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载脂蛋白 Aβ 清除蛋白转甲状腺素,与脑啡肽酶一样,受到淀粉样前体蛋白细胞内结构域的表观遗传调控。

The Aβ-clearance protein transthyretin, like neprilysin, is epigenetically regulated by the amyloid precursor protein intracellular domain.

机构信息

School of Molecular & Cellular Biology, Faculty of Biological Sciences, University of Leeds, Leeds, UK.

出版信息

J Neurochem. 2014 Aug;130(3):419-31. doi: 10.1111/jnc.12680. Epub 2014 Mar 12.

Abstract

Proteolytic cleavage of the amyloid precursor protein (APP) by the successive actions of β- and γ-secretases generates several biologically active metabolites including the amyloid β-peptide (Aβ) and the APP intracellular domain (AICD). By analogy with the Notch signalling pathway, AICD has been proposed to play a role in transcriptional regulation. Among the cohort of genes regulated by AICD is the Aβ-degrading enzyme neprilysin (NEP). AICD binds to the NEP promoter causing transcriptional activation by competitive replacement with histone deacetylases (HDACs) leading to increased levels of NEP activity and hence increased Aβ clearance. We now show that the Aβ-clearance protein transthyretin (TTR) is also epigenetically up-regulated by AICD. Like NEP regulation, AICD derived specifically from the neuronal APP isoform, APP695 , binds directly to the TTR promoter displacing HDAC1 and HDAC3. Cell treatment with the tyrosine kinase inhibitor Gleevec (imatinib) or with the alkalizing agent NH4 Cl causes an accumulation of 'functional' AICD capable of up-regulating both TTR and NEP, leading to a reduction in total cellular Aβ levels. Pharmacological regulation of both NEP and TTR might represent a viable therapeutic target in Alzheimer's disease.

摘要

淀粉样前体蛋白(APP)通过β-和γ-分泌酶的连续作用被蛋白水解切割,产生几种生物活性代谢物,包括淀粉样β肽(Aβ)和 APP 细胞内结构域(AICD)。通过与 Notch 信号通路类比,AICD 被提出在转录调控中发挥作用。在受 AICD 调控的基因簇中,有 Aβ 降解酶神经肽酶(NEP)。AICD 与 NEP 启动子结合,通过与组蛋白去乙酰化酶(HDACs)的竞争性取代引起转录激活,导致 NEP 活性增加,从而增加 Aβ 的清除。我们现在表明,Aβ 清除蛋白转甲状腺素蛋白(TTR)也被 AICD 表观遗传地上调。与 NEP 调节一样,源自神经元 APP 同工型 APP695 的 AICD 可直接与 TTR 启动子结合,取代 HDAC1 和 HDAC3。用酪氨酸激酶抑制剂格列卫(伊马替尼)或碱性剂氯化铵处理细胞会导致“功能性”AICD 积累,能够上调 TTR 和 NEP,从而降低总细胞 Aβ 水平。调节 NEP 和 TTR 的药理学可能代表阿尔茨海默病的可行治疗靶点。

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