首页> 外文OA文献 >Vibrational spectroscopy and DFT calculations of di-amino acid cyclic peptides. Part I: cyclo(Gly-Gly), cyclo(L-Ala-L-Ala) and cyclo(L-Ala-Gly) in the solid state and in aqueous solution
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Vibrational spectroscopy and DFT calculations of di-amino acid cyclic peptides. Part I: cyclo(Gly-Gly), cyclo(L-Ala-L-Ala) and cyclo(L-Ala-Gly) in the solid state and in aqueous solution

机译:二氨基酸环状肽的振动光谱和DFT计算。第一部分:固态和水溶液中的环(Gly-Gly),环(L-Ala-L-Ala)和环(L-Ala-Gly)

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摘要

Investigations of the vibrational spectra of cyclo(Gly-Gly), cyclo(L-Ala-L-Ala) and cyclo(t-Ala-Gly) are reported. Raman scattering and Fourier transform infrared (FTIR) spectra of solid-state and aqueous protonated samples, as well as their corresponding N-deuterated isotopomers, have been examined. In addition, density functional theory (DFT) (B3-LYP/cc-pVDZ) calculations of molecular structures and their associated vibrational modes were carried out. In each case, the calculated structures of lowest energy for the isolated gas-phase molecules have boat conformations. Assignments have been made for the observed Raman and FTIR vibrational bands of the cyclic di-amino acid peptides (CDAPs) examined. Raman polarization studies of aqueous phase samples are consistent with C-2 and C-1 symmetries for the six-membered rings of cyclo(L-Ala-L-Ala) and cydo(L-Ala-Gly), respectively. There is a good correlation between experimental and calculated vibrational bands for the three CDAPs. These data are in keeping with boat conformations for cydo(L-Ala-L-Ala) and cyclo(L-Ala-Gly) molecules, predicted by the ab initio calculations, in both the solid and aqueous solution states. However, Raman spectroscopic results might infer that cyclo(L-AlaGly) deviates only slightly from planarity in the solid state. The potential energy distributions of the amide I and II modes of a cis-peptide linkage are shown to be significantly different from those of the trans-peptides. For example, deuterium shifts have shown that the cis-amide I vibrations found in cyclo(Gly-Gly), cyclo(L-Ala-L-Ala), and cyclo(L-Ala-Gly) have larger N-H contributions compared to their trans-amide counterparts. Compared to trans-amide II vibrations, cis-amide II vibrations show a considerable decrease in N-H character.
机译:报道了环(Gly-Gly),环(L-Ala-L-Ala)和环(t-Ala-Gly)的振动光谱的研究。固态和水性质子化样品及其相应的N氘代异构体的拉曼散射和傅立叶变换红外(FTIR)光谱已得到检验。此外,进行了分子结构及其相关振动模式的密度泛函理论(DFT)(B3-LYP / cc-pVDZ)计算。在每种情况下,所计算的分离出的气相分子的最低能量结构均具有船形。已为所检查的环状二氨基酸肽(CDAP)的拉曼光谱和FTIR振动带进行了分配。水相样品的拉曼极化研究分别与环(L-Ala-L-Ala)和环(L-Ala-Gly)的六元环的C-2和C-1对称性相一致。三个CDAP的实验和计算的振动带之间有很好的相关性。这些数据与通过从头算计算预测的在固态和水溶液状态下环(L-Ala-L-Ala)和环(L-Ala-Gly)分子的船形一致。但是,拉曼光谱结果可能推断出环(L-AlaGly)在固态下仅略微偏离平面度。顺式-肽键的酰胺I和II模式的势能分布显示出与反式肽的显着不同。例如,氘的位移表明,与环化反应相比,在环(Gly-Gly),环(L-Ala-L-Ala)和环(L-Ala-Gly)中发现的顺酰胺I振动具有更大的NH贡献。反酰胺对应物。与反酰胺II振动相比,顺酰胺II振动的N-H特性显着降低。

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