Ottiger Philipp, Pfaffen Chantal, Leist Roman, Leutwyler Samuel, Bachorz Rafał A, Klopper Wim
Departement für Chemie and Biochemie, Universität Bern, Freiestrasse 3, CH-3012 Bern, Switzerland.
J Phys Chem B. 2009 Mar 5;113(9):2937-43. doi: 10.1021/jp8110474.
Among the weak intermolecular interactions found in proteins, the amide N--H...pi interaction has been widely observed but remains poorly characterized as an individual interaction. We have investigated the isolated supersonic-jet-cooled dimer of the cis-amide and nucleobase analogue 2-pyridone (2PY) with benzene and benzene-d6. Both MP2 and SCS-MP2 geometry optimizations yield a T-shaped structure with a N--H...pi hydrogen bond to the benzene ring and the C=O group above, but far from the C--H bonds of benzene. The CCSD(T) calculated binding energy at the optimum geometry is De = 25.2 kJ/mol (dissociation energy D0 = 21.6 kJ/mol), corresponding to the H-bond strength of the water dimer or of N--H...O hydrogen bonds. The T-shaped geometry is supported by the infrared-ultraviolet depletion spectra of 2PY x benzene: The N--H stretch vibrational frequency is lowered by 56 cm(-1), and the C=O stretch vibration is lowered by 10 cm(-1), relative to those of bare 2PY, indicating a strong N--H...pi interaction and a weak interaction of the C=O group. The benzene C--H infrared stretches exhibit very small shifts (approximately 2 cm(-1)) relative to benzene, signaling the absence of interactions with the benzene C--H groups. The infrared spectral shifts are consistent with a strong nonconventional pi hydrogen bond and a T-shaped structure for 2PY x benzene. Symmetry-adapted perturbation theory calculations show that the N--H...pi interaction is by far the dominant stabilization factor.
在蛋白质中发现的弱分子间相互作用中,酰胺N--H...π相互作用已被广泛观察到,但作为一种单独的相互作用,其特征仍不明确。我们研究了顺式酰胺和核碱基类似物2-吡啶酮(2PY)与苯和苯-d6的孤立超声速喷射冷却二聚体。MP2和SCS-MP2几何优化均产生一种T形结构,其中N--H...π氢键与苯环相连,C=O基团在上方,但远离苯的C--H键。在最佳几何构型下,CCSD(T)计算的结合能为De = 25.2 kJ/mol(解离能D0 = 21.6 kJ/mol),与水二聚体或N--H...O氢键的氢键强度相当。2PY x苯的红外-紫外耗尽光谱支持了T形几何结构:相对于裸露的2PY,N--H伸缩振动频率降低了56 cm(-1),C=O伸缩振动降低了10 cm(-1),表明存在强N--H...π相互作用和C=O基团的弱相互作用。相对于苯,苯的C--H红外伸缩振动显示出非常小的位移(约2 cm(-1)),表明不存在与苯C--H基团的相互作用。红外光谱位移与2PY x苯的强非常规π氢键和T形结构一致。对称适配微扰理论计算表明,N--H...π相互作用是迄今为止主要的稳定因素。