Department of Chemistry, Stanford University , Stanford, California 94305-5012, United States.
ACS Cent Sci. 2015 Jun 24;1(3):148-56. doi: 10.1021/acscentsci.5b00160. Epub 2015 Jun 5.
Short hydrogen bonds and specifically low-barrier hydrogen bonds (LBHBs) have been the focus of much attention and controversy for their possible role in enzymatic catalysis. The green fluorescent protein (GFP) mutant S65T, H148D has been found to form a very short hydrogen bond between Asp148 and the chromophore resulting in significant spectral perturbations. Leveraging the unique autocatalytically formed chromophore and its sensitivity to this interaction we explore the consequences of proton affinity matching across this putative LBHB. Through the use of noncanonical amino acids introduced through nonsense suppression or global incorporation, we systematically modify the acidity of the GFP chromophore with halogen substituents. X-ray crystal structures indicated that the length of the interaction with Asp148 is unchanged at ∼2.45 Å while the absorbance spectra demonstrate an unprecedented degree of color tuning with increasing acidity. We utilized spectral isotope effects, isotope fractionation factors, and a simple 1D model of the hydrogen bond coordinate in order to gain insight into the potential energy surface and particularly the role that proton delocalization may play in this putative short hydrogen bond. The data and model suggest that even with the short donor-acceptor distance (∼2.45 Å) and near perfect affinity matching there is not a LBHB, that is, the barrier to proton transfer exceeds the H zero-point energy.
短氢键,特别是低势垒氢键(LBHBs),因其在酶催化中可能的作用而备受关注和争议。已经发现 GFP 突变体 S65T、H148D 在天冬氨酸 148 和发色团之间形成非常短的氢键,导致光谱发生显著扰动。利用独特的自动催化形成的发色团及其对这种相互作用的敏感性,我们探讨了在假定的 LBHB 上质子亲和力匹配的后果。通过使用通过无义抑制或全局掺入引入的非典型氨基酸,我们系统地用卤素取代基修饰 GFP 发色团的酸度。X 射线晶体结构表明,与 Asp148 的相互作用长度保持不变,约为 2.45 Å,而吸收光谱则显示出随着酸度增加而前所未有的颜色调谐程度。我们利用光谱同位素效应、同位素分馏因子和氢键坐标的简单 1D 模型,深入了解势能面,特别是质子离域在假定短氢键中可能发挥的作用。数据和模型表明,即使存在短的供体-受体距离(约 2.45 Å)和近乎完美的亲和力匹配,也不存在 LBHB,也就是说,质子转移的势垒超过了 H 零点能。