首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >c-Jun N-terminal Kinase Mediates Ligand-independent p75(NTR )Signaling in Mesencephalic Cells Subjected to Oxidative Stress
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c-Jun N-terminal Kinase Mediates Ligand-independent p75(NTR )Signaling in Mesencephalic Cells Subjected to Oxidative Stress

机译:C-JUM N-末端激酶在经受氧化应激的核心细胞中介导配体无关的P75(NTR)信号传导

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摘要

The p75 neurotrophin receptor (p75(NTR)) is a multifunctional protein that regulates cellular responses to pathological conditions in specific regions of the nervous system. Activation of p75(NTR) in certain neuronal populations induces proteolytic processing of the receptor, thereby generating p75(NTR) fragments that facilitate downstream signaling. Expression of p75(NTR) has been reported in neurons of the ventral midbrain, but p75(NTR) signaling mechanisms in such cells are poorly understood. Here, we used Lund Human Mesencephalic cells, a population of neuronal cells derived from the ventral mesencephalon, to evaluate the effects of oxidative stress on p75(NTR) signaling. Subjection of the cells to oxidative stress resulted in decreased cell-surface localization of p75(NTR) and intracellular accumulation of p75(NTR) fragments. Oxidative stress-inducedp75(NTR) processing was reduced by pharmacological inhibition of metalloproteases or gamma-secretase, but was unaltered by blockade of the ligandbinding domain of p75(NTR) . Furthermore, inhibition of c-Jun N-terminal Kinase (JNK) decreased p75(NTR) cleavage induced by oxidative damage. Altogether, these results support a mechanism of p75(NTR) activation in which oxidative stress stimulates JNK signaling, thereby facilitating p75(NTR) processing via a ligand-independent mechanism involving induction of metalloprotease and gamma-secretase activity. These findings reveal a novel role for JNK in ligand-independent p75(NTR) signaling, and, considering the susceptibility of mesencephalic neurons to oxidative damage associated with Parkinson's disease (PD), merit further investigation into the effects of p75(NTR) on PD-related neurodegeneration. (C) 2020 IBRO. Published by Elsevier Ltd. All rights reserved.
机译:p75神经营养素受体(p75(NTR))是一种多功能蛋白质,调节神经系统特定区域的细胞对病理条件的反应。某些神经元群体中p75(NTR)的激活诱导受体的蛋白水解过程,从而产生促进下游信号传导的p75(NTR)片段。据报道,在腹侧中脑神经元中有p75(NTR)的表达,但对此类细胞中的p75(NTR)信号机制知之甚少。在这里,我们使用Lund人中脑细胞(一种来源于中脑腹侧的神经细胞群)来评估氧化应激对p75(NTR)信号的影响。细胞受到氧化应激后,p75(NTR)的细胞表面定位降低,p75(NTR)片段在细胞内积累。金属蛋白酶或γ-分泌酶的药理学抑制可减少氧化应激诱导的DP75(NTR)加工,但阻断p75(NTR)的配体结合域不会改变。此外,抑制c-Jun N-末端激酶(JNK)可降低氧化损伤诱导的p75(NTR)断裂。总之,这些结果支持p75(NTR)激活机制,其中氧化应激刺激JNK信号传导,从而通过非配体机制促进p75(NTR)的处理,该机制涉及金属蛋白酶和γ分泌酶活性的诱导。这些发现揭示了JNK在配体非依赖性p75(NTR)信号传导中的新作用,考虑到中脑神经元对帕金森病(PD)相关氧化损伤的易感性,值得进一步研究p75(NTR)对PD相关神经退行性变的影响。(C) 2020年伊布罗。爱思唯尔有限公司出版。版权所有。

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