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平分型N-乙酰葡糖胺修饰在氧化应激条件下稳定β-分泌酶1蛋白。

Bisecting GlcNAc modification stabilizes BACE1 protein under oxidative stress conditions.

作者信息

Kizuka Yasuhiko, Nakano Miyako, Kitazume Shinobu, Saito Takashi, Saido Takaomi C, Taniguchi Naoyuki

机构信息

Disease Glycomics Team, Systems Glycobiology Research Group, RIKEN-Max Planck Joint Research Centre for Systems Chemical Biology, Global Research Cluster, RIKEN, 2-1 Hirosawa, Wako, Saitama 351-0198, Japan.

Graduate School of Advanced Sciences of Matter, Hiroshima University, 1-3-1 Kagamiyama, Higashihiroshima, Hiroshima 739-8530, Japan.

出版信息

Biochem J. 2016 Jan 1;473(1):21-30. doi: 10.1042/BJ20150607. Epub 2015 Oct 14.

Abstract

β-Site amyloid precursor protein-cleaving enzyme-1 (BACE1) is a protease essential for amyloid-β (Aβ) production in Alzheimer's disease (AD). BACE1 protein is known to be up-regulated by oxidative stress-inducing stimuli but the mechanism for this up-regulation still needs to be clarified. We have recently found that BACE1 is modified with bisecting N-acetylglucosamine (GlcNAc) by N-acetylglucosaminyltransferase-III (GnT-III, encoded by the Mgat3 gene) and that GnT-III deficiency reduces Aβ-plaque formation in the brain by accelerating lysosomal degradation of BACE1. Therefore, we hypothesized that bisecting GlcNAc would stabilize BACE1 protein on oxidative stress. In the present study, we first show that Aβ deposition in the mouse brain induces oxidative stress, together with an increase in levels of BACE1 and bisecting GlcNAc. Furthermore, prooxidant treatment induces expression of BACE1 protein in wild-type mouse embryonic fibroblasts (MEFs), whereas it reduces BACE1 protein in GnT-III (Mgat3) knock-out MEFs by accelerating lysosomal degradation of BACE1. We purified BACE1 from Neuro2A cells and performed LC/ESI/MS analysis for BACE1-derived glycopeptides and mapped bisecting GlcNAc-modified sites on BACE1. Point mutations at two N-glycosylation sites (Asn(153) and Asn(223)) abolish the bisecting GlcNAc modification on BACE1. These mutations almost cancelled the enhanced BACE1 degradation seen in Mgat3(-/-) MEFs, indicating that bisecting GlcNAc on BACE1 indeed regulates its degradation. Finally, we show that traumatic brain injury-induced BACE1 up-regulation is significantly suppressed in the Mgat3(-/-) brain. These results highlight the role of bisecting GlcNAc in oxidative stress-induced BACE1 expression and offer a novel glycan-targeted strategy for suppressing Aβ generation.

摘要

β-位点淀粉样前体蛋白裂解酶1(BACE1)是阿尔茨海默病(AD)中淀粉样β蛋白(Aβ)产生所必需的一种蛋白酶。已知BACE1蛋白会被氧化应激诱导刺激上调,但其上调机制仍有待阐明。我们最近发现,BACE1会被N-乙酰葡糖胺转移酶III(GnT-III,由Mgat3基因编码)用平分型N-乙酰葡糖胺(GlcNAc)修饰,且GnT-III缺陷通过加速BACE1的溶酶体降解来减少大脑中Aβ斑块的形成。因此,我们推测平分型GlcNAc会在氧化应激时稳定BACE1蛋白。在本研究中,我们首先表明,小鼠大脑中的Aβ沉积会诱导氧化应激,同时BACE1水平和平分型GlcNAc水平会增加。此外,促氧化剂处理会在野生型小鼠胚胎成纤维细胞(MEF)中诱导BACE1蛋白表达,而在GnT-III(Mgat3)基因敲除的MEF中,它会通过加速BACE1的溶酶体降解来降低BACE1蛋白水平。我们从Neuro2A细胞中纯化了BACE1,并对BACE1衍生的糖肽进行了液相色谱/电喷雾电离/质谱分析,绘制了BACE1上平分型GlcNAc修饰位点。两个N-糖基化位点(Asn(153)和Asn(223))的点突变消除了BACE1上的平分型GlcNAc修饰。这些突变几乎消除了在Mgat3(-/-) MEF中观察到的BACE1增强降解,表明BACE1上的平分型GlcNAc确实调节其降解。最后,我们表明,创伤性脑损伤诱导的BACE1上调在Mgat3(-/-)大脑中受到显著抑制。这些结果突出了平分型GlcNAc在氧化应激诱导的BACE1表达中的作用,并为抑制Aβ生成提供了一种新的以聚糖为靶点的策略。

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