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酰胺 I 和酰胺 II 区域模型肽的单构象红外光谱:局部模式频率和模式间耦合的基于实验的确定。

Single-conformation infrared spectra of model peptides in the amide I and amide II regions: experiment-based determination of local mode frequencies and inter-mode coupling.

机构信息

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

出版信息

J Chem Phys. 2012 Sep 7;137(9):094301. doi: 10.1063/1.4747507.

Abstract

Single-conformation infrared spectra in the amide I and amide II regions have been recorded for a total of 34 conformations of three α-peptides, three β-peptides, four α/β-peptides, and one γ-peptide using resonant ion-dip infrared spectroscopy of the jet-cooled, isolated molecules. Assignments based on the amide NH stretch region were in hand, with the amide I/II data providing additional evidence in favor of the assignments. A set of 21 conformations that represent the full range of H-bonded structures were chosen to characterize the conformational dependence of the vibrational frequencies and infrared intensities of the local amide I and amide II modes and their amide I/I and amide II/II coupling constants. Scaled, harmonic calculations at the DFT M05-2X/6-31+G(d) level of theory accurately reproduce the experimental frequencies and infrared intensities in both the amide I and amide II regions. In the amide I region, Hessian reconstruction was used to extract local mode frequencies and amide I/I coupling constants for each conformation. These local amide I frequencies are in excellent agreement with those predicted by DFT calculations on the corresponding (13)C = (18)O isotopologues. In the amide II region, potential energy distribution analysis was combined with the Hessian reconstruction scheme to extract local amide II frequencies and amide II/II coupling constants. The agreement between these local amide II frequencies and those obtained from DFT calculations on the N-D isotopologues is slightly worse than for the corresponding comparison in the amide I region. The local mode frequencies in both regions are dictated by a combination of the direct H-bonding environment and indirect, "backside" H-bonds to the same amide group. More importantly, the sign and magnitude of the inter-amide coupling constants in both the amide I and amide II regions is shown to be characteristic of the size of the H-bonded ring linking the two amide groups. These amide I/I and amide II/II coupling constants remain similar in size for α-, β-, and γ-peptides despite the increasing number of C-C bonds separating the amide groups. These findings provide a simple, unifying picture for future attempts to base the calculation of both nearest-neighbor and next-nearest-neighbor coupling constants on a joint footing.

摘要

已使用喷射冷却的孤立分子的共振离子陷波红外光谱记录了 34 种α-肽、3 种β-肽、4 种α/β-肽和 1 种γ-肽的酰胺 I 和酰胺 II 区域的单构象红外光谱。酰胺 NH 伸缩区域的分配已经完成,酰胺 I/II 数据提供了更多支持分配的证据。选择了一组 21 种构象,这些构象代表了氢键结构的全部范围,以表征振动频率和局部酰胺 I 和酰胺 II 模式的红外强度及其酰胺 I/I 和酰胺 II/II 耦合常数的构象依赖性。在 DFT M05-2X/6-31+G(d)理论水平上进行的缩放谐和计算准确地再现了酰胺 I 和酰胺 II 区域的实验频率和红外强度。在酰胺 I 区域,使用 Hessian 重建提取每个构象的局部模式频率和酰胺 I/I 耦合常数。这些局部酰胺 I 频率与相应 (13)C = (18)O 同位素的 DFT 计算预测非常吻合。在酰胺 II 区域,通过与 Hessian 重建方案相结合的势能分布分析,提取局部酰胺 II 频率和酰胺 II/II 耦合常数。这些局部酰胺 II 频率与在酰胺 I 区域中从 DFT 计算获得的那些相比,与 N-D 同位素的对应比较略差。两个区域的局部模式频率都由直接氢键环境和对同一酰胺基团的间接“背面”氢键的组合决定。更重要的是,酰胺 I 和酰胺 II 区域的酰胺 I/I 和酰胺 II/II 耦合常数的符号和大小都显示出连接两个酰胺基团的氢键环的大小特征。尽管酰胺基团之间的 C-C 键数量不断增加,但α-、β-和γ-肽中的酰胺 I/I 和酰胺 II/II 耦合常数的大小仍然相似。这些发现为未来尝试在共同基础上计算最近邻和次近邻耦合常数提供了一个简单、统一的图景。

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