Inhibition of β-Secretase in Vivo via Antibody Binding to Unique Loops (D and F) of BACE1

被引:43
作者
Zhou, Lujia [1 ,2 ]
Chavez-Gutierrez, Lucia [1 ,2 ]
Bockstael, Katrijn [1 ,2 ]
Sannerud, Ragna [1 ,2 ]
Annaert, Wim [1 ,2 ]
May, Patrick C. [3 ]
Karran, Eric [4 ]
De Strooper, Bart [1 ,2 ]
机构
[1] KULeuven, Dept Mol & Dev Genet, VIB, B-3000 Louvain, Belgium
[2] KULeuven, Ctr Human Genet, B-3000 Louvain, Belgium
[3] Eli Lilly & Co, Lilly Res Labs, Neurosci Discovery Res, Indianapolis, IN 46285 USA
[4] Johnson & Johnson Pharmaceut Res & Dev, B-2340 Beerse, Belgium
关键词
AMYLOID-PRECURSOR-PROTEIN; BRAIN DRUG-DELIVERY; ALZHEIMERS-DISEASE; A-BETA; MOUSE MODEL; HIPPOCAMPAL-NEURONS; NERVOUS-SYSTEM; MICE; SITE; SPECIFICITY;
D O I
10.1074/jbc.M110.194860
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
beta-Secretase (BACE1) is an attractive drug target for Alzheimer disease. However, the design of clinical useful inhibitors targeting its active site has been extremely challenging. To identify alternative drug targeting sites we have generated a panel of BACE1 monoclonal antibodies (mAbs) that interfere with BACE1 activity in various assays and determined their binding epitopes. mAb 1A11 inhibited BACE1 in vitro using a large APP sequence based substrate (IC50 similar to 0.76 nM), in primary neurons (EC50 similar to 1.8 nM), and in mouse brain after stereotactic injection. Paradoxically, mAb 1A11 increased BACE1 activity in vitro when a short synthetic peptide was used as substrate, indicating that mAb 1A11 does not occupy the active-site. Epitope mapping revealed that mAb 1A11 binds to adjacent loops D and F, which together with nearby helix A, distinguishes BACE1 from other aspartyl proteases. Interestingly, mutagenesis of loop F and helix A decreased or increased BACE1 activity, identifying them as enzymatic regulatory elements and as potential alternative sites for inhibitor design. In contrast, mAb 5G7 was a potent BACE1 inhibitor in cell-free enzymatic assays (IC50 similar to 0.47 nM) but displayed no inhibitory effect in primary neurons. Its epitope, a surface helix 299-312, is inaccessible in membrane-anchored BACE1. Remarkably, mutagenesis of helix 299-312 strongly reduced BACE1 ectodomain shedding, suggesting that this helix plays a role in BACE1 cellular biology. In conclusion, this study generated highly selective and potent BACE1 inhibitory mAbs, which recognize unique structural and functional elements in BACE1, and uncovered interesting alternative sites on BACE1 that could become targets for drug development.
引用
收藏
页码:8677 / 8687
页数:11
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