Pancrace Claire, Jokela Jouni, Sassoon Nathalie, Ganneau Christelle, Desnos-Ollivier Marie, Wahlsten Matti, Humisto Anu, Calteau Alexandra, Bay Sylvie, Fewer David P, Sivonen Kaarina, Gugger Muriel
Institut Pasteur , Collection of Cyanobacteria, Paris, France.
Sorbonne Universités , UPMC Univ Paris 06, UPEC, UDD, CNRS, INRA, IRD, IEES-Paris, Paris, France.
ACS Chem Biol. 2017 Jul 21;12(7):1796-1804. doi: 10.1021/acschembio.7b00093. Epub 2017 May 17.
Cyanobacteria produce a wide range of natural products with antifungal bioactivity. The cyclic glycosylated lipopeptides of the hassallidin family have potent antifungal activity and display a great degree of chemical diversity. Here, we report the discovery of a hassallidin biosynthetic gene cluster from the filamentous cyanobacterium Planktothrix serta PCC 8927. The hassallidin gene cluster showed heavy rearrangement and marks of genomic plasticity. Nucleotide bias, differences in GC content, and phylogenetic incongruence suggested the acquisition of the hassallidin biosynthetic gene cluster in Planktothrix serta PCC 8927 by horizontal gene transfer. Chemical analyses by liquid chromatography and mass spectrometry demonstrated that this strain produced hassallidin E, a new glycosylated hassallidin variant. Hassallidin E was the only structural variant produced by Planktothrix serta PCC 8927 in all tested conditions. Further evaluated on human pathogenic fungi, hassallidin E showed an antifungal bioactivity. Hassallidin production levels correlated with nitrogen availability, in the only nitrogen-fixing Planktothrix described so far. Our results provide insights into the distribution and chemical diversity of cyanobacterial antifungal compounds as well as raise questions on their ecological relevance.
蓝细菌能产生多种具有抗真菌生物活性的天然产物。哈萨利定家族的环状糖基化脂肽具有强大的抗真菌活性,并展现出高度的化学多样性。在此,我们报告了从丝状蓝细菌席藻浮游颤藻PCC 8927中发现哈萨利定生物合成基因簇。哈萨利定基因簇显示出大量重排以及基因组可塑性的特征。核苷酸偏好、GC含量差异和系统发育不一致表明席藻浮游颤藻PCC 8927中的哈萨利定生物合成基因簇是通过水平基因转移获得的。通过液相色谱和质谱进行的化学分析表明,该菌株产生了哈萨利定E,一种新的糖基化哈萨利定变体。哈萨利定E是席藻浮游颤藻PCC 8927在所有测试条件下产生的唯一结构变体。在对人类致病真菌的进一步评估中,哈萨利定E显示出抗真菌生物活性。在目前所描述的唯一能固氮的浮游颤藻中,哈萨利定的产生水平与氮的可利用性相关。我们的研究结果为蓝细菌抗真菌化合物的分布和化学多样性提供了见解,同时也对它们的生态相关性提出了疑问。