Azizah Muhaiminatul, Pohnert Georg
Bioorganic Analytics, Institute for Inorganic and Analytical Chemistry, Friedrich Schiller University Jena, Lessingstraße 8, D-07743 Jena, Germany.
MPG Fellow Group, Max Planck Institute for Chemical Ecology, Hans-Knöll-Straße 8, D-07745 Jena, Germany.
J Nat Prod. 2024 Jan 26;87(1):50-57. doi: 10.1021/acs.jnatprod.3c00766. Epub 2023 Dec 27.
Ectoine is a central osmolyte in marine plankton due to its excellent cytoprotective traits and its multifunctional roles supporting the survival of microalgae and bacteria under unfavorable environmental conditions. The protective effect of ectoine toward several kinds of stresses stirred interest in biotechnology, pharmacy, and other fields including cosmetics. Also, its hydroxylated derivative, 5-hydroxyectoine, exhibits functions similar to ectoine. Here we introduce a molecular networking-based approach to expand the family of ectoine derivatives from phyto- and bacterioplankton. A ZIC-HILIC separation protocol coupled with HRMS/MS-based molecular networking allowed us to identify the new ectoine derivative 1,4,5,6-tetrahydro-2-ethyl-4-pyrimidinecarboxylic acid, or 2-homoectoine (). is found in many algae including dinoflagellates, chlorophytes, and haptophytes. In axenic strains, the content of is substantially lower. In accordance, we found that marine bacteria are prolific producers of the compound as well. This suggests that the microalgae with their associated microbiome have to be considered as sources of the compound. Increasing concentrations of the compound under high salinity suggest a role as a protectant against osmotic stress.
由于其出色的细胞保护特性以及在不利环境条件下支持微藻和细菌生存的多功能作用,依克多因是海洋浮游生物中的一种核心渗透调节物质。依克多因对多种应激的保护作用引发了生物技术、制药以及包括化妆品在内的其他领域的关注。此外,其羟基化衍生物5-羟基依克多因具有与依克多因相似的功能。在此,我们介绍一种基于分子网络的方法,以扩展来自浮游植物和浮游细菌的依克多因衍生物家族。结合基于高分辨质谱/质谱的分子网络的两性离子亲水相互作用色谱分离方案,使我们能够鉴定出新的依克多因衍生物1,4,5,6-四氢-2-乙基-4-嘧啶羧酸,即2-高依克多因。在许多藻类中都发现了它,包括甲藻、绿藻和定鞭藻。在无菌菌株中,其含量显著较低。相应地,我们还发现海洋细菌也是该化合物的丰富生产者。这表明与微藻相关的微生物群落必须被视为该化合物的来源。在高盐度下该化合物浓度的增加表明其具有作为抗渗透应激保护剂的作用。