首页> 美国卫生研究院文献>Journal of the Boston Society of Medical Sciences >Pro-NGF from Alzheimer’s Disease and Normal Human Brain Displays Distinctive Abilities to Induce Processing and Nuclear Translocation of Intracellular Domain of p75NTR and Apoptosis
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Pro-NGF from Alzheimer’s Disease and Normal Human Brain Displays Distinctive Abilities to Induce Processing and Nuclear Translocation of Intracellular Domain of p75NTR and Apoptosis

机译:来自阿尔茨海默氏病和正常人脑的Pro-NGF表现出独特的能力能够诱导p75NTR细胞内结构域的加工和核易位以及细胞凋亡

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摘要

The pro form of neurotrophic growth factor (pro-NGF), purified by chromatography from human Alzheimer’s disease (AD)-affected brains (ADhbi-pro-NGF), has been shown to induce apoptotic cell death in neuronal cell cultures through its interaction with the p75 neurotrophin receptor (p75NTR). In the present work, we report that ADhbi-pro-NGF stimulates processing of p75NTR with α- and γ-secretases, yielding a 20-kd intracellular domain (p75ICD) that translocates to the nucleus. This process was accompanied by delayed apoptosis. In AD, p75ICD was significantly increased in human entorhinal cortex. Although human frontal cortex has been described as showing a higher pro-NGF increase in AD, the increase in the entorhinal cortex paralleled p75NTR processing in its intracellular domain. In addition, pro-NGF isolated from AD-affected brains differed functionally from pro-NGF isolated from comparably aged control brains, with pro-NGF isolated from control brains being unstable and undergoing degradation to NGF when added to cell culture. As p75ICD and pro-NGF are both mediators of apoptosis and are both found in increased levels in the cerebral cortex in AD, the present data have implications for understanding neuronal degeneration in AD.
机译:神经营养生长因子(pro-NGF)的前体形式已通过色谱法从受人类阿尔茨海默氏病(AD)影响的大脑(ADhbi-pro-NGF)色谱中纯化,已显示可通过与神经元细胞培养物相互作用而诱导凋亡性细胞死亡。 p75神经营养蛋白受体(p75NTR)。在目前的工作中,我们报告说,ADhbi-pro-NGF刺激带有α-和γ-分泌酶的p75NTR的加工,产生20 kd的胞内结构域(p75 ICD ),该结构域转移到细胞核。该过程伴随着凋亡的延迟。在AD中,人类内嗅皮层中p75 ICD 显着增加。尽管人类额叶皮层被描述为在AD中显示较高的促NGF含量,但内嗅皮层的增加与细胞内域中的p75NTR加工平行。另外,从受AD影响的大脑中分离出的pro-NGF在功能上不同于从相对老化的对照脑中分离出的pro-NGF,从对照脑中分离出的pro-NGF不稳定,当添加到细胞培养物中时会降解为NGF。由于p75 ICD 和pro-NGF均是凋亡的介体,并且都在AD的大脑皮层中升高,因此本数据对了解AD神经元变性具有重要意义。

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