Herling Therese W, O'Connell David J, Bauer Mikael C, Persson Jonas, Weininger Ulrich, Knowles Tuomas P J, Linse Sara
Department of Chemistry, University of Cambridge, Cambridge, United Kingdom.
School of Biomolecular and Biomedical Science, University of College Dublin, Dublin, Ireland.
Biophys J. 2016 May 10;110(9):1957-66. doi: 10.1016/j.bpj.2016.03.038.
The key steps in cellular signaling and regulatory pathways rely on reversible noncovalent protein-ligand binding, yet the equilibrium parameters for such events remain challenging to characterize and quantify in solution. Here, we demonstrate a microfluidic platform for the detection of protein-ligand interactions with an assay time on the second timescale and without the requirement for immobilization or the presence of a highly viscous matrix. Using this approach, we obtain absolute values for the electrophoretic mobilities characterizing solvated proteins and demonstrate quantitative comparison of results obtained under different solution conditions. We apply this strategy to characterize the interaction between calmodulin and creatine kinase, which we identify as a novel calmodulin target. Moreover, we explore the differential calcium ion dependence of calmodulin ligand-binding affinities, a system at the focal point of calcium-mediated cellular signaling pathways. We further explore the effect of calmodulin on creatine kinase activity and show that it is increased by the interaction between the two proteins. These findings demonstrate the potential of quantitative microfluidic techniques to characterize binding equilibria between biomolecules under native solution conditions.
细胞信号传导和调节途径中的关键步骤依赖于可逆的非共价蛋白质 - 配体结合,然而,此类事件的平衡参数在溶液中进行表征和量化仍然具有挑战性。在此,我们展示了一种微流控平台,用于检测蛋白质 - 配体相互作用,检测时间在秒级,且无需固定化或存在高粘度基质。使用这种方法,我们获得了表征溶剂化蛋白质的电泳迁移率的绝对值,并展示了在不同溶液条件下获得的结果的定量比较。我们应用此策略来表征钙调蛋白与肌酸激酶之间的相互作用,我们将其鉴定为一种新型的钙调蛋白靶点。此外,我们探索了钙调蛋白配体结合亲和力对钙离子的不同依赖性,这是钙介导的细胞信号传导途径的核心系统。我们进一步研究了钙调蛋白对肌酸激酶活性的影响,结果表明两种蛋白质之间的相互作用会增强其活性。这些发现证明了定量微流控技术在天然溶液条件下表征生物分子之间结合平衡的潜力。