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基于氟核磁共振的细胞膜提取物筛选。

Fluorine NMR-based screening on cell membrane extracts.

作者信息

Veronesi Marina, Romeo Elisa, Lambruschini Chiara, Piomelli Daniele, Bandiera Tiziano, Scarpelli Rita, Garau Gianpiero, Dalvit Claudio

机构信息

Department of Drug Discovery & Development, Fondazione Istituto Italiano di Tecnologia, Via Morego 30, 16163 Genoa (Italy).

出版信息

ChemMedChem. 2014 Feb;9(2):286-9. doi: 10.1002/cmdc.201300438. Epub 2013 Dec 11.

Abstract

The possibility of measuring the action of inhibitors of specific enzymatic reactions in intact cells, cell lysates or membrane preparations represents a major advance in the lead discovery process. Despite the relevance of assaying in physiological conditions, only a small number of biophysical techniques, often requiring complex set-up, are applicable to these sample types. Here, we demonstrate the first application of n-fluorine atoms for biochemical screening (n-FABS), a homogeneous and versatile assay based on (19) F NMR spectroscopy, to the detection of high- and low-affinity inhibitors of a membrane enzyme in cell extracts and determination of their IC50 values. Our approach can allow the discovery of novel binding fragments against targets known to be difficult to purify or where membrane-association is required for activity. These results pave the way for future applications of the methodology to these relevant and complex biological systems.

摘要

在完整细胞、细胞裂解物或膜制剂中测量特定酶促反应抑制剂作用的可能性,代表了先导化合物发现过程中的一项重大进展。尽管在生理条件下进行测定具有重要意义,但仅有少数生物物理技术(通常需要复杂的设置)适用于这些样品类型。在此,我们展示了n-氟原子用于生化筛选(n-FABS)的首次应用,这是一种基于¹⁹F核磁共振光谱的均相通用检测方法,用于检测细胞提取物中膜酶的高亲和力和低亲和力抑制剂,并确定其半数抑制浓度(IC50)值。我们的方法能够发现针对已知难以纯化的靶点或活性需要膜结合的新型结合片段。这些结果为该方法在这些相关且复杂的生物系统中的未来应用铺平了道路。

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