Department of Chemistry, Indian Institute of Science Education and Research (IISER), 900 NCL Innovation Park, Dr. Homi Bhabha Road, Pune 411008, Maharashtra, India.
J Chem Phys. 2013 Sep 14;139(10):104311. doi: 10.1063/1.4820532.
In this study, the structure of the indole···hexafluorobenzene dimer has been investigated in the gas phase by using resonant two photon ionzation (R2PI) and IR-UV double resonance spectroscopy combined with quantum chemistry calculations. We have confirmed the presence of exclusively π-stacked structure of the dimer from both experimental and theoretical IR spectra in the N-H stretching region. Observation of a single stable structure of the dimer has also been verified through 3D potential energy surface scan of the π-stacked dimer by varying the parallel displacement of the hexafluorobenzene unit simultaneously along the major and minor axes of the indole moiety. π-stacking interaction is present very often between the tryptophan and phenylalanine residues in proteins. But this interaction has not been observed earlier in the gas phase experiment by studying indole···benzene dimer because the N-H group of indole predominately directs towards the N-H···π hydrogen bonded T-shaped structure. The chosen molecular systems in this study not only rule out the possibility of the formation of the N-H···π bound T-shaped dimer but also enable the determination of the structure by probing the N-H group. The π-stacked indole···hexafluorobenzene dimer has a unique structure where the center of the hexafluorobenznene ring is aligned with the center of the shared bond of the indole ring. Our work provides useful insight in designing unnatural proteins having strong π-stacking interaction between the tryptophan and phenylalanine residues.
在这项研究中,通过使用共振双光子电离(R2PI)和红外-紫外双共振光谱结合量子化学计算,在气相中研究了吲哚···六氟苯二聚体的结构。我们从 N-H 伸缩区域的实验和理论红外光谱中都证实了二聚体仅存在π堆积结构。通过同时沿吲哚部分的主轴和次轴改变六氟苯单元的平行位移,对π堆积二聚体的 3D 势能面进行扫描,也验证了二聚体的单一稳定结构的存在。在蛋白质中,色氨酸和苯丙氨酸残基之间经常存在π堆积相互作用。但由于吲哚的 N-H 基团主要指向 N-H···π 氢键的 T 形结构,因此以前在气相实验中研究吲哚···苯二聚体时并未观察到这种相互作用。本研究中选择的分子体系不仅排除了形成 N-H···π 键合 T 形二聚体的可能性,而且还通过探测 N-H 基团来确定结构。π堆积的吲哚···六氟苯二聚体具有独特的结构,其中六氟苯环的中心与吲哚环的共享键的中心对齐。我们的工作为设计具有色氨酸和苯丙氨酸残基之间强 π 堆积相互作用的非天然蛋白质提供了有用的见解。