Institute of Physical and Theoretical Chemistry, Rheinische Friedrich-Wilhelms-University Bonn, Wegelerstr. 12, 53115 Bonn, Germany.
Molecules. 2019 Jul 27;24(15):2735. doi: 10.3390/molecules24152735.
Pulsed dipolar electron paramagnetic resonance spectroscopy (PDS) in combination with site-directed spin labeling (SDSL) of proteins and oligonucleotides is a powerful tool in structural biology. Instead of using the commonly employed -dimethyl-nitroxide labels, triarylmethyl (trityl) spin labels enable such studies at room temperature, within the cells and with single-frequency electron paramagnetic resonance (EPR) experiments. However, it has been repeatedly reported that labeling of proteins with trityl radicals led to low labeling efficiencies, unspecific labeling and label aggregation. Therefore, this work introduces the synthesis and characterization of a maleimide-functionalized trityl spin label and its corresponding labeling protocol for cysteine residues in proteins. The label is highly cysteine-selective, provides high labeling efficiencies and outperforms the previously employed methanethiosulfonate-functionalized trityl label. Finally, the new label is successfully tested in PDS measurements on a set of doubly labeled outer protein O (YopO) mutants.
脉冲双共振电子顺磁共振波谱(PDS)与蛋白质和寡核苷酸的定点自旋标记(SDSL)相结合,是结构生物学领域的一种强大工具。与常用的 -二甲基-氮氧自由基(DMPO)标记物不同,三芳基甲基(三苯甲基)自旋标记物能够在室温下、在细胞内以及通过单频电子顺磁共振(EPR)实验进行此类研究。然而,已有报道称,三苯甲基自由基标记蛋白质会导致标记效率低、非特异性标记和标记聚集。因此,本工作介绍了一种马来酰亚胺功能化三苯甲基自旋标记物的合成和表征,以及其用于蛋白质半胱氨酸残基的标记方案。该标记物对半胱氨酸具有高度选择性,提供了高的标记效率,并优于之前使用的甲硫磺酸酯功能化三苯甲基标记物。最后,该新标记物成功地在一组双标记 外蛋白 O(YopO)突变体的 PDS 测量中进行了测试。