Graduate School of Life Science, Hokkaido University, Kita 21 Nishi 11, Sapporo 001-0021, Japan.
Department of Medicinal Chemistry, Faculty of Pharmacy, Assiut University, Assiut 71526, Egypt.
Org Biomol Chem. 2022 Feb 2;20(5):1067-1072. doi: 10.1039/d1ob02317a.
Stereochemical elucidation of molecules with multiple chiral centers is difficult. Even with VCD spectroscopy, excluding all but one diastereomeric structural candidate is challenging because the stereochemical inversion of one chiral center among many centers does not always result in noticeable differences in their VCD spectra. This work demonstrates that the introduction of a suitable VCD chromophore with absorption in the 2300-1900 cm region can be used for extracting local stereochemical information and for the stereochemical assignment of the C-1 position of various sugars as a case study. Through studies on a series of epimeric pairs of monosaccharides and their derivatives, we found that the introduction of one -OCD group to each C-1 position produced almost mirror-image VCD patterns in the 2300-1900 cm region depending on the C-1 stereochemistry irrespective of the other molecular moieties. This work also shows that comparison of the observed VCD signals and the calculated ones enables the stereochemical assignment of a chiral center in the vicinity of the chromophore. This study provides a proof of concept that the use of a VCD chromophore in the 2300-1900 cm region enables the analysis of selected stereochemistry of suitable molecular systems. Further studies on this concept should lead to the development of a method useful for the structural elucidation of other types of complex molecules.
具有多个手性中心的分子的立体化学阐明具有挑战性。即使使用 VCD 光谱学,排除除一个非对映结构体候选物之外的所有其他候选物也是具有挑战性的,因为在许多中心中的一个手性中心的立体化学反转并不总是导致它们的 VCD 光谱中出现明显的差异。这项工作表明,引入具有在 2300-1900 cm 区域中吸收的合适的 VCD 发色团可用于提取局部立体化学信息,并作为案例研究用于各种糖的 C-1 位置的立体化学分配。通过对一系列差向异构体的单糖及其衍生物的研究,我们发现,无论其他分子部分如何,在 2300-1900 cm 区域中,每个 C-1 位置引入一个-OCD 基团会产生几乎镜像的 VCD 图案,这取决于 C-1 立体化学。这项工作还表明,观察到的 VCD 信号与计算出的信号的比较能够对手性中心在发色团附近的立体化学分配进行分配。这项研究提供了一个概念证明,即在 2300-1900 cm 区域中使用 VCD 发色团能够分析合适分子系统的选定立体化学。对这一概念的进一步研究应该会导致开发出一种有用的方法,用于阐明其他类型的复杂分子的结构。