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CYP109E1 是一种新型多功能他汀类药物和来自巨大芽孢杆菌的萜烯氧化酶。

CYP109E1 is a novel versatile statin and terpene oxidase from Bacillus megaterium.

机构信息

Institute of Biochemistry, Saarland University, 66123, Saarbruecken, Germany.

出版信息

Appl Microbiol Biotechnol. 2017 Dec;101(23-24):8379-8393. doi: 10.1007/s00253-017-8552-6. Epub 2017 Oct 11.

Abstract

CYP109E1 is a cytochrome P450 monooxygenase from Bacillus megaterium with a hydroxylation activity for testosterone and vitamin D3. This study reports the screening of a focused library of statins, terpene-derived and steroidal compounds to explore the substrate spectrum of this enzyme. Catalytic activity of CYP109E1 towards the statin drug-precursor compactin and the prodrugs lovastatin and simvastatin as well as biotechnologically relevant terpene compounds including ionones, nootkatone, isolongifolen-9-one, damascones, and β-damascenone was found in vitro. The novel substrates induced a type I spin-shift upon binding to P450 and thus permitted to determine dissociation constants. For the identification of conversion products by NMR spectroscopy, a B. megaterium whole-cell system was applied. NMR analysis revealed for the first time the ability of CYP109E1 to catalyze an industrially highly important reaction, the production of pravastatin from compactin, as well as regioselective oxidations generating drug metabolites (6'β-hydroxy-lovastatin, 3'α-hydroxy-simvastatin, and 4″-hydroxy-simvastatin) and valuable terpene derivatives (3-hydroxy-α-ionone, 4-hydroxy-β-ionone, 11,12-epoxy-nootkatone, 4(R)-hydroxy-isolongifolen-9-one, 3-hydroxy-α-damascone, 4-hydroxy-β-damascone, and 3,4-epoxy-β-damascone). Besides that, a novel compound, 2-hydroxy-β-damascenone, produced by CYP109E1 was identified. Docking calculations using the crystal structure of CYP109E1 rationalized the experimentally observed regioselective hydroxylation and identified important amino acid residues for statin and terpene binding.

摘要

CYP109E1 是一种来自巨大芽孢杆菌的细胞色素 P450 单加氧酶,具有对睾酮和维生素 D3 的羟化活性。本研究报告了对他汀类药物、萜类化合物和甾体化合物的聚焦文库进行筛选,以探索该酶的底物谱。体外发现 CYP109E1 对他汀类药物前体考来烯胺和前药洛伐他汀和辛伐他汀以及生物技术相关的萜类化合物(如离子酮、诺卡酮、异长叶烯酮-9-酮、大马酮和β-大马酮)具有催化活性。新型底物与 P450 结合时会引起 I 型自旋位移,因此可以确定解离常数。为了通过 NMR 光谱鉴定转化产物,应用了一种巨大芽孢杆菌全细胞系统。NMR 分析首次表明 CYP109E1 能够催化一种工业上非常重要的反应,即从考来烯胺生产普伐他汀,以及产生药物代谢物(6'β-羟基-洛伐他汀、3'α-羟基-辛伐他汀和 4″-羟基-辛伐他汀)和有价值的萜类衍生物(3-羟基-α-离子酮、4-羟基-β-离子酮、11,12-环氧诺卡酮、4(R)-羟基-异长叶烯酮-9-酮、3-羟基-α-大马酮、4-羟基-β-大马酮和 3,4-环氧-β-大马酮)的区域选择性氧化。此外,还鉴定了 CYP109E1 产生的一种新化合物 2-羟基-β-大马酮。使用 CYP109E1 的晶体结构进行对接计算,合理地解释了实验观察到的区域选择性羟化,并确定了与他汀类药物和萜类化合物结合的重要氨基酸残基。

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