Riccardi Sirtori Federico, Caronni Dannica, Colombo Maristella, Dalvit Claudio, Paolucci Mauro, Regazzoni Luca, Visco Carlo, Fogliatto Gianpaolo
Oncology Business Unit, Nerviano Medical Sciences, Viale Pasteur 10, 20014 Nerviano (MI), Italy; Dipartimento di Scienze Farmaceutiche "Pietro Pratesi", Università degli Studi di Milano, Via Mangiagalli 25, 20133 Milan, Italy.
Oncology Business Unit, Nerviano Medical Sciences, Viale Pasteur 10, 20014 Nerviano (MI), Italy.
Eur J Pharm Sci. 2015 Aug 30;76:83-94. doi: 10.1016/j.ejps.2015.05.001. Epub 2015 May 4.
ESI-MS is a well established technique for the study of biopolymers (nucleic acids, proteins) and their non covalent adducts, due to its capacity to detect ligand-target complexes in the gas phase and allows inference of ligand-target binding in solution. In this article we used this approach to investigate the interaction of ligands to the Heat Shock Protein 90 (Hsp90). This enzyme is a molecular chaperone involved in the folding and maturation of several proteins which has been subjected in the last years to intensive drug discovery efforts due to its key role in cancer. In particular, reference compounds, with a broad range of dissociation constants from 40pM to 100μM, were tested to assess the reliability of ESI-MS for the study of protein-ligand complexes. A good agreement was found between the values measured with a fluorescence polarization displacement assay and those determined by mass spectrometry. After this validation step we describe the setup of a medium throughput screening method, based on ESI-MS, suitable to explore interactions of therapeutic relevance biopolymers with chemical libraries. Our approach is based on an automated flow injection ESI-MS method (AFI-MS) and has been applied to screen the Nerviano Medical Sciences proprietary fragment library of about 2000 fragments against Hsp90. In order to discard false positive hits and to discriminate those of them interacting with the N-terminal ATP binding site, competition experiments were performed using a reference inhibitor. Gratifyingly, this group of hits matches with the ligands previously identified by NMR FAXS techniques and confirmed by X-ray co-crystallization experiments. These results support the use of AFI-MS for the screening of medium size libraries, including libraries of small molecules with low affinity typically used in fragment based drug discovery. AFI-MS is a valid alternative to other techniques with the additional opportunities to identify compounds interacting with unpredicted or allosteric sites, without the need of any binding probes.
电喷雾电离质谱(ESI-MS)是一种成熟的技术,用于研究生物聚合物(核酸、蛋白质)及其非共价加合物,因为它能够在气相中检测配体-靶标复合物,并能推断溶液中的配体-靶标结合情况。在本文中,我们使用这种方法来研究配体与热休克蛋白90(Hsp90)的相互作用。这种酶是一种分子伴侣,参与多种蛋白质的折叠和成熟过程,由于其在癌症中的关键作用,近年来一直是药物研发的重点对象。特别是,我们测试了一系列解离常数从40皮摩尔到100微摩尔的参考化合物,以评估ESI-MS用于研究蛋白质-配体复合物的可靠性。通过荧光偏振位移测定法测得的值与通过质谱法测定的值之间发现了良好的一致性。在完成这一验证步骤后,我们描述了一种基于ESI-MS的中通量筛选方法的设置,该方法适用于探索具有治疗相关性的生物聚合物与化学文库之间的相互作用。我们的方法基于自动流动注射ESI-MS方法(AFI-MS),并已应用于筛选Nerviano Medical Sciences公司拥有的约2000个片段的片段文库与Hsp90的相互作用。为了排除假阳性结果,并区分那些与N端ATP结合位点相互作用的结果,我们使用一种参考抑制剂进行了竞争实验。令人欣慰的是,这组命中结果与先前通过核磁共振FAXS技术鉴定并经X射线共结晶实验证实的配体相匹配。这些结果支持使用AFI-MS来筛选中等规模的文库,包括基于片段的药物发现中通常使用的低亲和力小分子文库。AFI-MS是其他技术的有效替代方法,它还有额外的机会识别与未预测或变构位点相互作用的化合物,而无需任何结合探针。