Institute of Chemistry , São Paulo State University-UNESP , Araraquara , São Paulo 14800-060 , Brazil.
Institute for Molecular Bioscience , The University of Queensland , Brisbane , Queensland 4072 , Australia.
J Nat Prod. 2018 Nov 26;81(11):2436-2445. doi: 10.1021/acs.jnatprod.8b00447. Epub 2018 Oct 22.
Orbitides are small cyclic peptides with a diverse range of therapeutic bioactivities. They are produced by many plant species, including those of the Jatropha genus. Here, the objective was to provide new structural information on orbitides to complement the growing knowledge base on orbitide sequences and activities by focusing on three Jatropha orbitides: ribifolin (1), pohlianin C (7), and jatrophidin (12). To determine three-dimensional structures, racemic crystallography, an emerging structural technique that enables rapid crystallization of biomolecules by combining equal amounts of the two enantiomers, was used. The high-resolution structure of ribifolin (0.99 Å) was elucidated from its racemate and showed it was identical to the structure crystallized from its l-enantiomer only (1.35 Å). Racemic crystallography was also used to elucidate high-resolution structures of pohlianin C (1.20 Å) and jatrophidin (1.03 Å), for which there was difficulty forming crystals without using racemic mixtures. The structures were used to interpret membrane permeability data in PAMPA and a Caco-2 cell assay, showing they had poor permeability. Overall, the results show racemic crystallography can be used to obtain high-resolution structures of orbitides and is useful when enantiopure samples are difficult to crystallize or solution structures from NMR are of low resolution.
轨道肽是具有多种治疗生物活性的小环状肽。它们由许多植物物种产生,包括麻疯树属植物。在这里,我们的目的是提供轨道肽的新结构信息,以补充不断增长的轨道肽序列和活性知识库,重点研究三种麻疯树轨道肽:藜芦醇苷(1)、坡链霉素 C(7)和麻疯树素(12)。为了确定三维结构,使用了外消旋结晶学,这是一种新兴的结构技术,通过将两种对映体等量混合来实现生物分子的快速结晶。藜芦醇苷(0.99Å)的高分辨率结构从其外消旋体中阐明,结果表明其与仅从其 l-对映体结晶的结构相同(1.35Å)。外消旋结晶学也用于阐明坡链霉素 C(1.20Å)和麻疯树素(1.03Å)的高分辨率结构,在没有使用外消旋混合物的情况下,这两种化合物很难形成晶体。这些结构用于解释 PAMPA 和 Caco-2 细胞测定中的膜通透性数据,表明它们的通透性较差。总体而言,这些结果表明外消旋结晶学可用于获得轨道肽的高分辨率结构,并且在难以结晶对映纯样品或 NMR 溶液结构分辨率较低时非常有用。