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催化人工硝基烷氧化酶——一种有机催化反转的方法。

Catalytic artificial nitroalkane oxidases - a way towards organocatalytic umpolung.

机构信息

Department of Organic Chemistry, University of Chemistry and Technology, Prague, Technická 5, 166 28 Prague, Czech Republic.

Central Laboratories, University of Chemistry and Technology, Prague, Technická 5, 166 28 Prague, Czech Republic.

出版信息

Org Biomol Chem. 2023 Mar 29;21(13):2768-2774. doi: 10.1039/d3ob00101f.

Abstract

Nitroalkane oxidases (NAOs) are flavoenzymes that catalyse the oxidation of nitroalkanes to their corresponding carbonyl compounds while producing nitrite anions. Herein, we present an artificial catalytic system using flavins or ethylene-bridged flavinium salts that works an NAO-like process. Under conditions optimised in terms of solvent, base, temperature and oxygen pressure, primary nitroalkanes were transformed to aldehydes. In our system, aldehydes immediately reacted with other nitroalkane molecules to form β-nitroalcohols. The reduced flavin catalyst was re-oxidised by oxygen. An alternative mechanism towards β-nitroalcohols 5-(2-nitrobutyl)-1,5-dihydroflavin was suggested through quantum chemical calculations and by trapping and characterising this dihydroflavin intermediate. Interestingly, 5-(2-nitrobutyl)-1,5-dihydroflavin is an analogue of the flavin adenine dinucleotide adduct previously observed in an NAO X-ray structure. In both mechanistic pathways, flavin-5-iminium species is formed by nitroalkanide addition to flavin. This process represents flavin-based umpolung of an original donor to an acceptor.

摘要

硝基烷氧化酶(NAOs)是一类黄素酶,能够催化硝基烷氧化为相应的羰基化合物,同时生成亚硝酸根阴离子。在此,我们提出了一种使用黄素或乙烯桥连的黄素鎓盐的人工催化体系,该体系能够模拟 NAO 的反应过程。在优化了溶剂、碱、温度和氧气压力等条件下,伯硝基烷烃被转化为醛。在我们的体系中,醛立即与其他硝基烷烃分子反应,生成β-硝基醇。还原的黄素催化剂被氧气重新氧化。通过量子化学计算和捕获并表征这种二氢黄素中间体,提出了β-硝基醇生成的另一种机理途径,即 5-(2-硝基丁基)-1,5-二氢黄素。有趣的是,5-(2-硝基丁基)-1,5-二氢黄素是先前在 NAO X 射线结构中观察到的黄素腺嘌呤二核苷酸加合物的类似物。在这两种机理途径中,硝基烷通过与黄素加成形成黄素-5-亚胺物种。该过程代表了原始供体向受体的黄素基反转极性。

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