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Impaired transcription in Alzheimer's disease: Key role in mitochondrial dysfunction and oxidative stress

机译:阿尔茨海默氏病的转录受损:在线粒体功能障碍和氧化应激中的关键作用

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Alzheimer's disease (AD) is the major cause of dementia in the world. Abnormal extracellular accumulation of amyloid-β (Aβ) peptide and tau hyperphosphorylation, forming neurofibrillary tangles in the brain, are hallmarks of the disease. Oxidative stress, neuroinflammation, and mitochondrial and synaptic dysfunction are also observed in AD and often correlated to intracellular Aβ. This peptide results from the cleavage of the amyloid-β protein precursor by β- and γ-secretases and tends to be secreted after its production. However, secreted Aβ can be internalized by the interaction with membrane receptors, namely N-methyl-D-aspartate receptors, advanced glycation end products receptors, and/or alpha 7 nicotinic acetylcholine receptors. Inside the cell, Aβ interacts with several organelles, including mitochondria and nucleus, and there is growing evidence pointing to a possible role of Aβ in the regulation of gene transcription. Accordingly, transcriptional deregulation was observed in several AD models and human samples from AD patients through modified expression, phosphorylation levels, function, and subcellular localization of some transcription factors, resulting in the suppression of neuroprotective transcription both in the nucleus and the mitochondria. In this review we focus on key transcription regulators related with mitochondrial biogenesis and antioxidant defenses that seem to be altered in AD models and also on the role of intranuclear Aβ in the pathogenesis of the disease.
机译:阿尔茨海默氏病(AD)是世界上痴呆症的主要原因。淀粉样蛋白-β(Aβ)肽异常的细胞外蓄积和tau过度磷酸化,在大脑中形成神经原纤维缠结,是该疾病的标志。在AD中也观察到氧化应激,神经炎症,线粒体和突触功能障碍,并且通常与细胞内Aβ相关。该肽是由β-和γ-分泌酶切割淀粉样蛋白-β蛋白前体产生的,并倾向于在其产生后被分泌。但是,分泌的Aβ可以通过与膜受体(即N-甲基-D-天冬氨酸受体,高级糖基化终产物受体和/或α7烟碱乙酰胆碱受体)的相互作用而被内在化。在细胞内部,Aβ与包括线粒体和细胞核在内的多个细胞器相互作用,并且越来越多的证据表明Aβ在调节基因转录中可能发挥作用。因此,通过修饰的表达,磷酸化水平,功能和某些转录因子的亚细胞定位,在几种AD模型和AD患者的人类样品中观察到转录失调,从而导致细胞核和线粒体中神经保护性转录的抑制。在这篇综述中,我们集中于与线粒体生物发生和抗氧化剂防御有关的关键转录调节因子,这些调节因子在AD模型中似乎已经改变,并且还关注核内Aβ在疾病发病机理中的作用。

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