Baquero Esteban E, James William H, Choi Soo Hyuk, Gellman Samuel H, Zwier Timothy S
Department of Chemistry, Purdue University, West Lafayette, Indiana 49707-2084, USA.
J Am Chem Soc. 2008 Apr 9;130(14):4784-94. doi: 10.1021/ja078271y. Epub 2008 Mar 18.
The conformational preferences and infrared and ultraviolet spectral signatures of two model beta-peptides, Ac-beta3-hPhe-NHMe (1) and Ac-beta3-hTyr-NHMe (2), have been explored under jet-cooled, isolated molecule conditions. The mass-resolved, resonant two-photon ionization spectra of the two molecules were recorded in the region of the S0-S1 origin of the phenyl or phenol ring substituents, respectively. UV-UV hole-burning spectroscopy was used to determine that two conformations of 1 are present, with the transitions due to conformer A, with S0-S1 origin at 34431 cm(-1), being almost 20 times larger than those due to conformer B, with S0-S1 origin at 34404 cm(-1). Only one conformation of 2 was observed. Resonant ion-dip infrared spectroscopy provided single-conformation infrared spectra in the 3300-3700 cm(-1) region. The spectra of conformer A of both molecules have H-bonded and free amide NH stretch infrared transitions at 3400 and 3488 cm(-1), respectively, while conformer B of 1 possesses bands at 3417 and 3454 cm(-1). For comparison with experiment, full optimizations of all low-lying minima of 1 were carried out at the DFT B3LYP/6-31+G* and RIMP2/aug-cc-pVDZ levels of theory, and single point MP2/6-31+G* calculations at the DFT geometries. On the basis of the comparison with previous studies in solution and the calculated results, conformer A of 1 and 2 were assigned to a C6 conformer, while conformer B of 1 was assigned to a unique C8 structure with a weak intramolecular H-bond. The reasons for the preference for C6 over C8 structures and the presence of only two conformations in the jet-cooled spectrum are discussed in light of the predictions from calculations.
在喷射冷却、孤立分子条件下,研究了两种模型β-肽,即乙酰基-β3-高苯丙氨酸-N-甲基酰胺(1)和乙酰基-β3-高酪氨酸-N-甲基酰胺(2)的构象偏好以及红外和紫外光谱特征。分别在苯环或酚环取代基的S0-S1起始区域记录了这两种分子的质量分辨共振双光子电离光谱。利用紫外-紫外空穴烧蚀光谱法确定1存在两种构象,构象A的S0-S1起始位置为34431 cm-1,其跃迁强度比构象B(S0-S1起始位置为34404 cm-1)的跃迁强度大近20倍。仅观察到2的一种构象。共振离子偶极红外光谱法提供了3300-3700 cm-1区域的单构象红外光谱。两种分子的构象A的光谱在3400和3488 cm-1处分别有氢键结合和游离酰胺NH伸缩红外跃迁,而1的构象B在3417和3454 cm-1处有谱带。为了与实验进行比较,在DFT B3LYP/6-31+G和RIMP2/aug-cc-pVDZ理论水平上对1的所有低能极小值进行了全优化,并在DFT几何结构上进行了单点MP2/6-31+G计算。基于与先前溶液研究的比较以及计算结果,将1和2的构象A归为C6构象,而将1的构象B归为具有弱分子内氢键的独特C8结构。根据计算预测,讨论了偏好C6结构而非C8结构的原因以及喷射冷却光谱中仅存在两种构象的情况。