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首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >Notch signaling proteins HES-1 and Hey-1 bind to insulin degrading enzyme (IDE) proximal promoter and repress its transcription and activity: Implications for cellular Aβ metabolism
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Notch signaling proteins HES-1 and Hey-1 bind to insulin degrading enzyme (IDE) proximal promoter and repress its transcription and activity: Implications for cellular Aβ metabolism

机译:Notch信号蛋白HES-1和Hey-1与胰岛素降解酶(IDE)近端启动子结合并抑制其转录和活性:对细胞Aβ代谢的影响

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摘要

Cerebral amyloid β (Aβ) accumulation is pathogenically associated with sporadic Alzheimer's disease (SAD). BACE-1 is involved in Aβ generation while insulin-degrading enzyme (IDE) partakes in Aβ proteolytic clearance. Vulnerable regions in AD brains show increased BACE-1 protein levels and enzymatic activity while the opposite occurs with IDE. Another common feature in SAD brains is Notch1 overexpression. Here we demonstrate an increase in mRNA levels of Hey-1, a Notch target gene, and a decrease of IDE transcripts in the hippocampus of SAD brains as compared to controls. Transient transfection of Notch intracellular domain (NICD) in N2aSW cells, mouse neuroblastoma cells (N2a) stably expressing human amyloid precursor protein (APP) Swedish mutation, reduce IDE mRNA levels, promoting extracellular Aβ accumulation. Also, NICD, HES-1 and Hey-1 overexpression result in decreased IDE proximal promoter activity. This effect was mediated by 2 functional sites located at - 379/- 372 and - 310. - 303 from the first translation start site in the - 575/- 19 (556. bp) fragment of IDE proximal promoter. By site-directed mutagenesis of the IDE promoter region we reverted the inhibitory effect mediated by NICD transfection suggesting that these sites are indeed responsible for the Notch-mediated inhibition of the IDE gene expression. Intracranial injection of the Notch ligand JAG-1 in Tg2576 mice, expressing the Swedish mutation in human APP, induced overexpression of HES-1 and Hey-1 and reduction of IDE mRNA levels, respectively. Our results support our theory that a Notch-dependent IDE transcriptional modulation may impact on Aβ metabolism providing a functional link between Notch signaling and the amyloidogenic pathway in SAD.
机译:脑淀粉样蛋白β(Aβ)的积累与散发性阿尔茨海默氏病(SAD)病原性相关。 BACE-1参​​与Aβ的产生,而胰岛素降解酶(IDE)参与Aβ的蛋白水解清除。 AD脑中的脆弱区域显示BACE-1蛋白水平和酶活性增加,而IDE则相反。 SAD大脑中的另一个常见特征是Notch1过表达。在这里,我们证明了与对照相比,SAD脑海马中Hey-1(一种Notch靶基因)的mRNA水平增加,而IDE转录本减少。在N2aSW细胞,小鼠成神经细胞瘤细胞(N2a)中稳定表达人淀粉样前体蛋白(APP)瑞典突变的Notch细胞内结构域(NICD)的瞬时转染,降低IDE mRNA水平,促进细胞外Aβ的积累。同样,NICD,HES-1和Hey-1的过表达导致IDE近端启动子活性降低。此作用由位于IDE近端启动子-575 /-19(556. bp)片段中第一个翻译起始位点-379 /-372和-310.-303的2个功能位点介导。通过IDE启动子区域的定点诱变,我们恢复了NICD转染介导的抑制作用,表明这些位点确实负责Notch介导的IDE基因表达的抑制。在Tg2576小鼠中颅内注射Notch配体JAG-1,表达人APP中的瑞典突变,分别诱导HES-1和Hey-1的过表达以及IDE mRNA水平的降低。我们的结果支持了我们的理论,即Notch依赖的IDE转录调控可能影响Aβ代谢,从而在Notch信号和SAD中的淀粉样蛋白生成途径之间提供功能联系。

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