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手性α-重氮-β-酮酯的立体选择性生物还原。

Stereoselective Bioreduction of α-diazo-β-keto Esters.

机构信息

Organic and Inorganic Chemistry Department, University of Oviedo, Avenida Julián Clavería 8, 33006 Oviedo, Spain.

Chemistry Department, Universidade Federal de Santa Catarina, Florianópolis, SC 88040-900, Brazil.

出版信息

Molecules. 2020 Feb 19;25(4):931. doi: 10.3390/molecules25040931.

Abstract

Diazo compounds are versatile reagents in chemical synthesis and biology due to the tunable reactivity of the diazo functionality and its compatibility with living systems. Much effort has been made in recent years to explore their accessibility and synthetic potential; however, their preparation through stereoselective enzymatic asymmetric synthesis has been scarcely reported in the literature. Alcohol dehydrogenases (ADHs, also called ketoreductases, KREDs) are powerful redox enzymes able to reduce carbonyl compounds in a highly stereoselective manner. Herein, we have developed the synthesis and subsequent bioreduction of nine α-diazo-β-keto esters to give optically active α-diazo-β-hydroxy esters with potential applications as chiral building blocks in chemical synthesis. Therefore, the syntheses of prochiral α-diazo-β-keto esters bearing different substitution patterns at the adjacent position of the ketone group (NCH, ClCH, BrCH, CHOCH, NCSCH, CH, and Ph) and in the alkoxy portion of the ester functionality (Me, Et, and Bn), were carried out through the diazo transfer reaction to the corresponding β-keto esters in good to excellent yields (81-96%). After performing the chemical reduction of α-diazo-β-keto esters with sodium borohydride and developing robust analytical conditions to monitor the biotransformations, their bioreductions were exhaustively studied using in-house made overexpressed and commercially available KREDs. Remarkably, the corresponding α-diazo-β-hydroxy esters were obtained in moderate to excellent conversions (60 to >99%) and high selectivities (85 to >99% ) after 24 h at 30 °C. The best biotransformations in terms of conversion and enantiomeric excess were successfully scaled up to give the expected chiral alcohols with almost the same activity and selectivity values observed in the enzyme screening experiments.

摘要

重氮化合物由于其重氮官能团的反应性可调以及与生物体系的相容性,在化学合成和生物学中是多功能的试剂。近年来,人们已经做出了很大的努力来探索它们的可及性和合成潜力;然而,通过立体选择性酶不对称合成来制备重氮化合物在文献中却鲜有报道。醇脱氢酶(ADH,也称为酮还原酶,KRED)是一种强大的氧化还原酶,能够以高度立体选择性的方式还原羰基化合物。在此,我们开发了 9 种α-重氮-β-酮酯的合成及随后的生物还原,以得到具有潜在应用价值的光学活性的α-重氮-β-羟基酯,作为手性砌块在化学合成中应用。因此,我们通过重氮转移反应,以良好到优秀的收率(81-96%)将具有不同取代模式的前手性α-重氮-β-酮酯(NCH、ClCH、BrCH、CHOCH、NCSCH、CH 和 Ph)和酯官能团的烷氧基部分(Me、Et 和 Bn)合成到相应的β-酮酯。在使用硼氢化钠进行化学还原α-重氮-β-酮酯并开发出强大的分析条件来监测生物转化之后,我们使用内部制备的过表达和市售的 KRED 对其生物还原进行了详尽的研究。值得注意的是,在 30°C 下反应 24 小时后,相应的α-重氮-β-羟基酯以中等至优秀的转化率(60- >99%)和高选择性(85- >99%)获得。就转化率和对映体过量而言,最佳的生物转化成功地进行了放大,得到了预期的手性醇,其活性和选择性值与酶筛选实验中观察到的几乎相同。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/121c/7070278/2892ebadce69/molecules-25-00931-sch001.jpg

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