Department of Chemistry, Duke University, Durham, NC, USA.
Nat Protoc. 2013 Jan;8(1):148-61. doi: 10.1038/nprot.2012.146. Epub 2012 Dec 20.
The detection and quantification of protein-ligand binding interactions is crucial in a number of different areas of biochemical research from fundamental studies of biological processes to drug discovery efforts. Described here is a protocol that can be used to identify the protein targets of biologically relevant ligands (e.g., drugs such as tamoxifen or cyclosporin A) in complex protein mixtures such as cell lysates. The protocol utilizes quantitative, bottom-up, shotgun proteomics technologies (isobaric mass tags for relative and absolute quantification, or iTRAQ) with a covalent labeling technique, termed stability of proteins from rates of oxidation (SPROX). In SPROX, the thermodynamic properties of proteins and protein-ligand complexes are assessed using the hydrogen peroxide-mediated oxidation of methionine residues as a function of the chemical denaturant (e.g., guanidine hydrochloride or urea) concentration. The proteome-wide SPROX experiments described here enable the ligand-binding properties of hundreds of proteins to be simultaneously assayed in the context of complex biological samples. The proteomic capabilities of the protocol render it amenable to the detection of both the on- and off-target effects of ligand binding. The protocol can be completed in 5 d.
蛋白质-配体结合相互作用的检测和定量在生化研究的许多不同领域都至关重要,从生物过程的基础研究到药物发现工作。这里描述的是一种可以用于鉴定生物相关配体(如他莫昔芬或环孢素 A 等药物)在复杂蛋白质混合物(如细胞裂解物)中的蛋白质靶标的方案。该方案利用定量、自上而下、 shotgun 蛋白质组学技术(相对和绝对定量的等质量标记,或 iTRAQ)与一种共价标记技术,称为氧化速率的蛋白质稳定性(SPROX)。在 SPROX 中,使用过氧化氢介导的蛋氨酸残基氧化作为化学变性剂(如盐酸胍或尿素)浓度的函数来评估蛋白质和蛋白质-配体复合物的热力学性质。这里描述的全蛋白质组 SPROX 实验能够同时在复杂生物样品的背景下测定数百种蛋白质的配体结合特性。该方案的蛋白质组学能力使其能够检测配体结合的靶内和靶外效应。该方案可以在 5 天内完成。