Institute for Molecular Physical Science, Vladimir Prelog Weg 2, 8093 Zürich, Switzerland.
NexMR AG, Wiesenstrasse 10A, 8952 Schlieren, Switzerland.
J Am Chem Soc. 2024 Jul 3;146(26):17974-17985. doi: 10.1021/jacs.4c04000. Epub 2024 Jun 18.
The binding affinity determination of protein-ligand complexes is a cornerstone of drug design. State-of-the-art techniques are limited by lengthy and expensive processes. Building upon our recently introduced novel screening method utilizing photochemically induced dynamic nuclear polarization (photo-CIDNP) NMR, we provide the methodological framework to determine binding affinities within 5-15 min using 0.1 mg of protein. The accuracy of our method is demonstrated for the affinity constants of peptides binding to a PDZ domain and fragment ligands binding to the protein PIN1. The method can also be extended to measure the affinity of nonphoto-CIDNP-polarizable ligands in competition binding experiments. Finally, we demonstrate a strong correlation between the ligand-reduced signals in photo-CIDNP-based NMR fragment screening and the well-established saturation transfer difference (STD) NMR. Thus, our methodology measures protein-ligand affinities in the micro- to millimolar range in only a few minutes and informs on the binding epitope in a single-scan experiment, opening new avenues for early stage drug discovery approaches.
蛋白配体复合物的结合亲和力测定是药物设计的基石。最先进的技术受到冗长且昂贵的过程的限制。在我们最近引入的利用光诱导动态核极化(photo-CIDNP)NMR 的新型筛选方法的基础上,我们提供了使用 0.1 毫克蛋白质在 5-15 分钟内确定结合亲和力的方法框架。我们的方法的准确性通过肽与 PDZ 结构域结合的亲和力常数和片段配体与蛋白质 PIN1 结合的亲和力常数来证明。该方法还可以扩展到用于测量非光 CIDNP 极化配体在竞争结合实验中的亲和力。最后,我们证明了基于 photo-CIDNP 的 NMR 片段筛选中配体减少信号与建立良好的饱和转移差异(STD)NMR 之间存在很强的相关性。因此,我们的方法在短短几分钟内即可测量微摩尔至毫摩尔范围内的蛋白配体亲和力,并在单次扫描实验中提供结合表位信息,为早期药物发现方法开辟了新途径。