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新型 neoepitope 抗体在修饰的淀粉样前体蛋白衍生β-分泌酶产物中的药理学应用。

Pharmacological applications of a novel neoepitope antibody to a modified amyloid precursor protein-derived beta-secretase product.

机构信息

Department of Neurology, Merck Research Laboratory, West Point, PA 19486, USA.

出版信息

Protein Cell. 2011 Jul;2(7):573-84. doi: 10.1007/s13238-011-1076-4. Epub 2011 Aug 6.

Abstract

We have previously described a novel artificial NFEV β-secretase (BACE1) cleavage site, which when introduced into the amyloid-β precursor protein (APP), significantly enhances APP cleavage by BACE1 in in vitro and cellular assays. In this study, we describe the identification and characterization of a single chain fragment of variable region (scFv), specific to the EV neo-epitope derived from BACE1 cleavage of the NFEV-containing peptide, and its conversion to IgG1. Both the scFv displayed on phage and EV-IgG1 show exquisite specificity for binding to the EV neoepitope without cross-reactivity to other NFEV containing peptides or WT-APP KMDA cleavage products. EV-IgG1 can detect as little as 0.3 nmol/L of the EV peptide. EV-IgG1 antibody was purified, conjugated with alkaline phosphatase and utilized in various biological assays. In the BACE1 enzymatic assay using NFEV substrate, a BACE1 inhibitor MRK-3 inhibited cleavage with an IC(50) of 2.4 nmol/L with excellent reproducibility. In an APP_NFEV stable SH-SY5Y cellular assay, the EC(50) for inhibition of EV-Aβ peptide secretion with MRK-3 was 236 nmol/L, consistent with values derived using an EV polyclonal antibody. In an APP_NFEV knock-in mouse model, both Aβ_EV40 and Aβ_EV42 peptides in brain homogenate showed excellent gene dosage dependence. In conclusion, the EV neoepitope specific monoclonal antibody is a novel reagent for BACE1 inhibitor discovery for both in vitro, cellular screening assays and in vivo biochemical studies. The methods described herein are generally applicable to novel synthetic substrates and enzyme targets to enable robust screening platforms for enzyme inhibitors.

摘要

我们之前描述了一种新型的人工 NFEV β-分泌酶(BACE1)切割位点,当将其引入淀粉样前体蛋白(APP)中时,可显著增强 BACE1 在体外和细胞测定中对 APP 的切割。在这项研究中,我们描述了一种单链可变区片段(scFv)的鉴定和特性,该 scFv 特异性针对源自含 NFEV 肽的 BACE1 切割的 EV 新表位,并且将其转化为 IgG1。噬菌体展示的 scFv 和 EV-IgG1 均对 EV 新表位具有极高的特异性,与其他含 NFEV 肽或 WT-APP KMDA 切割产物无交叉反应性。EV-IgG1 可以检测到低至 0.3 nmol/L 的 EV 肽。EV-IgG1 抗体被纯化、与碱性磷酸酶缀合,并用于各种生物学测定。在使用 NFEV 底物的 BACE1 酶测定中,BACE1 抑制剂 MRK-3 以 2.4 nmol/L 的 IC50 抑制切割,具有出色的重现性。在 APP_NFEV 稳定的 SH-SY5Y 细胞测定中,MRK-3 抑制 EV-Aβ 肽分泌的 EC50 为 236 nmol/L,与使用 EV 多克隆抗体得出的值一致。在 APP_NFEV 基因敲入小鼠模型中,脑匀浆中的 Aβ_EV40 和 Aβ_EV42 肽均表现出出色的基因剂量依赖性。总之,EV 新表位特异性单克隆抗体是用于 BACE1 抑制剂发现的新型试剂,可用于体外、细胞筛选测定和体内生化研究。本文所述的方法通常适用于新型合成底物和酶靶标,可用于酶抑制剂的强大筛选平台。

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