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IR/Raman spectroscopy and DFT calculations of cyclic di-amino acid peptides. Part III: comparison of solid state and solution structures of cyclo(L-Ser-L-Ser)

机译:环状二氨基酸肽的IR /拉曼光谱和DFT计算。第三部分:环(L-Ser-L-Ser)固态和溶液结构的比较

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摘要

B3-LYP/cc-pVDZ calculations of the gas-phase structure and vibrational spectra of the isolated molecule cyclo(L-Ser-L-Ser), a cyclic di-amino acid peptide (CDAP), were carried out by assuming C-2 symmetry. It is predicted that the minimum-energy structure is a boat conformation for the diketopiperazine (DKP) ring with both L-Beryl side chains being folded slightly above the ring. An additional structure of higher energy (15.16 kJ mol(-1)) has been calculated for a DKP ring with a planar geometry, although in this case two fundamental vibrations have been calculated with imaginary wavenumbers. The reported X-ray crystallographic structure of cyclo(L-Ser-L-Ser), shows that the DKP ring displays a near-planar conformation, with both the two L-Beryl side chains being folded above the ring. It is hypothesized that the crystal packing forces constrain the DKP ring in a planar conformation and it is probable that the lower energy boat conformation may prevail in the aqueous environment. Raman scattering and Fourier-transform infrared (FT-IR) spectra of solid state and aqueous solution samples of cyclo(L-Ser-L-Ser) are reported and discussed. Vibrational band assignments have been made on the basis of comparisons with the calculated vibrational spectra and band wavenumber shifts upon deuteration of labile protons. The experimental Raman and IR results for solid-state samples show characteristic amide I vibrations which are split (Raman:1661 and 1687 cm(-1), IR:1666 and 1680 cm(-1)), possibly due to interactions between molecules in a crystallographic unit cell. The cis amide I band is differentiated by its deuterium shift of ~ 30 cm(-1), which is larger than that previously reported for trans amide I deuterium shifts. A cis amide II mode has been assigned to a Raman band located at 1520 cm(-1). The occurrence of this cis amide II mode at a wavenumber above 1500 cm(-1) concurs with results of previously examined CDAP molecules with low molecular weight substituents on the C-alpha atoms, and is also indicative of a relatively unstrained DKP ring.
机译:B3-LYP / cc-pVDZ的计算是通过假设C-进行分离的分子环(L-Ser-L-Ser),一种环状二氨基酸肽(CDAP)的气相结构和振动光谱的。 2个对称。据预测,最小能量结构是二酮哌嗪(DKP)环的船形,两个L-苄基侧链均略高于该环。对于具有平面几何形状的DKP环,已经计算出一种更高能量的附加结构(15.16 kJ mol(-1)),尽管在这种情况下,已经用虚波数计算了两个基本振动。所报道的环(L-Ser-L-Ser)的X射线晶体结构表明,DKP环显示出近乎平面的构象,两条L-芳基侧链均折叠在环上方。假设晶体堆积力将DKP环约束在平面构型中,并且在含水环境中可能存在较低能级的舟形构型。报道并讨论了环(L-Ser-L-Ser)的固态和水溶液样品的拉曼散射和傅立叶变换红外光谱(FT-IR)。在与不稳定的质子氘化时计算的振动谱和带波数位移进行比较的基础上,进行了振动带分配。固态样品的实验拉曼和红外结果表明,酰胺I的振动特征是分开的(拉曼:1661和1687 cm(-1),红外:1666和1680 cm(-1)),这可能是由于分子中的相互作用晶体学晶胞。顺酰胺I带的区别在于其〜30 cm(-1)的氘位移,该位移比先前报道的反酰胺I氘位移大。顺酰胺II模式已分配给位于1520 cm(-1)的拉曼谱带。在超过1500 cm(-1)的波数处出现这种顺酰胺II模式与先前检查的CDAP分子在C-α原子上具有低分子量取代基的结果相符,并且还指示相对未应变的DKP环。

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