Department of Chemistry, University of Alberta, Edmonton, Alberta, AB T6G 2G2, Canada.
Molecules. 2021 Dec 22;27(1):38. doi: 10.3390/molecules27010038.
The homo- and heterochiral protonated dimers of asparagine with serine and with valine were investigated using infrared multiple-photon dissociation (IRMPD) spectroscopy. Extensive quantum-chemical calculations were used in a three-tiered strategy to screen the conformational spaces of all four dimer species. The resulting binary structures were further grouped into five different types based on their intermolecular binding topologies and subunit configurations. For each dimer species, there are eight to fourteen final conformational geometries within a 10 kJ mol window of the global minimum structure for each species. The comparison between the experimental IRMPD spectra and the simulated harmonic IR features allowed us to clearly identify the types of structures responsible for the observation. The monomeric subunits of the observed homo- and heterochiral dimers are compared to the corresponding protonated/neutral amino acid monomers observed experimentally in previous IRMDP/rotational spectroscopic studies. Possible chirality and kinetic influences on the experimental IRMPD spectra are discussed.
采用红外多光子解离(IRMPD)光谱法研究了天冬酰胺与丝氨酸和缬氨酸形成的同手性和异手性质子化二聚体。在三级策略中广泛使用量子化学计算来筛选所有四种二聚体的构象空间。所得的二元结构根据其分子间结合拓扑结构和亚基构型进一步分为五种不同类型。对于每种二聚体,在每种物种的全局最小值结构的 10 kJ mol 窗口内,有 8 到 14 种最终构象几何形状。实验的 IRMPD 光谱与模拟的谐频 IR 特征之间的比较使我们能够清楚地识别出观察到的结构类型。将观察到的同手性和异手性二聚体的单体亚基与以前的 IRMDP/旋转光谱研究中实验观察到的相应质子化/中性氨基酸单体进行比较。讨论了实验 IRMPD 光谱中手性和动力学的可能影响。