Tengel Tobias, Fex Tomas, Emtenas Hans, Almqvist Fredrik, Sethson Ingmar, Kihlberg Jan
Organic Chemistry, Department of Chemistry, Umea University, SE-901 87 Umea, Sweden.
Org Biomol Chem. 2004 Mar 7;2(5):725-31. doi: 10.1039/b313166a. Epub 2004 Feb 3.
Identification of compounds from chemical libraries that bind to macromolecules by use of NMR spectroscopy has gained increasing importance during recent years. A simple methodology based on (19)F NMR spectroscopy for the screening of ligands that bind to proteins, which also provides qualitative information about relative binding strengths and the presence of multiple binding sites, is presented here. A library of fluorinated compounds was assembled and investigated for binding to the two bacterial chaperones PapD and FimC, and also to human serum albumin (HSA). It was found that library members which are bound to a target protein could be identified directly from line broadening and/or induced chemical shifts in a single, one-dimensional (19)F NMR spectrum. The results obtained for binding to PapD using (19)F NMR spectroscopy agreed well with independent studies based on surface plasmon resonance, providing support for the versatility and accuracy of the technique. When the library was titrated to a solution of PapD chemical shift and linewidth changes were observed with increasing ligand concentration, which indicated the presence of several binding sites on PapD and enabled the assessment of relative binding strengths for the different ligands. Screening by (19)F NMR spectroscopy should thus be a valuable addition to existing NMR techniques for evaluation of chemical libraries in bioorganic and medicinal chemistry.
近年来,利用核磁共振光谱法从化学文库中鉴定与大分子结合的化合物变得越来越重要。本文介绍了一种基于¹⁹F核磁共振光谱法的简单方法,用于筛选与蛋白质结合的配体,该方法还能提供有关相对结合强度和多个结合位点存在情况的定性信息。构建了一个氟化化合物文库,并研究其与两种细菌伴侣蛋白PapD和FimC以及人血清白蛋白(HSA)的结合情况。结果发现,结合到目标蛋白上的文库成员可以直接从一维¹⁹F核磁共振谱中的谱线展宽和/或诱导化学位移中鉴定出来。使用¹⁹F核磁共振光谱法获得的与PapD结合的结果与基于表面等离子体共振的独立研究结果非常吻合,这为该技术的通用性和准确性提供了支持。当文库滴定到PapD溶液中时,随着配体浓度的增加,观察到化学位移和线宽变化,这表明PapD上存在多个结合位点,并能够评估不同配体的相对结合强度。因此,¹⁹F核磁共振光谱法筛选应是现有核磁共振技术在生物有机化学和药物化学中评估化学文库的一项有价值的补充。