Dos Santos Karen, Bartocci Alessio, Gillet Natacha, Denis-Quanquin Sandrine, Roux Amandine, Lin Eugene, Xu Zeren, Finizola Raphael, Chedozeau Pauline, Chen Xi, Caradeuc Cédric, Baudin Mathieu, Bertho Gildas, Riobé François, Maury Olivier, Dumont Elise, Giraud Nicolas
Université Paris Cité, Laboratoire de Chimie et Biochimie Pharmacologiques et Toxicologiques, UMR CNRS 8601, Paris, France.
Department of Physics, University of Trento, Via Sommarive 14, I-38123 Trento, Italy.
Phys Chem Chem Phys. 2024 May 22;26(20):14573-14581. doi: 10.1039/d4cp00463a.
The supramolecular interaction between lanthanide complexes and proteins is at the heart of numerous chemical and biological studies. Some of these complexes have demonstrated remarkable interaction properties with proteins or peptides in solution and in the crystalline state. Here we have used the paramagnetism of lanthanide ions to characterize the affinity of two lanthanide complexes for ubiquitin. As the interaction process is dynamic, the acquired NMR data only reflect the time average of the different steps. We have used molecular dynamics (MD) simulations to get a deeper insight into the detailed interaction scenario at the microsecond scale. This NMR/MD approach enabled us to establish that the tris-dipicolinate complex interacts specifically with arginines and lysines, while the crystallophore explores the protein surface through weak interactions with carboxylates. These observations shed new light on the dynamic interaction properties of these complexes, which will ultimately enable us to propose a crystallization mechanism.
镧系元素配合物与蛋白质之间的超分子相互作用是众多化学和生物学研究的核心。其中一些配合物在溶液状态和晶体状态下均已证明与蛋白质或肽具有显著的相互作用特性。在此,我们利用镧系元素离子的顺磁性来表征两种镧系元素配合物对泛素的亲和力。由于相互作用过程是动态的,所获取的核磁共振(NMR)数据仅反映了不同步骤的时间平均值。我们已使用分子动力学(MD)模拟来更深入地了解微秒尺度下详细的相互作用情况。这种NMR/MD方法使我们能够确定三吡啶甲酸配合物与精氨酸和赖氨酸发生特异性相互作用,而晶态载体则通过与羧酸盐的弱相互作用探索蛋白质表面。这些观察结果为这些配合物的动态相互作用特性提供了新的见解,这最终将使我们能够提出一种结晶机制。