Chemo-enzymatic synthesis of chiral precursor molecules with chiral ring hydroxyenone and acetoxyenone structures

Hatice Becerekli, Ş. B. Sopaci
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引用次数: 0

Abstract

A biocatalytic transformation has the potential to perform organic reactions that are quite challenging to achieve with synthetic organic chemistry. They also catalyze these reactions with a chemo and enantio selective manner. The discovery and development of new chemoenzymatic methods for the synthesis of these chiral structures is essential to the production of a wide range of bioactive compounds. In this study, two important pharmaceutical precursors were synthesized chemoenzymatically and subjected to biocatalytic conversions with different dehydrogenases. One of these compound is an α-acetoxy enone structure 4-methoxy-2-oxacyclohex-3-enyl acetate and the other is an α-hydroxy ketone 6-hydroxy-3-methoxycycyclohex-2-enone. To obtain these pharmaceutical precursors, 3-methoxy-cyclohex-2-enone was prepared using 1,3-diketone as a starting material. After obtaining this material, α-acetoxy enone was synthesized by chemical acetylation and α-hydroxy ketone prepared by enzymatic deacetylation. The structure of these products was elucidated by NMR analysis. In addition, biocatalytic reduction reactions involving the enzymes galactitol dehydrogenase (GatDH), shikimate dehydrogenase (SDH) and diaphorase were carried out with these products.
具有手性环羟基酮和乙酰氧基酮结构的手性前体分子的化学酶法合成
生物催化转化具有进行有机反应的潜力,这在合成有机化学中是相当具有挑战性的。它们还以化学和对映体选择性的方式催化这些反应。发现和发展新的化学酶方法来合成这些手性结构对生产各种生物活性化合物至关重要。在本研究中,两种重要的药物前体通过化学酶合成,并在不同的脱氢酶下进行生物催化转化。其中一种化合物为α-乙酰氧基烯酮结构的4-甲氧基-2-氧环己基-3-烯乙酸酯,另一种化合物为α-羟基酮结构的6-羟基-3-甲氧基环己基-2-烯酮。为获得这些药物前体,以1,3-二酮为原料制备了3-甲氧基环己烯酮。得到该材料后,采用化学乙酰化法合成α-乙氧基烯酮,酶法去乙酰化制备α-羟基酮。这些产物的结构经核磁共振分析证实。并用这些产物进行了半乳糖脱氢酶(GatDH)、莽草脱氢酶(SDH)和脱氢酶的生物催化还原反应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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