Aquaculture Biotechnology Research Group, School of Science, Faculty of Health and Environmental Sciences, Auckland University of Technology, Auckland, New Zealand.
Mass Spectrometry Centre, School of Biological Sciences, University of Auckland, Auckland, New Zealand.
Sci Rep. 2019 Apr 11;9(1):5937. doi: 10.1038/s41598-019-42315-6.
The antimicrobial role of itaconic acid (ITA) has been recently discovered in mammalian cells. In our previous studies, we discovered that marine molluscs biosynthesise substantial quantities of ITA when exposed to marine pathogens, but its antimicrobial function to Vibrio bacteria is currently unknown. Thus, in this study, we used an untargeted gas chromatography-mass spectrometry (GC-MS) platform to identify metabolic changes of Vibrio sp. DO1 (V. corallyliticus/neptunius-like isolate) caused by ITA exposure. Vibrio sp. DO1 was cultured in Luria-Bertani broth supplemented with 3 mM sodium acetate and with different concentrations of ITA (0, 3 and 6 mM) for 24 h. The results showed that ITA completely inhibited Vibrio sp. growth at 6 mM and partially inhibited the bacterial growth at 3 mM. A principal component analysis (PCA) revealed a clear separation between metabolite profiles of Vibrio sp. DO1 in the 3 mM ITA treatment and the control, which were different in 25 metabolites. Among the altered metabolites, the accumulation of glyoxylic acid and other metabolites in glyoxylate cycle (cis-aconitic acid, isocitric acid and fumaric acid) together with the increase of isocitrate lyase (ICL) activity in the 3 mM ITA treatment compared to the control suggest that ITA inhibited Vibrio sp. growth via disruption of central carbon metabolism.
ITA(衣康酸)的抗菌作用最近在哺乳动物细胞中被发现。在我们之前的研究中,我们发现海洋贝类在暴露于海洋病原体时会大量合成 ITA,但它对弧菌的抗菌功能目前尚不清楚。因此,在这项研究中,我们使用非靶向气相色谱-质谱(GC-MS)平台来鉴定 ITA 暴露对 Vibrio sp. DO1(珊瑚弧菌/海王星弧菌样分离株)的代谢变化。Vibrio sp. DO1 在补充有 3mM 醋酸钠的 LB 培养基中培养,并分别添加 0、3 和 6mM 的 ITA 培养 24 小时。结果表明,ITA 在 6mM 时完全抑制 Vibrio sp. DO1 的生长,在 3mM 时部分抑制细菌生长。主成分分析(PCA)显示,3mM ITA 处理和对照组之间 Vibrio sp. DO1 的代谢谱明显分离,25 种代谢物不同。在改变的代谢物中,与对照组相比,3mM ITA 处理中乙醛酸循环(顺乌头酸、异柠檬酸和富马酸)中糖二酸和其他代谢物的积累以及异柠檬酸裂解酶(ICL)活性的增加表明,ITA 通过破坏中心碳代谢来抑制弧菌的生长。