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Amyloid β42 peptide is toxic to non-neural cells in?Drosophila?yielding a characteristic metabolite profile and the effect can be suppressed by PI3K

机译:β42淀粉样肽对果蝇中的非神经细胞有毒,具有特征性的代谢产物,PI3K可以抑制这种作用

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The human Aβ42 peptide is associated with Alzheimer's disease through its deleterious effects in neurons. Expressing the human peptide in adult?Drosophila?in a tissue- and time-controlled manner, we show that Aβ42 is also toxic in non-neural cells, neurosecretory and epithelial cell types in particular. This form of toxicity includes the aberrant signaling by Wingless morphogen leading to the eventual activation of Caspase 3. Preventing Caspase 3 activation by means of p53 keeps epithelial cells from elimination but maintains the Aβ42 toxicity yielding more severe deleterious effects to the organism. Metabolic profiling by nuclear magnetic resonance (NMR) of adult flies at selected ages post Aβ42 expression onset reveals characteristic changes in metabolites as early markers of the pathological process. All morphological and most metabolic features of Aβ42 toxicity can be suppressed by the joint overexpression of PI3K.
机译:人Aβ42肽通过其对神经元的有害作用而与阿尔茨海默氏病相关。以组织和时间控制的方式在成人果蝇中表达人肽,我们证明Aβ42在非神经细胞,尤其是神经分泌和上皮细胞类型中也有毒性。这种形式的毒性包括Wingless morphogen产生的异常信号传导,最终导致Caspase 3活化。通过p53阻止Caspase 3活化可阻止上皮细胞被清除,但仍维持Aβ42毒性,从而对生物体产生更严重的有害作用。 Aβ42表达发作后选定年龄的成年果蝇的核磁共振(NMR)代谢谱分析揭示了代谢物的特征性变化,是病理过程的早期标志物。 PI3K的联合过表达可以抑制Aβ42毒性的所有形态和大多数代谢特征。

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