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手性醇高效生物反应的奇偶效应及酶稳定性增强

Odd-even effect for efficient bioreactions of chiral alcohols and boosted stability of the enzyme.

作者信息

Bülow Mark, Schmitz Alexa, Mahmoudi Termeh, Schmidt Dana, Junglas Fabian, Janiak Christoph, Held Christoph

机构信息

Laboratory of Thermodynamics, Technical University Dortmund 44227 Dortmund Germany

Institut für Anorganische Chemie und Strukturchemie, Heinrich-Heine-Universität Düsseldorf 40204 Düsseldorf Germany.

出版信息

RSC Adv. 2020 Jul 29;10(47):28351-28354. doi: 10.1039/d0ra05406b. eCollection 2020 Jul 27.

Abstract

We describe a holistic approach for achieving a nearly quantitative conversion for an enzymatic reaction while simultaneously increasing the long-term stability of the enzyme. The approach provided chemical control of bioreactions by utilizing newly synthesized tetrahydrothiophene-based ionic liquids (THT ILs). We showcased its power by using THT-ILs as additives at a low concentration (only 10 mmol L) in the alcohol dehydrogenase (ADH)-catalyzed synthesis of methylated 1-phenylethanol (Me-PE). We discovered an "odd-even" effect of the IL-cation chain length: Me-PE displayed beneficial interactions with THT ILs having odd-numbered chain lengths and deleterious interactions with those having even-numbered chain lengths. An intermolecular thermodynamic simulation of the bulk phase and critical micelle concentration investigations of the local surroundings of the THT-ILs proved the occurrence of these interactions, and these two methods confirmed the odd-even effect from different perspectives. Additionally, storing the ADH enzyme in pure THT IL at room temperature allowed for a boosted long-term stability of the enzyme (500 times greater than that in aqueous buffer) without the need for freezing.

摘要

我们描述了一种整体方法,用于实现酶促反应的近乎定量转化,同时提高酶的长期稳定性。该方法通过利用新合成的基于四氢噻吩的离子液体(THT ILs)实现了对生物反应的化学控制。我们通过在醇脱氢酶(ADH)催化合成甲基化1-苯乙醇(Me-PE)反应中使用低浓度(仅10 mmol/L)的THT-ILs作为添加剂展示了其功效。我们发现了IL-阳离子链长的“奇偶”效应:Me-PE与具有奇数链长的THT ILs表现出有益的相互作用,而与具有偶数链长的THT ILs表现出有害的相互作用。对本体相的分子间热力学模拟以及对THT-ILs局部环境的临界胶束浓度研究证明了这些相互作用的存在,这两种方法从不同角度证实了奇偶效应。此外,将ADH酶在室温下保存在纯THT IL中可提高酶的长期稳定性(比在水性缓冲液中高500倍),而无需冷冻。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8fa5/9055634/c6346b0844a8/d0ra05406b-s1.jpg

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