Ferrante Terenzio, Barge Alessandro, Taramino Silvia, Oliaro-Bosso Simonetta, Balliano Gianni
Department of Science and Drug Technology, University of Torino, Via P. Giuria 9, 10125, Turin, Italy.
Lipids. 2016 Sep;51(9):1103-13. doi: 10.1007/s11745-016-4173-6. Epub 2016 Jul 15.
Studies in the post-squalene section of sterol biosynthesis may be hampered by the poor availability of authentic standards. The present study used different yeast strains engineered in 3-ketosteroid reductase (Erg27p) to obtain radioactive and non-radioactive intermediates of sterol biosynthesis hardly or not available commercially. Non-radioactive 3-keto 4-monomethyl sterones were purified from non-saponifiable lipids extracted from cells bearing point-mutated 3-ketosteroid reductase. Two strategies were adopted to prepare the radioactive compounds: (1) incubation of cell homogenates of an ERG27-deletant strain with radioactive lanosterol, (2) incubation of growing cells of a strain expressing point-mutated 3-ketosteroid reductase with radioactive acetate. Chemical reduction of both radioactive and non-radioactive 3-keto sterones gave the physiological 3-β OH sterols, as well as the non-physiological 3-α OH isomers. This combined biological and chemical preparation procedure provided otherwise unavailable or hardly available 4-mono-methyl intermediates of sterol biosynthesis, paving the way for research into their roles in physiological and pathological conditions.
甾醇生物合成中鲨烯后段的研究可能因缺乏可靠的标准品而受阻。本研究利用工程改造的3-酮甾体还原酶(Erg27p)的不同酵母菌株,来获取甾醇生物合成中商业上难以获得或无法获得的放射性和非放射性中间体。从携带点突变3-酮甾体还原酶的细胞中提取的不皂化脂质中纯化出非放射性的3-酮4-单甲基甾酮。采用两种策略制备放射性化合物:(1)用放射性羊毛甾醇孵育ERG27缺失菌株的细胞匀浆,(2)用放射性乙酸盐孵育表达点突变3-酮甾体还原酶的菌株的生长细胞。对放射性和非放射性3-酮甾酮进行化学还原,得到生理性的3-β OH甾醇以及非生理性的3-α OH异构体。这种生物和化学制备方法相结合,提供了甾醇生物合成中原本无法获得或难以获得的4-单甲基中间体,为研究它们在生理和病理条件下的作用铺平了道路。