Stenström Olof, Diehl Carl, Modig Kristofer, Nilsson Ulf J, Akke Mikael
Division of Biophysical Chemistry, Center for Molecular Protein Science, Department of Chemistry, Lund University Box 124 SE-22100 Lund Sweden
Centre for Analysis and Synthesis, Department of Chemistry, Lund University Box 124 SE-22100 Lund Sweden.
RSC Chem Biol. 2020 Dec 23;2(1):259-265. doi: 10.1039/d0cb00229a. eCollection 2021 Feb 1.
Biochemical signaling is mediated by complexes between macromolecular receptors and their ligands, with the duration of the signal being directly related to the lifetime of the ligand-receptor complex. In the field of drug design, the recognition that drug efficacy depends on the lifetime of the drug-protein complex has spawned the concept of designing drugs with particular binding kinetics. To advance this field it is critical to investigate how the molecular details of designed ligands might affect the binding kinetics, as well as the equilibrium binding constant. Here we use protein NMR relaxation dispersion to determine linear free energy relationships involving the on- and off-rates and the affinity for a series of congeneric ligands targeting the carbohydrate recognition domain of galectin-3. Using this approach we determine the energy landscape and the position of the transition state along the reaction coordinate of protein-ligand binding. The results show that ligands exhibiting reduced off-rates achieve this by primarily stabilizing the bound state, but do not affect the transition state to any greater extent. The transition state forms early, that is, it is located significantly closer to the free state than to the bound state, suggesting a critical role of desolvation. Furthermore, the data suggest that different subclasses of ligands show different behavior with respect to these characteristics.
生物化学信号传导由大分子受体与其配体之间的复合物介导,信号持续时间与配体 - 受体复合物的寿命直接相关。在药物设计领域,药物疗效取决于药物 - 蛋白质复合物寿命这一认识催生了设计具有特定结合动力学的药物的概念。为推动该领域发展,研究设计配体的分子细节如何影响结合动力学以及平衡结合常数至关重要。在此,我们使用蛋白质核磁共振弛豫色散来确定涉及一系列靶向半乳糖凝集素 - 3碳水化合物识别结构域的同类配体的结合和解离速率以及亲和力的线性自由能关系。通过这种方法,我们确定了能量景观以及沿着蛋白质 - 配体结合反应坐标的过渡态位置。结果表明,解离速率降低的配体主要通过稳定结合态来实现这一点,但对过渡态的影响不大。过渡态形成较早,也就是说,它距离自由态比距离结合态更近,这表明去溶剂化起关键作用。此外,数据表明不同子类的配体在这些特征方面表现出不同的行为。