A disintegrin-metalloproteinase prevents amyloid plaque formation and hippocampal defects in an Alzheimer disease mouse model

被引:511
作者
Postina, R
Schroeder, A
Dewachter, I
Bohl, J
Schmitt, U
Kojro, E
Prinzen, C
Endres, K
Hiemke, C
Blessing, M
Flamez, P
Dequenne, A
Godaux, E
van Leuven, F
Fahrenholz, F
机构
[1] Univ Mainz, Inst Biochem, D-55099 Mainz, Germany
[2] Katholieke Univ Leuven, Expt Genet Grp, Louvain, Belgium
[3] Univ Mainz, Dept Neuropathol, D-6500 Mainz, Germany
[4] Univ Mainz, Dept Psychiat, D-6500 Mainz, Germany
[5] Univ Mainz, Dept Pathophysiol, D-6500 Mainz, Germany
[6] Univ Leipzig, Ctr Biotechnol & Biomed, BBZ, Leipzig, Germany
[7] Univ Mons, Neurosci Lab, B-7000 Mons, Belgium
关键词
D O I
10.1172/JCI200420864
中图分类号
R-3 [医学研究方法]; R3 [基础医学];
学科分类号
1001 ;
摘要
Alzheimer disease (AD) is characterized by excessive deposition of amyloid beta-peptides (Abeta peptides) in the brain. In the nonamyloidogenic pathway, the amyloid precursor protein (APP) is cleaved by the alpha-secretase within the Abeta peptide sequence. Proteinases of the ADAM family (a disintegrin and metalloproteinase) are the main candidates as physiologically relevant alpha-secretases, but early lethality of knockout animals prevented a detailed analysis in neuronal cells. To overcome this restriction, we have generated transgenic mice that overexpress either ADAM10 or a catalytically inactive ADAM10 mutant. In this report we show that a moderate neuronal overexpression of ADAM10 in mice transgenic for human APP([V7171]) increased the secretion of the neurotrophic soluble a-secretase-released N-terminal APP domain (APPsalpha), reduced the formation of Abeta peptides, and prevented their deposition in plaques. Functionally, impaired long-term potentiation and cognitive deficits were alleviated. Expression of mutant catalytically inactive ADAM10 led to an enhancement of the number and size of amyloid plaques in the brains of double-transgenic mice. The results provide the first in vivo evidence for a proteinase of the ADAM family as an a-secretase of APP, reveal activation of ADAM 10 as a promising therapeutic target, and support the hypothesis that a decrease in alpha-secretase activity contributes to the development of AD.
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收藏
页码:1456 / 1464
页数:9
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