Structure and absolute configuration of natural fungal product beauveriolide I, isolated from Cordyceps javanica, determined by 3D electron diffraction.
Kshitij Gurung, Petr Šimek, Alexandr Jegorov, Lukáš Palatinus
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引用次数: 0
Abstract
Beauveriolides, including the main beauveriolide I {systematic name: (3R,6S,9S,13S)-9-benzyl-13-[(2S)-hexan-2-yl]-6-methyl-3-(2-methylpropyl)-1-oxa-4,7,10-triazacyclotridecane-2,5,8,11-tetrone, C27H41N3O5}, 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 I2 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.
蒲公英内酯,包括主要的蒲公英内酯 I {系统名称:(3R,6S,9S,13S)-9-苄基-13-[(2S)-己-2-基]-6-甲基-3-(2-甲基丙基)-1-氧杂-4,7,10-三氮杂环十三烷-2,5,8,11-四酮,C27H41N3O5},是一系列环十二肽,在治疗阿尔茨海默病和预防动脉粥样硬化泡沫细胞形成方面显示出良好的效果。由于它们的晶体尺寸极小,形态像纤维,因此晶体结构研究一直很困难。三维电子衍射方法的最新发展克服了光束灵敏度和动态散射的问题,使精确研究亚微米晶体的晶体结构成为可能。在这项研究中,利用三维电子衍射法测定了山嵛菜内酯 I 的绝对结构。该环十二肽在空间群 I2 中结晶,晶格参数为 a = 40.2744 (4)、b = 5.0976 (5)、c = 27.698 (4) Å 和 β = 105.729 (6)°。经过动态细化后,通过比较 R 因子和计算蒲公英内酯 I 的两种可能对映体的 Z 值,确定了其绝对结构。
期刊介绍:
Acta Crystallographica Section C: Structural Chemistry is continuing its transition to a journal that publishes exciting science with structural content, in particular, important results relating to the chemical sciences. Section C is the journal of choice for the rapid publication of articles that highlight interesting research facilitated by the determination, calculation or analysis of structures of any type, other than macromolecular structures. Articles that emphasize the science and the outcomes that were enabled by the study are particularly welcomed. Authors are encouraged to include mainstream science in their papers, thereby producing manuscripts that are substantial scientific well-rounded contributions that appeal to a broad community of readers and increase the profile of the authors.