首页> 外文期刊>Biochimica et biophysica acta: BBA: International journal of biochemistry, biophysics and molecular biololgy. Proteins and Proteomics >CYP106A2-A versatile biocatalyst with high potential for biotechnological production of selectively hydroxylated steroid and terpenoid compounds
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CYP106A2-A versatile biocatalyst with high potential for biotechnological production of selectively hydroxylated steroid and terpenoid compounds

机译:CYP106A2-一种多功能生物催化剂,具有高潜力的生物技术生产选择性羟基化类固醇和萜类化合物

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摘要

CYP106A2 from Bacillus megaterium ATCC13368, was identified in the 1970s as one of the first bacterial steroid hydroxylases responsible for the conversion of progesterone to 15 beta-hydroxyprogesterone. Later on it has been proven to be a potent hydroxylase of numerous 3-oxo-Delta(4) as well as 3-hydroxy-Delta(5)-steroids and has recently also been characterized as a regioselective allylic bacterial diterpene hydroxylase. The main hydroxylation position of CYP106A2 is thought to be influenced by the functional groups at C3 position in the steroid core leading to a favored 15 beta-hydroxylation of 3-oxo-Delta(4)-steroids and 7 beta-hydroxylation of 3-hydroxy-Delta(5)-steroids. However, in some cases the hydroxylation is not strictly selective, resulting in the formation of undesired side-products. To overcome the unspecific hydroxylations or, on the contrary, to gain more of these products in case they are of industrial interest, rational protein design and directed evolution have been successfully performed to shift the stereoselectivity of hydroxylation by CYP106A2. The subsequently obtained hydroxylated steroid and terpene derivatives are especially useful as drug metabolites and drug precursors for the pharmaceutical industry, due to their diverse biological properties and hardship of their chemical synthesis. As a soluble prokaryotic P450 with broad substrate spectrum and hydroxylating capacity, CYP106A2 is an outstanding candidate to establish bioconversion processes. It has been expressed with respectable yields in Escherichia coli and Bacillus megaterium and was applied for the preparative hydroxylation of several steroids and terpenes. Recently, the application of the enzyme was assessed under process conditions as well, depicting a successfully optimized process development and getting us closer to industrial scale process requirements and a future large scale application. This article is part of a Special Issue entitled: Cytochrome P450 biodiversity and biotechnology, edited by Erika Plettner, Gianfranco Gilardi, Luet Wong, Vlada Urlacher, Jared Goldstone.
机译:来自Bacillus Megircatium ATCC13368的CYP106A2,在20世纪70年代中鉴定为首批细菌类固醇羟基酶之一,其负责孕酮转化为15β-羟丙酮。后来已被证明是众多3-氧代 - Δ(4)以及3-羟基 - Δ(5)粒子的有效羟化酶,并且最近也表征为区域选择性烯丙基细菌脱萜羟化酶。 CYP106A2的主要羟基化位置被认为受到类固醇核心的C3位置的官能团的影响,导致3-氧代 - Δ(4)次 - 甾醇的15β-羟基化和3-羟基的7β-羟基化物-delta(5)。然而,在某些情况下,羟基化不严格选择性,导致形成不希望的副产品。为了克服未特异性的羟基,或者相反,在它们是工业利益的情况下,已经成功地进行了Rational蛋白质设计和定向演化以改变CYP106A2的羟基化的立体选择性。随后获得的羟基化的类固醇和萜烯衍生物特别可用作制药工业的药物代谢物和药物前体,由于它们不同的生物学性质和化学合成的困难。作为具有宽基材谱和羟化能力的可溶性原核P450,CYP106A2是建立生物转化过程的优异候选者。已经表达了大肠杆菌和芽孢杆菌和芽孢杆菌的产量,并施用于几种类固醇和萜烯的制备羟基化。最近,在工艺条件下评估酶的应用,描绘了成功优化的过程开发,并使我们更接近工业规模的过程要求和未来的大规模应用。本文是题为特殊问题的一部分:细胞色素P450生物多样性和生物技术,由Erika Plettner,Gianfranco Gilardi,Luet Wong,Vlada Urlacher,Jared Goldstone编辑。

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