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Activation of Akt/PKB, increased phosphorylation of Akt substrates and loss and altered distribution of Akt and PTEN are features of Alzheimer's disease pathology

机译:Akt / PKB的激活,Akt底物的磷酸化增加以及Akt和PTEN的丢失以及分布的改变是阿尔茨海默氏病病理学的特征

摘要

Studies suggest that activation of phosphoinositide 3-kinase-Akt may protect against neuronal cell death in Alzheimer's disease (AD). Here, however, we provide evidence of increased Akt activation, and hyperphosphorylation of critical Akt substrates in AD brain, which link to AD pathogenesis, suggesting that treatments aiming to activate the pathway in AD need to be considered carefully. A different distribution of Akt and phospho-Akt was detected in AD temporal cortex neurons compared with control neurons, with increased levels of active phosphorylated-Akt in particulate fractions, and significant decreases in Akt levels in AD cytosolic fractions, causing increased activation of Akt (phosphorylated-Akt/total Akt ratio) in AD. In concordance, significant increases in the levels of phosphorylation of total Akt substrates, including: GSK3ßSer9, tauSer214, mTORSer2448, and decreased levels of the Akt target, p27kip1, were found in AD temporal cortex compared with controls. A significant loss and altered distribution of the major negative regulator of Akt, PTEN (phosphatase and tensin homologue deleted on chromosome 10), was also detected in AD neurons. Loss of phosphorylated-Akt and PTEN-containing neurons were found in hippocampal CA1 at end stages of AD. Taken together, these results support a potential role for aberrant control of Akt and PTEN signalling in AD.
机译:研究表明,磷酸肌醇3-激酶-Akt的激活可预防阿尔茨海默氏病(AD)中神经元细胞的死亡。然而,在这里,我们提供了增加的Akt激活和AD脑中关键性Akt底物的过度磷酸化的证据,这与AD的发病机理有关,这表明需要仔细考虑旨在激活AD途径的治疗。与对照神经元相比,在AD颞叶皮层神经元中检测到Akt和磷酸化Akt的不同分布,颗粒级分中活性磷酸化Akt的水平增加,而在AD胞质级分中Akt水平显着降低,导致Akt的激活增加(磷酸化的Akt /总Akt比例)。与之相一致,在AD颞叶皮质中,与对照相比,总的Akt底物的磷酸化水平显着增加,包括:GSK3ßSer9,tauSer214,mTORSer2448,Akt靶标p27kip1的水平降低。在AD神经元中也检测到Akt的主要负调节剂PTEN(在10号染色体上缺失的磷酸酶和张力蛋白同源物)的显着丧失和分布的改变。在AD末期海马CA1中发现了磷酸化的Akt和含PTEN的神经元丢失。综上所述,这些结果支持在AD中异常控制Akt和PTEN信号传导的潜在作用。

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