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Notch 和 p53 之间的相互作用促进缺血性中风中的神经元细胞死亡。

Interplay between Notch and p53 promotes neuronal cell death in ischemic stroke.

机构信息

1 Department of Physiology, Yong Loo Lin School Medicine, National University of Singapore, Singapore, Singapore.

2 School of Pharmacy, Sungkyunkwan University, Suwon, Republic of Korea.

出版信息

J Cereb Blood Flow Metab. 2018 Oct;38(10):1781-1795. doi: 10.1177/0271678X17715956. Epub 2017 Jun 15.

Abstract

Stroke is the world's second leading cause of mortality, with a high incidence of morbidity. Numerous neuronal membrane receptors are activated by endogenous ligands and may contribute to infarct development. Notch is a well-characterized membrane receptor involved in cell differentiation and proliferation, and now shown to play a pivotal role in cell death during ischemic stroke. Blockade of Notch signaling by inhibition of γ-secretase, an enzyme that generates the active form of Notch, is neuroprotective following stroke. We have also identified that Pin1, a peptidyl-prolyl isomerase that regulates p53 transactivation under stress, promotes the pathogenesis of ischemic stroke via Notch signaling. Moreover, Notch can also mediate cell death through a p53-dependent pathway, resulting in apoptosis of neural progenitor cells. The current study has investigated the interplay between Notch and p53 under ischemic stroke conditions. Using pharmacological inhibitors, we have demonstrated that a Notch intracellular domain (NICD)/p53 interaction is involved in transcriptional regulation of genes downstream of p53 and NICD to modify stroke severity. Furthermore, the NICD/p53 interaction confers stability to p53 by rescuing it from ubiquitination. Together, these results indicate that Notch contributes to the pathogenesis of ischemic stroke by promoting p53 stability and signaling.

摘要

中风是世界上第二大致死原因,发病率较高。许多神经元膜受体被内源性配体激活,可能有助于梗死的发展。Notch 是一种特征明确的膜受体,参与细胞分化和增殖,现在被证明在缺血性中风期间的细胞死亡中起关键作用。通过抑制 γ-分泌酶(产生 Notch 活性形式的酶)阻断 Notch 信号传导,在中风后具有神经保护作用。我们还发现,Pin1 是一种应激下调节 p53 反式激活的肽脯氨酰异构酶,通过 Notch 信号传导促进缺血性中风的发病机制。此外,Notch 还可以通过 p53 依赖性途径介导细胞死亡,导致神经祖细胞凋亡。本研究探讨了缺血性中风条件下 Notch 和 p53 之间的相互作用。使用药理学抑制剂,我们已经证明 Notch 细胞内结构域(NICD)/p53 相互作用参与了 p53 和 NICD 下游基因的转录调节,从而改变中风的严重程度。此外,NICD/p53 相互作用通过拯救 p53 免于泛素化来赋予 p53 稳定性。总之,这些结果表明 Notch 通过促进 p53 稳定性和信号传导,促进缺血性中风的发病机制。

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