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Soluble Beta-Amyloid Peptides but Not Insoluble Fibrils Have Specific Effect on Neuronal MicroRNA Expression

机译:可溶性β-淀粉样蛋白肽而不是不溶性原纤维对神经元MicroRNA表达具有特定作用

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摘要

Recent studies indicate that soluble β-amyloid (sAβ) oligomers, rather than their fibrillar aggregates, contribute to the pathogenesis of Alzheimer's disease (AD), though the mechanisms of their neurotoxicity are still elusive. Here, we demonstrate that sAβ derived from 7PA2 cells exert a much stronger effect on the regulation of a set of functionally validated microRNAs (miRNAs) in primary cultured neurons than the synthetic insoluble Aβ fibrils (fAβ). Synthetic sAβ peptides at a higher concentration present comparable effect on these miRNAs in our neuronal model. Further, the sAβ-induced miR-134, miR-145 and miR-210 expressions are fully reversed by two selective N-methyl-d-aspartate (NMDA) receptor inhibitors, but are neither reversed by insulin nor by forskolin, suggesting an NMDA receptor-dependent, rather than PI3K/AKT or PKA/CREB signaling dependent regulatory mechanism. In addition, the repression of miR-107 expression by the sAβ containing 7PA2 CM is likely involved multiple mechanisms and multiple players including NMDA receptor, N-terminally truncated Aβ and reactive oxygen species (ROS).
机译:最近的研究表明,尽管其神经毒性机制尚不清楚,但可溶性β-淀粉样蛋白(sAβ)低聚物而不是其纤维状聚集体有助于阿尔茨海默氏病(AD)的发病机理。在这里,我们证明源自7PA2细胞的sAβ对原代培养的神经元中一组经过功能验证的microRNA(miRNA)的调节作用要比合成的不溶性Aβ原纤维(fAβ)强得多。在我们的神经元模型中,较高浓度的合成sAβ肽对这些miRNA表现出可比的效果。此外,sAβ诱导的miR-134,miR-145和miR-210的表达被两种选择性的N-甲基-d-天冬氨酸(NMDA)受体抑制剂完全逆转,但胰岛素或福司高林均未逆转,提示为NMDA依赖受体,而不是依赖PI3K / AKT或PKA / CREB信号的调节机制。此外,含7PA2 CM的sAβ对miR-107表达的抑制可能涉及多种机制和多种因素,包括NMDA受体,N末端截短的Aβ和活性氧(ROS)。

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