Department of Chemistry, University of Pittsburgh, Pittsburgh, PA 15260, United States.
Department of Pharmaceutical Sciences, School of Pharmacy & In Vivo Multifunctional Magnetic Resonance (IMMR) Center, Health Sciences Center, West Virginia University, Morgantown, WV 26506, United States.
J Magn Reson. 2023 Feb;347:107363. doi: 10.1016/j.jmr.2022.107363. Epub 2022 Dec 30.
Triarylmethyl (TAM)-based labels, while still underutilized, are a powerful class of labels for pulsed-Electron Spin Resonance (ESR) distance measurements. They feature slow relaxation rates for long-lasting signals, high stability for cellular experiments, and narrow spectral features for efficient excitation of the spins. However, the typical narrow line shape limits the available distance measurements to only single-frequency experiments, such as Double Quantum Coherence (DQC) and Relaxation Induced Dipolar Modulation Enhancement (RIDME), which can be complicated to perform or hard to process. Therefore, widespread usage of TAM labels can be enhanced by the use of Double Electron-Electron Resonance (DEER) distance measurements. In this work, we developed a new spin label, C-mOX063-d, with a C isotope as the radical center. Due to the resolved hyperfine splitting, the spectrum is sufficiently broadened to permit DEER-based experiments at Q-band spectrometers. Additionally, this new label can be incorporated orthogonally with Cu(II)-based protein label. The orthogonal labeling scheme enables DEER distance measurement at X-band frequencies. Overall, the new trityl label allows for DEER-based distance measurements that complement existing TAM-label DQC and RIDME experiments.
三芳基甲基(TAM)基标记物虽然尚未得到充分利用,但它们是用于脉冲电子自旋共振(ESR)距离测量的一类强大标记物。它们具有用于长时间信号的缓慢弛豫率、用于细胞实验的高稳定性以及用于自旋有效激发的窄谱特征。然而,典型的窄线形状将可用的距离测量限制为仅单频实验,例如双量子相干(DQC)和弛豫诱导偶极调制增强(RIDME),这些实验可能难以执行或难以处理。因此,通过使用双电子-电子共振(DEER)距离测量,可以增强 TAM 标记物的广泛使用。在这项工作中,我们开发了一种带有 C 同位素作为自由基中心的新型自旋标记物 C-mOX063-d。由于分辨的超精细分裂,光谱得到了充分的展宽,从而可以在 Q 波段光谱仪上进行基于 DEER 的实验。此外,这种新的标记物可以与基于 Cu(II)的蛋白质标记物正交结合。正交标记方案允许在 X 波段频率下进行 DEER 距离测量。总的来说,新的三芳基甲基标记物允许进行基于 DEER 的距离测量,从而补充了现有的 TAM 标记物 DQC 和 RIDME 实验。