Yang Yin, Gong Yan-Jun, Litvinov Aleksei, Liu Hong-Kai, Yang Feng, Su Xun-Cheng, Goldfarb Daniella
Department of Chemical Physics, Weizmann Institute of Science, Rehovot, 76100, Israel.
Phys Chem Chem Phys. 2017 Oct 11;19(39):26944-26956. doi: 10.1039/c7cp04311b.
High-affinity chelating tags for Gd(iii) and Mn(ii) ions that provide valuable high-resolution distance restraints for biomolecules were used as spin labels for double electron-electron resonance (DEER) measurements. The availability of a generic tag that can bind both metal ions and provide a narrow and predictable distance distribution for both ions is attractive owing to their different EPR-related characteristics. Herein we introduced two paramagnetic tags, 4PSPyMTA and 4PSPyNPDA, which are conjugated to cysteine residues through a stable thioether bond, forming a short and, depending on the metal ion coordination mode, a rigid tether with the protein. These tags exhibit high affinity for both Mn(ii) and Gd(iii) ions. The DEER performance of the 4PSPyMTA and 4PSPyNPDA tags, in complex with Gd(iii) or Mn(ii), was evaluated for three double cysteine mutants of ubiquitin, and the Gd(iii)-Gd(iii) and Mn(ii)-Mn(ii) distance distributions they generated were compared. All three Gd(iii) complexes of the ubiquitin-PyMTA and ubiquitin-PyNPDA conjugates produced similar and expected distance distributions. In contrast, significant variations in the maxima and widths of the distance distributions were observed for the Mn(ii) analogs. Furthermore, whereas PyNPDA-Gd(iii) and PyNPDA-Mn(ii) delivered similar distance distributions, appreciable differences were observed for two mutants with PyMTA, with the Mn(ii) analog exhibiting a broader distance distribution and shorter distances. ELDOR (electron-electron double resonance)-detected NMR measurements revealed some distribution in the Mn(ii) coordination environment for the protein conjugates of both tags but not for the free tags. The broader distance distributions generated by 4PSPyMTA-Mn(ii), as compared with Gd(iii), were attributed to the distributed location of the Mn(ii) ion within the PyMTA chelate owing to its smaller size and lower coordination number that leave the pyridine nitrogen uncoordinated. Accordingly, in terms of distance resolution, 4PSPyNPDA can serve as an effective generic tag for Gd(iii) and Mn(ii), whereas 4PSPyMTA is efficient for Gd(iii) only. This comparison between Gd(iii) and Mn(ii) suggests that PyMTA model compounds may not predict sufficiently well the performance of PyMTA-Mn(ii) as a tag for high-resolution distance measurements in proteins because the protein environment can influence its coordination mode.
用于钆(III)和锰(II)离子的高亲和力螯合标签可为生物分子提供有价值的高分辨率距离限制,被用作双电子 - 电子共振(DEER)测量的自旋标签。由于钆(III)和锰(II)离子不同的电子顺磁共振(EPR)相关特性,一种能够结合这两种金属离子并为两者提供狭窄且可预测的距离分布的通用标签很有吸引力。在此,我们引入了两种顺磁标签,4PSPyMTA和4PSPyNPDA,它们通过稳定的硫醚键与半胱氨酸残基共轭,形成一个短的、并取决于金属离子配位模式的与蛋白质相连的刚性链。这些标签对锰(II)和钆(III)离子均表现出高亲和力。针对泛素的三个双半胱氨酸突变体,评估了与钆(III)或锰(II)络合的4PSPyMTA和4PSPyNPDA标签的DEER性能,并比较了它们产生的钆(III)-钆(III)和锰(II)-锰(II)距离分布。泛素 - PyMTA和泛素 - PyNPDA缀合物的所有三种钆(III)络合物均产生了相似且预期的距离分布。相比之下,观察到锰(II)类似物的距离分布的最大值和宽度存在显著差异。此外,虽然PyNPDA - 钆(III)和PyNPDA - 锰(II)给出了相似的距离分布,但对于带有PyMTA的两个突变体观察到明显差异,锰(II)类似物表现出更宽的距离分布和更短的距离。电子 - 电子双共振(ELDOR)检测的核磁共振测量表明,两种标签的蛋白质缀合物的锰(II)配位环境存在一些分布,但游离标签不存在。与钆(III)相比,4PSPyMTA - 锰(II)产生的更宽的距离分布归因于锰(II)离子在PyMTA螯合物内的分布位置,这是由于其较小的尺寸和较低的配位数,使得吡啶氮未配位。因此,就距离分辨率而言,4PSPyNPDA可作为钆(III)和锰(II)的有效通用标签,而4PSPyMTA仅对钆(III)有效。钆(III)和锰(II)之间的这种比较表明,PyMTA模型化合物可能无法充分预测PyMTA - 锰(II)作为蛋白质中高分辨率距离测量标签的性能,因为蛋白质环境会影响其配位模式。