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模型合成折叠体的单构象紫外和红外光谱:β-肽Ac-β3-hPhe-β3-hAla-NHMe和Ac-β3-hAla-β3-hPhe-NHMe

Single-conformation ultraviolet and infrared spectroscopy of model synthetic foldamers: beta-peptides Ac-beta3-hPhe-beta3-hAla-NHMe and Ac-beta3-hAla-beta3-hPhe-NHMe.

作者信息

Baquero Esteban E, James William H, Choi Soo Hyuk, Gellman Samuel H, Zwier Timothy S

机构信息

Department of Chemistry, Purdue University, West Lafayette, Indiana 47907-2084, USA.

出版信息

J Am Chem Soc. 2008 Apr 9;130(14):4795-807. doi: 10.1021/ja078272q. Epub 2008 Mar 18.

Abstract

The conformational preferences and infrared and ultraviolet spectral signatures of two model beta-peptides, Ac-beta3-hPhe-beta3-hAla-NHMe (1) and Ac-beta3-hAla-beta3-hPhe-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 substituents (37,200-37,800 cm(-1)). UV-UV hole-burning spectroscopy was used to determine the ultraviolet spectral signatures of five conformational isomers of both 1 and 2. Transitions due to two conformers (labeled A and B) dominate the R2PI spectra of each molecule, while the other three are minor conformers (C-E) with transitions a factor of 3-5 smaller. Resonant ion-dip infrared spectroscopy was used to obtain single-conformation infrared spectra in the 3300-3700 cm(-1) region. The infrared spectra showed patterns of NH stretch transitions characteristic of the number and type of intramolecular H-bonds present in the beta-peptide backbone. For comparison with experiment, full optimizations of low-lying minima of both molecules were carried out at DFT B3LYP/6-31+G*, followed by single point MP2/6-31+G* and selected MP2/aug-cc-pVDZ calculations at the DFT optimized geometries. Calculated harmonic vibrational frequencies and infrared intensities for the amide NH stretch vibrations were used to determine the beta-peptide backbone structures for nine of the ten observed conformers. Conformers 1B, 1D, and 2A were assigned to double ring structures containing two C6 H-bonded rings (C6a/C6a), conformers 1A and 2B are C10 single H-bonded rings, conformers 1C and 2D are double ring structures composed of two C8 H-bonded rings (C8/C8), and conformers 1E and 2E are double ring/double acceptor structures in which two NH groups H-bond to the same C=O group, thereby weakening both H-bonds. Both 1E and 2E are tentatively assigned to C6/C8 double ring/double acceptor structures, although C8/C12 structures cannot be ruled out unequivocally. Finally, no firm conformational assignment has been made for conformer 2C whose unusual infrared spectrum contains one very strong H-bond with NH stretch frequency at 3309 cm(-1), a second H-bonded NH stretch fundamental of more typical value (3399 cm(-1)), and a third fundamental at 3440 cm(-1), below that typical of a branched-chain free NH. The single conformation spectra provide characteristic wavenumber ranges for the amide NH stretch fundamentals ascribed to C6 (3378-3415 cm(-1)), C8 (3339-3369 cm(-1)), and C10 (3381-3390 cm(-1)) H-bonded rings.

摘要

在喷射冷却、孤立分子条件下,对两种模型β-肽Ac-β3-hPhe-β3-hAla-NHMe(1)和Ac-β3-hAla-β3-hPhe-NHMe(2)的构象偏好以及红外和紫外光谱特征进行了研究。在苯基取代基的S0 - S1起始区域(37200 - 37800 cm⁻¹)记录了这两种分子的质量分辨共振双光子电离光谱。采用紫外 - 紫外空穴烧蚀光谱法确定了1和2的五种构象异构体的紫外光谱特征。由于两种构象体(标记为A和B)引起的跃迁在每个分子的R2PI光谱中占主导,而其他三种是次要构象体(C - E),其跃迁强度小3 - 5倍。利用共振离子偶极红外光谱法在3300 - 3700 cm⁻¹区域获得了单构象红外光谱。红外光谱显示了β-肽主链中存在的分子内氢键数量和类型所特有的NH伸缩跃迁模式。为了与实验进行比较,在DFT B3LYP/6 - 31 + G水平上对两种分子的低能极小值进行了全优化,随后在DFT优化几何结构下进行单点MP2/6 - 31 + G和选定的MP2/aug - cc - pVDZ计算。计算得到的酰胺NH伸缩振动的谐波振动频率和红外强度用于确定所观察到的十种构象体中九种的β-肽主链结构。构象体1B、1D和2A被指定为包含两个C6氢键环(C6a/C6a)的双环结构,构象体1A和2B是C10单氢键环,构象体1C和2D是由两个C8氢键环(C8/C8)组成的双环结构,构象体1E和2E是双环/双受体结构,其中两个NH基团与同一个C = O基团形成氢键,从而削弱了两个氢键。1E和2E都初步被指定为C6/C8双环/双受体结构,尽管不能明确排除C8/C12结构。最后,对于构象体2C尚未做出确定的构象归属,其异常的红外光谱包含一个NH伸缩频率为3309 cm⁻¹的非常强的氢键、一个更典型值(3399 cm⁻¹)的第二个氢键NH伸缩基频以及一个3440 cm⁻¹的第三个基频,低于支链游离NH的典型值。单构象光谱为归属于C6(3378 - 3415 cm⁻¹)、C8(3339 - 3369 cm⁻¹)和C10(3381 - 3390 cm⁻¹)氢键环的酰胺NH伸缩基频提供了特征波数范围。

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