling in cerebral ischaemia.

作者信息

Schwaninger M, Inta I, Herrmann O

机构信息

Department of Neurology, University of Heidelberg, Im Neuenheimer Feld 400, 69120 Heidelberg, Germany.

出版信息

Biochem Soc Trans. 2006 Dec;34(Pt 6):1291-4. doi: 10.1042/BST0341291.

Abstract

In acute stroke, neuronal apoptosis and inflammation are considered to be important mechanisms on the road to tissue loss and neurological deficit. Both apoptosis and inflammation depend on gene transcription. We have identified a signalling pathway that regulates transcription of genes involved in apoptosis and inflammation. In a mouse model of focal cerebral ischaemia, there is an induction of the cytokine TWEAK (tumour necrosis factor-like weak inducer of apoptosis) and its membrane receptor Fn14. TWEAK promotes neuronal cell death and activates the transcription factor NF-kappaB (nuclear factor kappaB) through the upstream kinase IKK [IkappaB (inhibitory kappaB) kinase]. In vivo, IKK is activated in neurons. Neuron-specific deletion of the subunit IKK2 or inhibition of IKK activity reduced the infarct size and neuronal cell loss. A pharmacological inhibitor of IKK also showed neuroprotective properties. IKK-dependent ischaemic brain damage is likely to be mediated by NF-kappaB, because neuron-specific inhibition of NF-kappaB through transgenic expression of the NF-kappaB superrepressor was found to reduce the infarct size. In summary, there is evidence that IKK/NF-kappaB signalling contributes to ischaemic brain damage and may provide suitable drug targets for the treatment of stroke.

摘要

在急性中风中,神经元凋亡和炎症被认为是导致组织损伤和神经功能缺损的重要机制。凋亡和炎症均依赖于基因转录。我们已经确定了一条调节参与凋亡和炎症相关基因转录的信号通路。在局灶性脑缺血小鼠模型中,细胞因子TWEAK(肿瘤坏死因子样凋亡弱诱导剂)及其膜受体Fn14被诱导表达。TWEAK通过上游激酶IKK[IκB(抑制性κB)激酶]促进神经元细胞死亡并激活转录因子NF-κB(核因子κB)。在体内,IKK在神经元中被激活。神经元特异性缺失IKK2亚基或抑制IKK活性可减小梗死灶大小并减少神经元细胞丢失。一种IKK的药理学抑制剂也显示出神经保护特性。IKK依赖性缺血性脑损伤可能由NF-κB介导,因为通过转基因表达NF-κB超级抑制剂对NF-κB进行神经元特异性抑制可减小梗死灶大小。总之,有证据表明IKK/NF-κB信号通路促成缺血性脑损伤,并且可能为中风治疗提供合适的药物靶点。

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