Department of Chemistry, University of Toronto, UTM, 3359 Mississauga Rd., North Mississauga, ON L5L1C6, Canada.
J Biomol NMR. 2010 Oct;48(2):113-21. doi: 10.1007/s10858-010-9443-7. Epub 2010 Aug 24.
In protein NMR experiments which employ nonnative labeling, incomplete enrichment is often associated with inhomogeneous line broadening due to the presence of multiple labeled species. We investigate the merits of fractional enrichment strategies using a monofluorinated phenylalanine species, where resolution is dramatically improved over that achieved by complete enrichment. In NMR studies of calmodulin, a 148 residue calcium binding protein, ¹⁹F and ¹H-¹⁵N HSQC spectra reveal a significant extent of line broadening and the appearance of minor conformers in the presence of complete (>95%) 3-fluorophenylalanine labeling. The effects of varying levels of enrichment of 3-fluorophenylalanine (i.e. between 3 and >95%) were further studied by ¹⁹F and ¹H-¹⁵N HSQC spectra, ¹⁵N T(1) and T(2) relaxation measurements, ¹⁹F T(2) relaxation, translational diffusion and heat denaturation experiments via circular dichroism. Our results show that while several properties, including translational diffusion and thermal stability show little variation between non-fluorinated and >95% ¹⁹F labeled samples, ¹⁹F and ¹H-¹⁵N HSQC spectra show significant improvements in line widths and resolution at or below 76% enrichment. Moreover, high levels of fluorination (>80%) appear to increase protein disorder as evidenced by backbone ¹⁵N dynamics. In this study, reasonable signal to noise can be achieved between 60-76% ¹⁹F enrichment, without any detectable perturbations from labeling.
在采用非天然标记的蛋白质 NMR 实验中,由于存在多种标记物种,不完全富集通常与不均匀线宽有关。我们使用单氟化苯丙氨酸物种研究了分数富集策略的优点,与完全富集相比,分辨率得到了显著提高。在钙调蛋白(一种 148 个残基的钙结合蛋白)的 NMR 研究中,¹⁹F 和 ¹H-¹⁵N HSQC 谱显示在完全(>95%)3-氟苯丙氨酸标记存在的情况下,线宽有很大程度的展宽,并且出现了次要构象。通过 ¹⁹F 和 ¹H-¹⁵N HSQC 谱、¹⁵N T(1)和 T(2)弛豫测量、¹⁹F T(2)弛豫、平移扩散和通过圆二色性的热变性实验,进一步研究了 3-氟苯丙氨酸(即 3-95%)不同富集水平的影响。我们的结果表明,尽管包括平移扩散和热稳定性在内的几种性质在非氟化和>95%¹⁹F 标记样品之间几乎没有变化,但 ¹⁹F 和 ¹H-¹⁵N HSQC 谱在线宽和分辨率方面在 76%或以下的富集水平上显示出显著改善。此外,高氟代水平(>80%)似乎增加了蛋白质的无序性,这可以通过主链 ¹⁵N 动力学得到证明。在这项研究中,在 60-76%¹⁹F 富集之间可以获得合理的信噪比,而没有任何可检测到的标记干扰。