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甾醇杆菌 C25 脱氢酶电催化羟化甾醇。

Electrocatalytic Hydroxylation of Sterols by Steroid C25 Dehydrogenase from Sterolibacterium denitrificans.

机构信息

School of Chemistry and Molecular Biosciences, University of Queensland, Brisbane, 4072, Australia.

Jerzy Haber Institute of Catalysis and Surface Chemistry, Polish Academy of Sciences, ul. Niezapominajek 8, 30 239, Krakow, Poland.

出版信息

Chemistry. 2018 May 28;24(30):7710-7717. doi: 10.1002/chem.201800616. Epub 2018 May 4.

Abstract

The electrochemically driven catalysis of the complex molybdoenzyme steroid C25 dehydrogenase (S25DH) from the β-Proteobacterium Sterolibacterium denitrificans is reported. S25DH catalyses the oxygen-independent regioselective hydroxylation of the tertiary C25 atom of sterols and also their derivatives. Cholest-4-en-3-one is a native substrate for S25DH, which produces 25-hydroxycholest-4-en-3-one as a product of catalytic turnover. Cholecalciferol (vitD ) is also a substrate. S25DH was immobilised on a modified gold working electrode with the co-adsorbent chitosan. The complexes ferricyanide ([Fe(CN) ] ) and ferrocenium methanol (FM ) are effective artificial electron acceptors from S25DH and act as mediators of electron transfer between the electrode and the enzyme. 2-Hydroxypropyl-β-cyclodextrin (HPCD) was employed as a sterol solubiliser, in addition to 2-methoxyethanol. The catalytic activity varied, depending upon the concentration of solubiliser in the reaction mixture. Parallel studies with [Fe(CN) ] as a chemical (as opposed to electrochemical) oxidant coupled to HPLC analysis show that S25DH is capable of oxidising both vitD and its less stable isomer, pre-vitD , and that the former substrate is stabilised by HPCD.

摘要

电化学驱动的β-变形杆菌固醇 C25 脱氢酶(S25DH)的复合酶催化作用被报道。S25DH 催化固醇和它们的衍生物的非氧依赖性区域选择性 C25 原子羟化。胆甾-4-烯-3-酮是 S25DH 的天然底物,其催化周转产生 25-羟胆甾-4-烯-3-酮作为产物。胆钙化醇(vitD)也是一种底物。S25DH 与共吸附剂壳聚糖一起固定在修饰的金工作电极上。铁氰化物([Fe(CN) ])和甲氧基铁(FM)复合物是 S25DH 的有效人工电子受体,并作为电极和酶之间电子转移的介体。2-羟丙基-β-环糊精(HPCD)除了 2-甲氧基乙醇外,还被用作固醇增溶剂。在反应混合物中增溶剂的浓度不同,催化活性也不同。与[Fe(CN) ]作为化学(而非电化学)氧化剂的平行研究,结合 HPLC 分析表明,S25DH 能够氧化 vitD 及其不稳定的异构体 pre-vitD,并且前者的底物被 HPCD 稳定。

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