晶体结构
衍射
结晶学
绝对构型
电子衍射
电子
材料科学
化学
立体化学
物理
光学
量子力学
作者
Kshitij Gurung,Petr Šimek,Alexandr Jegorov,Lukáš Palatinus
标识
DOI:10.1107/s2053229624001359
摘要
Beauveriolides, including the main beauveriolide I {systematic name: (3 R ,6 S ,9 S ,13 S )-9-benzyl-13-[(2 S )-hexan-2-yl]-6-methyl-3-(2-methylpropyl)-1-oxa-4,7,10-triazacyclotridecane-2,5,8,11-tetrone, C 27 H 41 N 3 O 5 }, are a series of cyclodepsipeptides that have shown promising results in the treatment of Alzheimer's disease and in the prevention of foam cell formation in atherosclerosis. Their crystal structure studies have been difficult due to their tiny crystal size and fibre-like morphology, until now. Recent developments in 3D electron diffraction methodology have made it possible to accurately study the crystal structures of submicron crystals by overcoming the problems of beam sensitivity and dynamical scattering. In this study, the absolute structure of beauveriolide I was determined by 3D electron diffraction. The cyclodepsipeptide crystallizes in the space group I 2 with lattice parameters a = 40.2744 (4), b = 5.0976 (5), c = 27.698 (4) Å and β = 105.729 (6)°. After dynamical refinement, its absolute structure was determined by comparing the R factors and calculating the z-scores of the two possible enantiomorphs of beauveriolide I.
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