Department of Chemistry, University of Wyoming , Laramie, Wyoming 82071, United States.
J Phys Chem B. 2013 Sep 12;117(36):10359-69. doi: 10.1021/jp405613r. Epub 2013 Aug 27.
In the preceding paper, computational models based on density functional theory (DFT) were presented to characterize the sensitivity of vibrational spectroscopic methods (IR, VCD, and Raman) to structural features of β-sheets. Isotopically edited amide I' IR for peptides labeled with (13)C in multiple different sites provides the most structurally distinct signatures of strand alignment, while VCD is sensitive to the sheet twist and intersheet stacking. In this report, we simulate the IR and VCD spectra for models approximating structures of four β-sheet forming peptides previously experimentally studied using these methods with (13)C isotopic editing. Various register alignments are tested. Agreement with experiment is evaluated based on frequency shifts of both the (12)C and (13)C IR amide I' signals, relative intensity patterns, and VCD spectra where available. While for the simulation of IR spectra canonical planar sheets provide a sufficient model system, for VCD simulation twisted, stacked sheets are required in order to reproduce strong couplet-like amide I' VCD. Effects of the solvent (water) and amino acid side chains are also tested by using a simplified, electrostatic solvent model and atomic partial charges for the side chains. Very good agreement with experimental spectra is obtained, particularly for the relative (12)C and (13)C band frequencies. All four peptide models are shown to be antiparallel as had previously been assumed. However, in some cases our simulations are consistent with different register alignment of strands than originally proposed.
在前一篇论文中,我们提出了基于密度泛函理论(DFT)的计算模型,以表征振动光谱方法(IR、VCD 和 Raman)对β-折叠结构特征的敏感性。用多个不同位置的(13)C 标记的肽的酰胺 I'IR 同位素编辑提供了最具结构差异的链排列特征,而 VCD 则对片层扭曲和片层堆积敏感。在本报告中,我们模拟了四种以前使用这些方法进行(13)C 同位素编辑实验研究的β-折叠形成肽的模型的 IR 和 VCD 光谱。我们测试了各种排列。根据(12)C 和(13)C IR 酰胺 I'信号的频率位移、相对强度模式以及 VCD 谱(如果有)来评估与实验的一致性。虽然对于 IR 光谱的模拟,规则的平面片层提供了一个足够的模型系统,但对于 VCD 模拟,需要扭曲的、堆积的片层才能重现强烈的偶联酰胺 I'VCD。我们还通过使用简化的静电溶剂模型和侧链原子部分电荷来测试溶剂(水)和氨基酸侧链的影响。我们得到了与实验光谱非常好的一致性,特别是对于相对(12)C 和(13)C 带频率。所有四个肽模型都被证明是以前假设的反平行排列。然而,在某些情况下,我们的模拟与最初提出的不同链排列一致。