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A CYP21A2 based whole-cell system in Escherichia coli for the biotechnological production of premedrol

机译:大肠杆菌中基于CYP21A2的全细胞系统用于生物技术生产前药

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摘要

BackgroundSynthetic glucocorticoids like methylprednisolone (medrol) are of high pharmaceutical interest and represent powerful drugs due to their anti-inflammatory and immunosuppressive effects. Since the chemical hydroxylation of carbon atom 21, a crucial step in the synthesis of the medrol precursor premedrol, exhibits a low overall yield because of a poor stereo- and regioselectivity, there is high interest in a more sustainable and efficient biocatalytic process. One promising candidate is the mammalian cytochrome P450 CYP21A2 which is involved in steroid hormone biosynthesis and performs a selective oxyfunctionalization of C21 to provide the precursors of aldosterone, the main mineralocorticoid, and cortisol, the most important glucocorticoid. In this work, we demonstrate the high potential of CYP21A2 for a biotechnological production of premedrol, an important precursor of medrol.
机译:背景技术合成的糖皮质激素,如甲基强的松龙(甲醇),具有很高的药用价值,由于其抗炎和免疫抑制作用,代表了强大的药物。由于碳原子21的化学羟基化反应是合成羟甲基前体premedrol的关键步骤,由于立体选择性和区域选择性差,因此总收率低,因此人们对更可持续和有效的生物催化工艺产生了浓厚的兴趣。一种有前途的候选物是哺乳动物细胞色素P450 CYP21A2,它参与类固醇激素的生物合成,并对C21进行选择性的氧官能化,以提供醛固酮(主要的盐皮质激素)和皮质醇(最重要的糖皮质激素)的前体。在这项工作中,我们证明了CYP21A2在生物技术上生产premedrol(一种重要的medrol前体)具有很高的潜力。

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