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将全细胞生物催化与生物相容的Pictet-Spengler 反应相连接,用于四氢异喹啉和色胺的一锅法合成。

Interfacing Whole Cell Biocatalysis with a Biocompatible Pictet-Spengler Reaction for One-Pot Syntheses of Tetrahydroisoquinolines and Tryptolines.

机构信息

Department of Chemistry, Colorado School of Mines, 1500 Illinois Street, Golden, CO 80403, USA.

Quantitative Biosciences and Engineering Program, Colorado School of Mines, USA.

出版信息

Chembiochem. 2023 Dec 14;24(24):e202300464. doi: 10.1002/cbic.202300464. Epub 2023 Oct 25.

Abstract

Biocatalytic processes are highly selective and specific. However, their utility is limited by the comparatively narrow scope of enzyme-catalysed transformations. To expand product scope, we are developing biocompatible processes that combine biocatalytic reactions with chemo-catalysis in single-flask processes. Here, we show that a chemocatalysed Pictet-Spengler annulation can be interfaced with biocatalysed alcohol oxidation. This two-step, one-pot cascade reaction converts tyramine and aliphatic alcohols to tetrahydroisoquinoline alkaloids in aqueous buffer at mild pH. Tryptamine derivatives are also efficiently converted to tryptolines. Optimization of stoichiometry, pH, reaction time, and whole-cell catalyst deliver the tetrahydroisouinolines and tryptolines in >90 % and >40 % isolated yield, respectively, with excellent regioselectivity.

摘要

生物催化过程具有高度的选择性和特异性。然而,其用途受到酶催化转化相对狭窄范围的限制。为了扩大产品范围,我们正在开发将生物催化反应与单一容器中的化学催化相结合的生物相容性工艺。在这里,我们表明可以将化学催化的 Pictet-Spengler 环化反应与生物催化的醇氧化反应相连接。这种两步一锅级联反应可在温和 pH 的水性缓冲液中将酪胺和脂肪醇转化为四氢异喹啉生物碱。色胺衍生物也可有效地转化为色醇。通过优化化学计量、pH 值、反应时间和全细胞催化剂,可以分别以大于 90%和大于 40%的分离产率得到四氢异喹啉和色醇,具有优异的区域选择性。

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