Marine Biodiscovery Centre, Department of Chemistry, University of Aberdeen, Meston Walk, Old Aberdeen, Aberdeen AB24 3UE, Scotland, UK.
Organic Chemistry Division, SIGMA Clermont, 27, Rue Roche Genes, 63170 Aubiere, France.
Org Biomol Chem. 2020 Mar 25;18(12):2219-2222. doi: 10.1039/d0ob00320d.
More than 500 siderophores are known to date, but only three were identified to be aryl-containing hydroxamate siderophores, legonoxamines A and B from Streptomyces sp. MA37, and aryl ferrioxamine 2 from Micrococcus luteus KLE1011. Siderophores are produced by microorganisms to scavenge iron from the environment, thereby making this essential metal nutrient available to the microbe. We demonstrate here that LgoC from MA37 is responsible for the key aryl-hydroxamate forming step in legonoxamine biosynthesis. Biochemical characterization established that LgoC displays considerable promiscuity for the acylation between N-hydroxy-cadaverine and SNAC (N-acetylcysteamines) thioester derivatives.
迄今已知的铁载体超过 500 种,但只有 3 种被鉴定为含芳基的羟肟酸铁载体,即链霉菌属 MA37 中的 legonoxamines A 和 B,以及微球菌属 KLE1011 中的芳基 ferrirfoxamine 2。铁载体是微生物从环境中摄取铁的产物,从而使这种必需的金属营养物质可供微生物利用。我们在这里证明,MA37 中的 LgoC 负责 legonoxamine 生物合成中关键的芳基-羟肟酸形成步骤。生化特性研究表明,LgoC 在 N-羟基尸胺和 SNAC(N-乙酰半胱氨酸)硫酯衍生物之间的酰化反应中表现出相当大的混杂性。