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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Activation and redistribution of c-jun N-terminal kinase/stress activated protein kinase in degenerating neurons in Alzheimer's disease.
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Activation and redistribution of c-jun N-terminal kinase/stress activated protein kinase in degenerating neurons in Alzheimer's disease.

机译:阿尔茨海默氏病退化神经元中c-jun N末端激酶/应激激活蛋白激酶的活化和再分布。

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摘要

Cellular responses to increased oxidative stress appear to be a mechanism that contributes to the varied cytopathology of Alzheimer's disease (AD). In this regard, we suspect that c-Jun N-terminal kinase/Stress activated protein kinase (JNK/SAPK), a major cellular stress response protein induced by oxidative stress, plays an important role in Alzheimer disease in susceptible neurons facing the dilemma of proliferation or death. We found that JNK2/SAPK-alpha and JNK3/SAPK-beta were related to neurofibrillary pathology and JNK1/SAP-Kgamma related to Hirano bodies in cases of AD but were only weakly diffuse in the cytoplasm in all neurons in control cases and in non-involved neurons in diseased brain. In this regard, in hippocampal and cortical regions of individuals with severe AD, the activated phospho-JNK/SAPK was localized exclusively in association with neurofibrillar alterations including neurofibrillary tangles, senile plaque neurites, neuropil threads and granulovacuolar degeneration structures (GVD), completely overlapping with tau-positive neurofibrillary pathology, but was virtually absent in these brain regions in younger and age-matched controls without pathology. However, in control patients with some pathology, as well as in mild AD cases, there was nuclear phospho-JNK/SAPK and translocation of phospho-JNK/SAPK from nuclei to cytoplasm, respectively, indicating that the activation and re-distribution of JNK/SAPK correlates with the progress of the disease. By immunoblot analysis, phospho-JNK/SAPK is significantly increased in AD over control cases. Together, these findings suggest that JNK/SAPK dysregulation, probably resulting from oxidative stress, plays an important role in the increased phosphorylation of cytoskeletal proteins found in AD.
机译:细胞对增加的氧化应激的反应似乎是导致阿尔茨海默氏病(AD)的细胞病理学改变的一种机制。在这方面,我们怀疑c-Jun N末端激酶/应力激活蛋白激酶(JNK / SAPK)是氧化应激诱导的主要细胞应激反应蛋白,在阿尔茨海默氏病中易感神经元困境中起重要作用。扩散或死亡。我们发现在AD病例中,JNK2 /SAPK-α和JNK3 /SAPK-β与神经原纤维病理相关,而JNK1 / SAP-Kgamma与平野体相关,但在对照病例和非对照病例中,仅在所有神经元的细胞质中弱扩散。患病大脑中的神经元。在这方面,在患有重度AD的个体的海马和皮质区域中,活化的磷酸化JNK / SAPK仅与神经原纤维改变(包括神经原纤维缠结,老年斑神经突,神经绒毛线和颗粒-肺泡变性结构(GVD))相关联定位患有tau阳性神经原纤维病理,但在没有病理学的年龄和年龄相匹配的对照组中,这些大脑区域实际上不存在。然而,在具有一定病理的对照患者以及轻度AD患者中,分别存在核磷酸化JNK / SAPK和磷酸化JNK / SAPK从核到细胞质的移位,这表明JNK的活化和重新分布/ SAPK与疾病进展相关。通过免疫印迹分析,与对照组相比,AD患者的磷酸化JNK / SAPK显着增加。总之,这些发现表明,JNK / SAPK失调可能是由氧化应激引起的,在AD中发现的细胞骨架蛋白磷酸化增加中起重要作用。

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