Yatsyna Vasyl, Bakker Daniël J, Feifel Raimund, Rijs Anouk M, Zhaunerchyk Vitali
Department of Physics, University of Gothenburg, 412 96 Gothenburg, Sweden.
Institute for Molecules and Materials, FELIX Laboratory, Radboud University, Toernoovield 7-c, 6525 ED Nijmegen, The Netherlands.
J Chem Phys. 2016 Sep 14;145(10):104309. doi: 10.1063/1.4962360.
Delocalized molecular vibrations in the far-infrared and THz ranges are highly sensitive to the molecular structure, as well as to intra- and inter-molecular interactions. Thus, spectroscopic studies of biomolecular structures can greatly benefit from an extension of the conventional mid-infrared to the far-infrared wavelength range. In this work, the conformer-specific gas-phase far-infrared spectra of two aromatic molecules containing the peptide -CO-NH- link, namely, 2- and 4-Methylacetanilide, are investigated. The planar conformations with trans configuration of the peptide link have only been observed in the supersonic-jet expansion. The corresponding far-infrared signatures associated with the vibrations of the peptide -CO-NH- moiety, the so-called amide IV-VI bands, have been assigned and compared with the results of density functional theory frequency calculations based on the anharmonic vibrational second-order perturbation theory approach. The analysis of the experimental and theoretical data shows that the amide IV-VI bands are highly diagnostic for the geometry of the peptide moiety and the molecular backbone. They are also strongly blue-shifted upon formation of the NH⋯O-C hydrogen bonding, which is, for example, responsible for the formation of secondary protein structures. Furthermore, the amide IV-VI bands are also diagnostic for the cis configuration of the peptide link, which can be present in cyclic peptides. The experimental gas-phase data presented in this work can assist the vibrational assignment of similar biologically important systems, either isolated or in natural environments.
远红外和太赫兹波段的离域分子振动对分子结构以及分子内和分子间相互作用高度敏感。因此,生物分子结构的光谱研究可以从将传统的中红外波段扩展到远红外波长范围中大大受益。在这项工作中,研究了两种含有肽键-CO-NH-的芳香族分子,即2-甲基乙酰苯胺和4-甲基乙酰苯胺的构象异构体特异性气相远红外光谱。肽键具有反式构型的平面构象仅在超声速喷射膨胀中被观察到。与肽键-CO-NH-部分振动相关的相应远红外特征,即所谓的酰胺IV-VI带,已被指定,并与基于非谐振动二阶微扰理论方法的密度泛函理论频率计算结果进行了比较。对实验和理论数据的分析表明,酰胺IV-VI带对肽部分和分子主链的几何结构具有高度诊断性。它们在形成NH⋯O-C氢键时也会强烈蓝移,例如,氢键是二级蛋白质结构形成的原因。此外,酰胺IV-VI带对肽键的顺式构型也具有诊断性,顺式构型可存在于环肽中。这项工作中给出的实验气相数据可以帮助对类似的重要生物系统进行振动归属,无论是孤立的还是在自然环境中的系统。