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In vitro phase I metabolism of the depsipeptide enniatin B

机译:Depsipeptide Enniatin B的体外I期代谢

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The enniatins are a group of more than 20 cyclic depsipeptides from fungi with numerous biological effects. Enniatin B is commonly one of the principal analogues in species of the genus Fusarium, known to have ionophoric, antibiotic and insecticidal activity. In the present study, enniatin B was incubated with rat, dog and human liver microsomes. The compound was extensively metabolised, and 12 biotransformation products (M1–M12) were detected and their structures tentatively identified using a combination of mass spectrometric techniques and chemical derivatisation. Ion trap mass spectrometry, multiple-stage MS n fragmentation and high-resolution mass spectrometry were the instrumental backbone for structural determination, while acetylation, methylation and Jones oxidation were useful derivatisation techniques for the localisation of the site of biotransformation. Comparison of mass spectrometric data of the metabolism products with that of enniatin B suggested that M1–M5 are monohydroxylated species, while M8–M12 are the result of multiple oxidations (oxygenation and dehydrogenation). Metabolites M6 and M7 appeared to be enniatin B homologues and are the result of N-demethylation. Our findings show that oxidation and N-demethylation are the principal metabolic pathways in enniatin B phase I metabolism.
机译:烯醇溶蛋白是来自真菌的具有二十多种环状环十肽的一组,具有多种生物学作用。 Enniatin B通常是镰刀菌属物种中的主要类似物之一,已知具有离子活性,抗生素活性和杀虫活性。在本研究中,将烯睾丙啶B与大鼠,狗和人肝微粒体一起孵育。该化合物被广泛代谢,并检测了12种生物转化产物(M1-M12),并结合质谱技术和化学衍生化作用初步确定了其结构。离子阱质谱,多级MS n 碎裂和高分辨质谱是结构测定的主要手段,而乙酰化,甲基化和琼斯氧化是衍生化技术,可用于分子定位生物转化。代谢产物与烯尿素B的质谱数据比较表明,M1–M5是单羟基化物质,而M8–M12是多次氧化(氧化和脱氢)的结果。代谢物M6和M7似乎是烯尿素B的同源物,是N-去甲基化的结果。我们的发现表明,氧化和N-去甲基化是Enenatin B I期代谢的主要代谢途径。

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