Green synthesis of (S)-1-(furan-2-yl)propan-1-ol from asymmetric bioreduction of 1-(furan-2-yl)propan-1-one using whole-cell of Lactobacillus paracasei BD101

IF 2.8 4区 化学 Q2 CHEMISTRY, ANALYTICAL
Chirality Pub Date : 2023-09-20 DOI:10.1002/chir.23620
Ali Savaş Bülbül, Engin Şahin
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引用次数: 0

Abstract

Chiral heterocyclic alcohols are important precursors for production of pharmaceutical medicines and natural products. (S)-1-(furan-2-yl)propan-1-ol ((S)-2) can be used production of pyranone, which can be used in the synthesis of sugar analogues, antibiotics, tirantamycines, and anticancer drugs. The synthetic approaches for (S)-2, however, have substantial difficulties in terms of inadequate enantiomeric excess (ee) and gram scale synthesis. Moreover, the biocatalytic synthesis of (S)-2 is unknown until now. In this study, the synthesis of (S)-2 was carried out by performing the asymmetric bioreduction of 1-(furan-2-yl)propan-1-one (1) using the Lactobacillus paracasei BD101 biocatalyst obtained from boza, a grain-based fermented beverage. (S)-2 was obtained with >99% conversion, >99% ee, and 96% yield under the optimized conditions. Furthermore, in 50 h, 8.37 g of 1 was entirely transformed into (S)-2 on gram scale (96% isolated yield, 8.11 g). This is the first report on the high-gram scale biocatalyzed synthesis of enantiopure (S)-2. These data suggest that L. paracasei BD101 can be used to bioreduction of 1 in gram scale and efficiently produce (S)-2. Furthermore, these findings laid the base for future study into the biocatalytic production of (S)-2. It was particularly notable as it was the highest known to date optical purity of (S)-2 generated by asymmetric reduction using a biocatalyst. This work offers a productive environmentally friendly method for producing (S)-2 using biocatalysts.

Abstract Image

利用副干酪乳杆菌BD101的全细胞不对称生物还原1-(呋喃-2-基)丙-1-酮,绿色合成(S)-1-(呋喃-2-基丙-1-醇。
手性杂环醇是生产医药和天然产物的重要前体。(S) -1-(呋喃-2-基)丙-1-醇((S)-2)可用于生产吡喃酮,吡喃酮可用于合成糖类似物、抗生素、替兰塔霉素和抗癌药物。然而,(S)-2的合成方法在对映体过量(ee)和克级合成方面存在很大困难。此外,到目前为止,(S)-2的生物催化合成尚不清楚。在本研究中,通过使用从谷物发酵饮料boza获得的副干酪乳杆菌BD101生物催化剂进行1-(呋喃-2-基)丙-1-酮(1)的不对称生物还原来合成(S)-2。(S) 在优化的条件下,以>99%的转化率、>99%的ee和96%的产率获得了-2。此外,在50 h、 8.37 g的1在克级上完全转化为(S)-2(96%的分离产率,8.11 g) 。这是首次报道高克级生物催化合成对映体(S)-2。这些数据表明,副干酪乳杆菌BD101可用于以克为单位的1的生物还原,并有效地生产(S)-2。此外,这些发现为未来研究(S)-2的生物催化生产奠定了基础。特别值得注意的是,它是迄今为止已知的通过使用生物催化剂的不对称还原产生的(S)-2的最高光学纯度。这项工作为使用生物催化剂生产(S)-2提供了一种生产环境友好的方法。
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来源期刊
Chirality
Chirality 医学-分析化学
CiteScore
4.40
自引率
5.00%
发文量
124
审稿时长
1 months
期刊介绍: The main aim of the journal is to publish original contributions of scientific work on the role of chirality in chemistry and biochemistry in respect to biological, chemical, materials, pharmacological, spectroscopic and physical properties. Papers on the chemistry (physiochemical, preparative synthetic, and analytical), physics, pharmacology, clinical pharmacology, toxicology, and other biological aspects of chiral molecules will be published.
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