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BACE2 通过巨自噬溶酶体途径降解。

BACE2 degradation mediated by the macroautophagy-lysosome pathway.

机构信息

Townsend Family Laboratories, Department of Psychiatry, Brain Research Center, Graduate Program in Neuroscience, The University of British Columbia, Vancouver, BC, Canada.

出版信息

Eur J Neurosci. 2013 Jun;37(12):1970-7. doi: 10.1111/ejn.12204.

Abstract

Neuritic plaque is the pathological hallmark in Alzheimer's disease (AD). Amyloid-β protein (Aβ), the central component of neuritic plaques, is generated from amyloid-β precursor protein (APP) by β-site APP cleaving enzyme 1 (BACE1) and γ-secretase. β-site APP cleaving enzyme 2 (BACE2), a homolog of BACE1, functions differently from BACE1 in APP processing. BACE1 is the β-secretase essential for Aβ production, and BACE2, a θ-secretase, cleaves APP within the Aβ domain, preventing Aβ production. Elucidation of the mechanism underlying BACE2 degradation is important for defining its biological features and its potential role in Alzheimer's disease drug development. In this report we first showed that the half-life of BACE2 is approximately 20 h. Lysosomal inhibition increased BACE2 protein levels whereas proteasomal inhibition had no effect on BACE2 protein expression. Furthermore, we identified that macroautophagy mediated BACE2 degradation. Finally, we showed that lysosomal inhibition increased BACE2 cleavage of APP. Taken together, our in vitro study showed that BACE2 is degraded through the macrophagy-lysosome pathway and that lysosomal inhibition affects BACE2 processing of APP. Modulation of BACE2 degradation via the lysosomal pathway could be a new target for AD drug development.

摘要

神经突斑是阿尔茨海默病(AD)的病理学标志。淀粉样蛋白-β(Aβ)是神经突斑的核心成分,由β-位点 APP 裂解酶 1(BACE1)和γ-分泌酶从淀粉样前体蛋白(APP)中产生。BACE2 是 BACE1 的同源物,在 APP 加工中与 BACE1 不同。BACE1 是产生 Aβ所必需的β-分泌酶,而 BACE2 是θ-分泌酶,在 Aβ 域内切割 APP,从而阻止 Aβ的产生。阐明 BACE2 降解的机制对于确定其生物学特征及其在阿尔茨海默病药物开发中的潜在作用非常重要。在本报告中,我们首先表明 BACE2 的半衰期约为 20 小时。溶酶体抑制增加了 BACE2 蛋白水平,而蛋白酶体抑制对 BACE2 蛋白表达没有影响。此外,我们确定了巨自噬介导了 BACE2 的降解。最后,我们表明溶酶体抑制增加了 BACE2 对 APP 的切割。总之,我们的体外研究表明,BACE2 通过巨自噬-溶酶体途径降解,溶酶体抑制影响 BACE2 对 APP 的加工。通过溶酶体途径调节 BACE2 的降解可能成为 AD 药物开发的新靶点。

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