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Efficient conversion of 11-deoxycortisol to cortisol (hydrocortisone) by recombinant fission yeast Schizosaccharomyces pombe

机译:重组裂变酵母粟酒裂殖酵母将11-脱氧皮质醇有效转化为皮质醇(氢化可的松)

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Genetically engineered microorganisms are being increasingly used for the industrial production of complicated chemical compounds such as steroids; however, there have been few reports on the use of the fission yeast Schizosaccharomyces pombe for this purpose. We previously have demonstrated that this yeast is a unique host for recombinant expression of human CYP11B2 (aldosterone synthase), and here we report the functional production of human CYP11B1 (steroid 11beta-hydroxylase) in S. pombe using our new integration vector pCAD1. In the human adrenal, the mitochondrial cytochrome P450 enzyme CYP11B1 catalyses the conversion of 11-deoxycortisol to cortisol, a key reaction in cortisol biosynthesis that in addition is of fundamental interest for the technical synthesis of glucocorticoids. We observed that the endogenous mitochondrial electron transport system detected previously by us is capable of supplying this enzyme with the reducing equivalents necessary for steroid hydroxylation activity. Under optimised cultivation conditions the transformed yeasts show in vivo the inducible ability to efficiently and reliably convert deoxycortisol to cortisol at an average rate of 201 microM d(-1) over a period of 72h, the highest value published to date for this biotransformation.
机译:基因工程微生物正越来越多地用于工业生产复杂的化合物,如类固醇。然而,关于裂殖酵母裂殖酵母用于此目的的报道很少。我们以前已经证明了该酵母是重组表达人CYP11B2(醛固酮合酶)的独特宿主,在这里我们报道了使用我们的新整合载体pCAD1在粟酒裂殖酵母中人CYP11B1(类固醇11β-羟化酶)的功能性生产。在人类肾上腺中,线粒体细胞色素P450酶CYP11B1催化11-脱氧皮质醇向皮质醇的转化,这是皮质醇生物合成中的关键反应,此外对糖皮质激素的技术合成也具有重要意义。我们观察到,以前由我们检测到的内源性线粒体电子传输系统能够为这种酶提供类固醇羟化活性所必需的还原当量。在优化的培养条件下,转化的酵母在72h内以201 microM d(-1)的平均速率在体内有效且可靠地将脱氧皮质醇转化为皮质醇的诱导能力,这是迄今为止该生物转化的最高值。

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