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Biotransformation of ursolic acid by an endophytic fungus from medicinal plant Huperzia serrata

机译:药用植物石杉石杉内生真菌对熊果酸的生物转化

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Endophytic fungi were used not only for their producing bioactive products but also for their ability to transform natural compounds. An endophytic fungus, isolated from medicinal plant Huperzia serrata, was identified as Umbelopsis isabellina based on the internal transcribed spacer of ribosomal DNA (rDNA-ITS) region. It was used to transform ursolic acid (1), a pentacyclic triterpene. Incubation of ursolic acid with U. isabellina afforded three products, 3β-hydroxy-urs-11-en-28,13-lactone (2), 3β,7β-dihydroxy-urs-11- en-28,13-lactone (3), 1β,3β-dihydroxy-urs-11-en-28,13-lactone (4). Although product 2 was a known compound, it was first obtained by microbial transformation. Products 3 and 4 were new compounds. The structural elucidation of the three compounds was achieved mainly by the 1D- and 2D-NMR, MS, IR data. The endophytic fungus U. isabellina can hydroxyate the C12-C13 double bond at position 13 of ursolic acid 1 and form a five-member lactone effectively. In the meantime, this fungus can also introduce the hydroxyl group at C-1 or C-7 of ursolic acid 1.
机译:内生真菌不仅用于生产生物活性产品,还用于转化天然化合物的能力。从核糖体DNA(rDNA-ITS)区的内部转录间隔区分离出从药用植物石杉石杉(Huperzia serrata)分离出的一种内生真菌。它被用来转化乌苏酸(1),一种五环三萜。将熊果酸与伊莎贝拉菌(U. isabellina)一起孵育可得到三种产物,即3β-羟基-urs-11-en-28,13-内酯(2),3β,7β-二羟基-urs-11- en-28,13-内酯(3 ),1β,3β-dihydroxy-urs-11-en-28,13-lactone(4)。尽管产物2是已知的化合物,但首先是通过微生物转化获得的。产品3和4是新化合物。三种化合物的结构解析主要通过1D-NMR和2D-NMR,MS,IR数据实现。内生真菌伊莎贝拉球菌可以在熊果酸1的13位羟基化C12-C13双键,并有效地形成五元内酯。同时,这种真菌还可以在熊果酸1的C-1或C-7处引入羟基。

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