State Key Laboratory of Elemento-organic Chemistry, College of Chemistry, Collaborative Innovation Center of Chemical Science and Engineering, Nankai University, Tianjin 300071, China.
J Phys Chem Lett. 2020 Nov 5;11(21):9493-9500. doi: 10.1021/acs.jpclett.0c02196. Epub 2020 Oct 27.
Site-specific labeling of proteins with a paramagnetic tag is an efficient way to provide atomic-resolution information about the dynamics, interactions, and structures of the proteins and protein-ligand complexes. The paramagnetic effects manifested in NMR spectroscopy generally contain paramagnetic relaxation enhancement, pseudocontact shifts (PCSs), and residual dipolar coupling (RDC), and these effects correlate closely with the flexibility of protein-tag conjugates. The rigidity of the paramagnetic tag is greatly important in decoding the structural details of macromolecular complexes, because paramagnetic averaging reduces the PCSs and RDCs. Here we show that the dynamic exchange of the metal chelating moiety is a key factor in determining the rigidity of the paramagnetic tag in the protein conjugates. Decreasing the conformational exchange rates in the metal chelating moiety greatly minimizes the paramagnetic averaging and thus increases PCSs and RDCs. This effect has been demonstrated in an open-chain tag, Py-l-Cys-DTPA, which generates large PCSs and RDCs that are comparable to those of the reported cyclic DOTA-like tags. The proposed route offers a unique way to design suitable paramagnetic tags for applications in biological systems.
蛋白质的位定点标记是一种提供有关蛋白质和蛋白质-配体复合物的动力学、相互作用和结构的原子分辨率信息的有效方法。在 NMR 光谱中表现出的顺磁效应通常包含顺磁弛豫增强、赝接触位移(PCSs)和残余偶极耦合(RDC),这些效应与蛋白质-标记缀合物的柔韧性密切相关。顺磁标记的刚性在解码大分子复合物的结构细节方面非常重要,因为顺磁平均会降低 PCSs 和 RDCs。我们在这里表明,金属螯合部分的动态交换是决定蛋白质缀合物中顺磁标记刚性的关键因素。降低金属螯合部分的构象交换速率可大大最小化顺磁平均化,从而增加 PCSs 和 RDCs。在开链标记 Py-l-Cys-DTPA 中已经证明了这种效应,它产生的 PCSs 和 RDCs 与报道的类似 DOTA 的环状标记相当。所提出的途径为在生物系统中应用提供了一种设计合适的顺磁标记的独特方法。