CIIMAR/CIMAR-LA, Center for Marine and Environmental Research, University of Porto, Rua dos Bragas 289, 4050-123 Porto, Portugal.
Proc Natl Acad Sci U S A. 2010 Jun 22;107(25):11183-8. doi: 10.1073/pnas.0914343107. Epub 2010 Jun 7.
The ability of cyanobacteria to produce complex secondary metabolites with potent biological activities has gathered considerable attention due to their potential therapeutic and agrochemical applications. However, the precise physiological or ecological roles played by a majority of these metabolites have remained elusive. Several studies have shown that cyanobacteria are able to interfere with other organisms in their communities through the release of compounds into the surrounding medium, a phenomenon usually referred to as allelopathy. Exudates from the freshwater cyanobacterium Oscillatoria sp. had previously been shown to inhibit the green microalga Chlorella vulgaris. In this study, we observed that maximal allelopathic activity is highest in early growth stages of the cyanobacterium, and this provided sufficient material for isolation and chemical characterization of active compounds that inhibited the growth of C. vulgaris. Using a bioassay-guided approach, we isolated and structurally characterized these metabolites as cyclic peptides containing several unusually modified amino acids that are found both in the cells and in the spent media of Oscillatoria sp. cultures. Strikingly, only the mixture of the two most abundant metabolites in the cells was active toward C. vulgaris. Synergism was also observed in a lung cancer cell cytotoxicity assay. The binary mixture inhibited other phytoplanktonic organisms, supporting a natural function of this synergistic mixture of metabolites as allelochemicals.
由于具有潜在的治疗和农用化学品应用价值,蓝藻产生具有强大生物活性的复杂次生代谢物的能力引起了相当大的关注。然而,这些代谢物中的大多数的确切生理或生态作用仍然难以捉摸。几项研究表明,蓝藻能够通过向周围介质中释放化合物来干扰其群落中的其他生物体,这种现象通常称为化感作用。先前已经表明,淡水蓝藻 Oscillatoria sp. 的分泌物能够抑制绿藻小球藻 Chlorella vulgaris 的生长。在这项研究中,我们观察到蓝藻的最大化感活性在其早期生长阶段最高,这为分离和化学表征抑制 C. vulgaris 生长的活性化合物提供了足够的材料。我们使用基于生物测定的方法分离并结构表征了这些代谢物,它们是含有几种在细胞和 Oscillatoria sp. 培养物废培养基中都发现的异常修饰氨基酸的环肽。引人注目的是,只有细胞中两种最丰富的代谢物的混合物对 C. vulgaris 具有活性。在肺癌细胞细胞毒性测定中也观察到协同作用。二元混合物抑制了其他浮游植物生物,支持这种协同代谢物混合物作为化感物质的自然功能。