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毛细管电泳作为一种片段筛选工具,用于验证显色测定法的命中结果:在 FXIIa 中的应用。

Capillary electrophoresis as a fragment screening tool to cross-validate hits from chromogenic assay: Application to FXIIa.

机构信息

Namur Medicine & Drug Innovation Center (NAMEDIC - NARILIS), University of Namur, Rue de Bruxelles 61, 5000, Namur, Belgium; Laboratory for the Analysis of Medicines (LAM), Department of Pharmacy, CIRM, University of Liege, Place du 20 Août 7, 4000, Liège, Belgium.

Laboratory for the Analysis of Medicines (LAM), Department of Pharmacy, CIRM, University of Liege, Place du 20 Août 7, 4000, Liège, Belgium.

出版信息

Talanta. 2021 May 1;226:122163. doi: 10.1016/j.talanta.2021.122163. Epub 2021 Feb 2.

Abstract

In this study, a partial-filling affinity capillary electrophoresis (pf-ACE) method was developed for the cross-validation of fragment hits revealed by chromogenic factor XIIa (FXIIa) assay. Chromogenic assay produces false positives, mainly due to spectrophotometric interferences and sample purity issues. pf-ACE was selected as counter-screening technology because of its separative character and the fact that the target does not have to be attached or tagged. The effects of protein plug length, applied voltage and composition of the running buffer were examined and optimized. Detection limit in terms of dissociation constant was estimated at 400 μM. The affinity evaluation was performed close to physiological conditions (pH 7.4, ionic strength 0.13 mol L) in a poly (ethylene oxide)-coated capillary of 75 μm internal diameter x 33 cm length with an applied voltage of 3 kV. This method uncovered chromogenic assay's false positives due to zinc contamination. Moreover, pf-ACE supported the evaluation of compounds absorbing at 405 nm.

摘要

在这项研究中,开发了一种部分填充亲和毛细管电泳(pf-ACE)方法,用于对显色因子 XIIa(FXIIa)测定法揭示的片段命中进行交叉验证。显色测定法会产生假阳性,主要是由于分光光度干扰和样品纯度问题。由于 pf-ACE 具有分离特性,并且目标物不必附着或标记,因此选择其作为反向筛选技术。研究了并优化了蛋白质塞长度、施加电压和运行缓冲液组成的影响。以解离常数表示,检测限估计为 400 μM。在接近生理条件(pH 7.4,离子强度 0.13 mol L)下,在 75 μm 内径 x 33 cm 长度的涂有聚(氧化乙烯)的毛细管中进行亲和性评估,施加 3 kV 的电压。该方法揭示了由于锌污染导致显色测定法的假阳性。此外,pf-ACE 支持对在 405 nm 处吸收的化合物进行评估。

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