Lacroix I, Biton J, Azerad R
Laboratoire de Chimie et Biochimie Pharmacologiques et Toxicologiques, Unité associée au CNRS No. 400, Université René Descartes-Paris V, France.
Bioorg Med Chem. 1997 Jul;5(7):1369-80. doi: 10.1016/s0968-0896(97)00094-1.
The microbial biotransformation of HR325 [2-cyano-3-cyclopropyl-3-hydroxy-N-(4'-trifluoromethyl-3'-methylphenyl)- propenamide], a synthetic immunomodulating agent, has been investigated in order to be compared with animal metabolism and to prepare some metabolites which are difficult to obtain by chemical methods. Several fungal strains are able to completely metabolize this drug. Mortierella isabellina NRRL 1757 only achieves a benzylic hydroxylation on the aromatic methyl group, affording in high yield the corresponding hydroxymethyl derivative. In addition, other strains, such as Cunninghamella elegans ATCC 26269 or Beauveria bassiana ATCC 7159 can cleave both cyclopropyl and cyano groups in a new unknown oxidative biochemical reaction, which can be mimicked by m-chloroperbenzoate oxidation. The resulting cyanohydrin is hydrolyzed and reduced to a primary alcohol. In B. bassiana, the final incubation product is a beta-4-O-methylglucoside derivative of this alcohol, and has been fully characterized by independent synthesis. The different metabolic patterns of HR325 in the three fungal strains are discussed, and a mechanistic hypothesis about the oxidative cleavage of the right part of the molecule is proposed. The production of microbial metabolites is compared to animal metabolism in terms of structure and efficiency.
为了与动物代谢进行比较,并制备一些难以通过化学方法获得的代谢产物,对合成免疫调节剂HR325 [2-氰基-3-环丙基-3-羟基-N-(4'-三氟甲基-3'-甲基苯基)-丙烯酰胺]的微生物生物转化进行了研究。几种真菌菌株能够完全代谢这种药物。深黄被孢霉NRRL 1757仅对芳环甲基进行苄基羟基化,以高产率得到相应的羟甲基衍生物。此外,其他菌株,如雅致小克银汉霉ATCC 26269或球孢白僵菌ATCC 7159,能在一个新的未知氧化生化反应中裂解环丙基和氰基,间氯过氧苯甲酸氧化可模拟该反应。生成的氰醇被水解并还原为伯醇。在球孢白僵菌中,最终的培养产物是该醇的β-4-O-甲基葡糖苷衍生物,并已通过独立合成进行了全面表征。讨论了HR325在三种真菌菌株中的不同代谢模式,并提出了关于分子右侧部分氧化裂解的机理假说。从结构和效率方面将微生物代谢产物的产生与动物代谢进行了比较。