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锌和铜对γ-分泌酶处理淀粉样前体蛋白及淀粉样β肽生成的调节作用存在差异。

Zinc and Copper Differentially Modulate Amyloid Precursor Protein Processing by γ-Secretase and Amyloid-β Peptide Production.

作者信息

Gerber Hermeto, Wu Fang, Dimitrov Mitko, Garcia Osuna Guillermo M, Fraering Patrick C

机构信息

From the Foundation Eclosion, CH-1228 Plan-Les-Ouates, and Campus Biotech Innovation Park, CH-1202 Geneva, Switzerland.

the Brain Mind Institute and School of Life Sciences, Swiss Federal Institute of Technology (EPFL), CH-1015 Lausanne, Switzerland.

出版信息

J Biol Chem. 2017 Mar 3;292(9):3751-3767. doi: 10.1074/jbc.M116.754101. Epub 2017 Jan 17.

Abstract

Recent evidence suggests involvement of biometal homeostasis in the pathological mechanisms in Alzheimer's disease (AD). For example, increased intracellular copper or zinc has been linked to a reduction in secreted levels of the AD-causing amyloid-β peptide (Aβ). However, little is known about whether these biometals modulate the generation of Aβ. In the present study we demonstrate in both cell-free and cell-based assays that zinc and copper regulate Aβ production by distinct molecular mechanisms affecting the processing by γ-secretase of its Aβ precursor protein substrate APP-C99. We found that Zn induces APP-C99 dimerization, which prevents its cleavage by γ-secretase and Aβ production, with an IC value of 15 μm Importantly, at this concentration, Zn also drastically raised the production of the aggregation-prone Aβ43 found in the senile plaques of AD brains and elevated the Aβ43:Aβ40 ratio, a promising biomarker for neurotoxicity and AD. We further demonstrate that the APP-C99 histidine residues His-6, His-13, and His-14 control the Zn-dependent APP-C99 dimerization and inhibition of Aβ production, whereas the increased Aβ43:Aβ40 ratio is substrate dimerization-independent and involves the known Zn binding lysine Lys-28 residue that orientates the APP-C99 transmembrane domain within the lipid bilayer. Unlike zinc, copper inhibited Aβ production by directly targeting the subunits presenilin and nicastrin in the γ-secretase complex. Altogether, our data demonstrate that zinc and copper differentially modulate Aβ production. They further suggest that dimerization of APP-C99 or the specific targeting of individual residues regulating the production of the long, toxic Aβ species, may offer two therapeutic strategies for preventing AD.

摘要

最近的证据表明生物金属稳态参与了阿尔茨海默病(AD)的病理机制。例如,细胞内铜或锌的增加与导致AD的淀粉样β肽(Aβ)分泌水平降低有关。然而,关于这些生物金属是否调节Aβ的生成知之甚少。在本研究中,我们在无细胞和基于细胞的实验中均证明,锌和铜通过影响其Aβ前体蛋白底物APP-C99的γ-分泌酶加工的不同分子机制来调节Aβ的产生。我们发现锌诱导APP-C99二聚化,这会阻止其被γ-分泌酶切割以及Aβ的产生,其IC值为15μm。重要的是,在此浓度下,锌还大幅提高了在AD脑老年斑中发现的易于聚集的Aβ43的产生,并提高了Aβ43:Aβ40的比率,这是一种有前景的神经毒性和AD生物标志物。我们进一步证明,APP-C99的组氨酸残基His-6、His-13和His-14控制锌依赖性APP-C99二聚化以及对Aβ产生的抑制,而Aβ43:Aβ40比率的增加与底物二聚化无关,并且涉及已知的锌结合赖氨酸Lys-28残基,该残基在脂质双层中定位APP-C99跨膜结构域。与锌不同,铜通过直接靶向γ-分泌酶复合物中的早老素和尼卡斯特林亚基来抑制Aβ的产生。总之,我们的数据表明锌和铜对Aβ产生的调节方式不同。它们还表明,APP-C99的二聚化或调节长的、有毒Aβ物种产生的单个残基的特异性靶向,可能为预防AD提供两种治疗策略。

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